start-ver=1.4 cd-journal=joma no-vol=2026 cd-vols= no-issue=1 article-no= start-page= end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Carcinoma ex Pleomorphic Adenoma With an Epithelial]Myoepithelial Carcinoma Component in the Submandibular Gland: A Case Report en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background: Carcinoma ex pleomorphic adenoma (CXPA) is an uncommon malignant salivary gland tumor arising from pleomorphic adenoma, whereas epithelial-myoepithelial carcinoma (EMC) is a rare low-grade salivary gland malignancy. CXPA with an EMC component in the submandibular gland is uncommon.
Case Report: A 65-year-old man presented with a painless, firm mass in the left submandibular region and weakness of the left lower lip. Computed tomography and magnetic resonance imaging demonstrated an irregular submandibular mass, and FDG-PET/CT showed increased uptake (maximum standardized uptake value, 9.2). Core biopsy suggested pleomorphic adenoma; however, the clinical and radiological findings strongly indicated malignancy. Incisional biopsy was therefore performed under general anesthesia, with a plan to proceed to definitive treatment if malignancy was confirmed. Intraoperative histopathological examination revealed a malignant salivary gland tumor, and tumor resection with neck dissection was completed during the same procedure. Histopathological examination showed invasive CXPA with an EMC component, accompanied by extracapsular invasion exceeding 6?mm, perineural invasion, and extension into adjacent muscle (pT3N0). Although surgical margins were negative, pulmonary metastases developed 12 months after surgery, followed by suspected pleural dissemination and spinal canal extension. The patient declined further aggressive treatment and died of the disease 48 months after surgery.
Conclusion: This case highlights the importance of integrating clinical, radiological, and pathological findings for accurate diagnosis of salivary gland tumors, particularly when biopsy results are inconsistent with clinical suspicion. en-copyright= kn-copyright= en-aut-name=YasuharaTomohiro en-aut-sei=Yasuhara en-aut-mei=Tomohiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MasuiMasanori en-aut-sei=Masui en-aut-mei=Masanori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KunisadaYuki en-aut-sei=Kunisada en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TakakuraHiroaki en-aut-sei=Takakura en-aut-mei=Hiroaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=IwataEiji en-aut-sei=Iwata en-aut-mei=Eiji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KadoyaKoichi en-aut-sei=Kadoya en-aut-mei=Koichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=UmemoriKoki en-aut-sei=Umemori en-aut-mei=Koki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=YoshiokaNorie en-aut-sei=Yoshioka en-aut-mei=Norie kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=NakanoKeisuke en-aut-sei=Nakano en-aut-mei=Keisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=IbaragiSoichiro en-aut-sei=Ibaragi en-aut-mei=Soichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=Department of Oral and Maxillofacial Surgery, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Department of Oral and Maxillofacial Surgery, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Oral and Maxillofacial Surgery, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Department of Oral and Maxillofacial Surgery, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Department of Oral and Maxillofacial Surgery, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=6 en-affil=Department of Oral and Maxillofacial Surgery, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Department of Oral and Maxillofacial Surgery, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=8 en-affil=Department of Oral and Maxillofacial Surgery, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=9 en-affil=Department of Oral Pathology and Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=10 en-affil=Department of Oral and Maxillofacial Surgery, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=carcinoma ex pleomorphic adenoma kn-keyword=carcinoma ex pleomorphic adenoma en-keyword=case report kn-keyword=case report en-keyword=epithelial-myoepithelial carcinoma kn-keyword=epithelial-myoepithelial carcinoma en-keyword=salivary gland neoplasm kn-keyword=salivary gland neoplasm en-keyword=submandibular gland kn-keyword=submandibular gland END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page= end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260717 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Tripartite Interaction Between Penicillium pinophilum-Host Plants and CMV-Y: A Model for Endophyte-Mediated Viral Biocontrol en-subtitle= kn-subtitle= en-abstract= kn-abstract=Plant-fungus-virus tripartite interactions represent complex ecological systems in which mutualistic endophytes can influence host physiology, yet the molecular basis of endophyte-mediated defence remains poorly understood. Here, we demonstrate that the endophytic fungus Penicillium pinophilum EU0013 suppresses the yellow strain of cucumber mosaic virus (CMV-Y) in Solanum lycopersicum and Nicotiana benthamiana. CMV-Y infection induced pronounced oxidative and hormonal perturbations, which were mitigated by P. pinophilum colonisation. Endophyte-associated plants exhibited early accumulation of jasmonate intermediates, consistent with the activation of jasmonate signalling. This response promoted the degradation of jasmonate-ZIM-domain proteins and release of core JA-responsive transcription factors. Virus-induced gene silencing identified MYC2 as a key regulator required for endophyte-mediated antiviral protection, with WRKY17 contributing to defence modulation. In parallel, transcriptome analysis revealed the upregulation of a Dicer-like gene, indicating enhanced engagement of RNA silencing, a primary antiviral mechanism targeting viral RNA. This coordinated activation occurred alongside significant induction of pathogenesis-related proteins, particularly PR9, and improved control of reactive oxygen species. Salicylic acid-responsive defences showed a host-modulated pattern, with PR1 induced by CMV and PR2/PR5 preferentially enhanced in endophyte-associated plants. Collectively, these findings demonstrate that P. pinophilum enhances antiviral immunity through coordinated defence integration pathways, providing a framework for endophyte-based viral disease management. en-copyright= kn-copyright= en-aut-name=IbiangSarah R. en-aut-sei=Ibiang en-aut-mei=Sarah R. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=GalisIvan en-aut-sei=Galis en-aut-mei=Ivan kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KondoHideki en-aut-sei=Kondo en-aut-mei=Hideki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=SuzukiNobuhiro en-aut-sei=Suzuki en-aut-mei=Nobuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= affil-num=1 en-affil=Group of Plant-Microbe Interactions, Institute of Plant Science and Resources, Okayama University kn-affil= affil-num=2 en-affil=Group of Plant-Insect Interactions, Institute of Plant Science and Resources, Okayama University kn-affil= affil-num=3 en-affil=Group of Plant-Microbe Interactions, Institute of Plant Science and Resources, Okayama University kn-affil= affil-num=4 en-affil=Group of Plant-Microbe Interactions, Institute of Plant Science and Resources, Okayama University kn-affil= en-keyword=cucumber mosaic virus kn-keyword=cucumber mosaic virus en-keyword=endophyte]mediated resistance kn-keyword=endophyte]mediated resistance en-keyword=jasmonate signalling kn-keyword=jasmonate signalling en-keyword=pathogenesis]related proteins kn-keyword=pathogenesis]related proteins en-keyword=solanaceae kn-keyword=solanaceae en-keyword=tripartite interaction kn-keyword=tripartite interaction END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page= end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260715 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Triple Oxygen Isotope Compositions of Isotopic Reference Waters: Implications for VSMOW-Scale and VSMOW?SLAP-Scale ƒ¢Œ17O Calibration en-subtitle= kn-subtitle= en-abstract= kn-abstract=Triple oxygen isotope ratios of waters are commonly reported on the VSMOW?SLAP scale, whereas comparison with theoretical calculations and assessment of instrumental scale distortion require accurate constraints on the measured isotopic compositions of the primary isotopic reference materials (iRMs) themselves. In particular, the measured ƒÂ17OVSMOW and ƒ¢Œ17OVSMOW values for SLAP and its substitute, SLAP2, remain insufficiently constrained and reported values differ among laboratories. Here, we measured triple oxygen isotope ratios for two primary iRMs (VSMOW and SLAP) and twelve secondary iRMs (VSMOW2, SLAP2, GISP, GRESP, USGS45, USGS46, USGS46a, USGS47, USGS48, USGS49, USGS50 and USGS53) using BrF5 fluorination and dual-inlet isotope-ratio mass spectrometry. For SLAP, we obtained ƒÂ18OVSMOW = -55.50 }?0.15ñ and ƒÂ17OVSMOW = -29.66 }?0.08ñ, giving ƒ¢Œ17OVSMOW =?34 }?6 per meg (all expanded uncertainties, k =?2). The corresponding values for SLAP2 agree within uncertainty. When expressed on the conventional VSMOW?SLAP scale, our ƒ¢Œ17OVSMOW?SLAP values for all secondary iRMs with available literature values agree with previously published values within uncertainty, confirming interlaboratory comparability on that scale. In contrast, waters with low ƒÂ18O values, ƒ¢Œ17OVSMOW values are systematically higher than the corresponding ƒ¢Œ17OVSMOW?SLAP values. These results further suggest that accurate determination of the VSMOW-scale isotopic composition of SLAP and/or SLAP2 across laboratories is essential, particularly for low-ƒÂ18O samples, for which the difference between VSMOW-scale and VSMOW?SLAP-scale ƒ¢Œ17O values becomes large, and for meaningful comparison between measured data and theoretical calculations. en-copyright= kn-copyright= en-aut-name=TanakaRyoji en-aut-sei=Tanaka en-aut-mei=Ryoji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=PackAndreas en-aut-sei=Pack en-aut-mei=Andreas kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=CoplenTyler B. en-aut-sei=Coplen en-aut-mei=Tyler B. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= affil-num=1 en-affil=The Pheasant Memorial Laboratory for Geochemistry and Cosmochemistry, Institute for Planetary Materials, Okayama University kn-affil= affil-num=2 en-affil=Georg-August-Universit?t G?ttingen, Geowissenschaftliches Zentrum kn-affil= affil-num=3 en-affil=US Geological Survey kn-affil= en-keyword=primary isotopic reference material kn-keyword=primary isotopic reference material en-keyword=secondary isotopic reference material kn-keyword=secondary isotopic reference material en-keyword=triple oxygen isotopes kn-keyword=triple oxygen isotopes en-keyword=VSMOW-SLAP scale kn-keyword=VSMOW-SLAP scale END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page= end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260722 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Dissociation between globe shape-induced rectus muscle pulley displacement and abduction limitation in patients aged 40?years and older with high myopic strabismus en-subtitle= kn-subtitle= en-abstract= kn-abstract=Purpose We hypothesized that high myopia (HM)-induced globe deformation displaces rectus muscle (RM) pulleys, contributing to mild ocular motility restriction. This study investigated the effects of globe shape on RM pulley positions in older Japanese patients with acquired strabismus (AS) and mild motility restriction?defined as the ability to abduct both eyes beyond the midline.
Methods In this retrospective case series, 28 patients (mean age?}?standard deviation: 61.2?}?9.0 years) with adult-onset AS were included: 6 patients with (LAB group) and 22 patients without abduction limitation (NLAB group). In each subject, the eye with the longer axial length (AL???26 mm), measured using an AL measurement apparatus, was analyzed using magnetic resonance imaging (MRI). RM pulley positions relative to the globe center and equatorial diameter (ED) were measured; the ED-to-AL ratio (EAR) was calculated. We compared these parameters between groups and analyzed correlations of globe-shape factors (EAR, AL, and ED) with pulley positions and age.
Results No significant differences in EAR, AL, ED, or pulley positions were detected between LAB and NLAB groups, possibly owing to the limited sample size and group imbalance, in the analyzed eyes. However, as EAR decreased (prolate deformation), the superior rectus (SR) pulley (r?=?0.68, P? Conclusions In older Japanese patients with HM and AS, prolate globe deformation was associated with age and significantly correlated with SR and IR pulley positions. While the direct relationship between these structural changes and the clinical degree of mild abduction limitation requires further investigation in larger cohorts, EAR sensitively reflected age-related morphological shifts; thus, when used in conjunction with AL, EAR may represent a readily measurable MRI-based parameter associated with restrictive motility tendencies in strabismus with high myopia. en-copyright= kn-copyright= en-aut-name=KonoReika en-aut-sei=Kono en-aut-mei=Reika kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HamasakiIchiro en-aut-sei=Hamasaki en-aut-mei=Ichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KishimotoFumiko en-aut-sei=Kishimoto en-aut-mei=Fumiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=ShibataKiyo en-aut-sei=Shibata en-aut-mei=Kiyo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MorisawaShin en-aut-sei=Morisawa en-aut-mei=Shin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MorizaneYuki en-aut-sei=Morizane en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Department of Ophthalmology, Okayama University Graduate School of Medicine Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Lino Eye Clinic kn-affil= affil-num=3 en-affil=Division of Ophthalmology, Ibara City Hospital kn-affil= affil-num=4 en-affil=Lino Eye Clinic kn-affil= affil-num=5 en-affil=Department of Ophthalmology, Okayama University Graduate School of Medicine Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Ophthalmology, Okayama University Graduate School of Medicine Dentistry, and Pharmaceutical Sciences kn-affil= en-keyword=Heavy eye syndrome kn-keyword=Heavy eye syndrome en-keyword=High myopia kn-keyword=High myopia en-keyword=Magnetic resonance imaging kn-keyword=Magnetic resonance imaging en-keyword=Prolate deformation kn-keyword=Prolate deformation en-keyword=Rectus muscle pulley kn-keyword=Rectus muscle pulley en-keyword=Strabismus kn-keyword=Strabismus END start-ver=1.4 cd-journal=joma no-vol=14 cd-vols= no-issue=7 article-no= start-page=e73156 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202607 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Custom]Made Mouthpiece]Assisted Oral Cryotherapy During Hematopoietic Stem Cell Transplantation in a Patient With Hemimaxillectomy]Related Oroantral Communication: A Case Report en-subtitle= kn-subtitle= en-abstract= kn-abstract=A custom-made mouthpiece enabled safe oral cryotherapy in a patient with extensive oroantral communication after hemimaxillectomy and may also be applicable to other patients with communication between the oral cavity and the maxillary sinus or nasal cavity. en-copyright= kn-copyright= en-aut-name=MatsuzakiKumiko en-aut-sei=Matsuzaki en-aut-mei=Kumiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MiyazakiFuminobu en-aut-sei=Miyazaki en-aut-mei=Fuminobu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MotoyamaYasuji en-aut-sei=Motoyama en-aut-mei=Yasuji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TakedaSeiko en-aut-sei=Takeda en-aut-mei=Seiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KubokiTakuo en-aut-sei=Kuboki en-aut-mei=Takuo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=SogaYoshihiko en-aut-sei=Soga en-aut-mei=Yoshihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Division of Hospital Dentistry, Okayama University Hospital kn-affil= affil-num=2 en-affil=Dental Laboratory Division, Okayama University Hospital kn-affil= affil-num=3 en-affil=Dental Laboratory Division, Okayama University Hospital kn-affil= affil-num=4 en-affil=Department of Oral and Maxillofacial Reconstructive Surgery, Okayama University Hospital kn-affil= affil-num=5 en-affil=Dental Laboratory Division, Okayama University Hospital kn-affil= affil-num=6 en-affil=Division of Hospital Dentistry, Okayama University Hospital kn-affil= en-keyword=hematopoietic stem cell transplantation kn-keyword=hematopoietic stem cell transplantation en-keyword=hemimaxillectomy kn-keyword=hemimaxillectomy en-keyword=mouthpiece kn-keyword=mouthpiece en-keyword=oral cryotherapy kn-keyword=oral cryotherapy en-keyword=oral mucositis kn-keyword=oral mucositis END start-ver=1.4 cd-journal=joma no-vol=32 cd-vols= no-issue=6 article-no= start-page=103486 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202609 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Studentsf perceptions of an electronic one-minute paper in a radiography training programme: An exploratory cross-sectional questionnaire study en-subtitle= kn-subtitle= en-abstract= kn-abstract=Introduction: Formative assessment can support health professions education; however, reports on electronic 1-min papers as classroom feedback and engagement tools in radiography programmes remain limited. This study explored radiography studentsf perceptions of an electronic 1-min paper, focusing on in-class reflection, ease of asking questions, and instructor feedback.
Methods: An electronic 1-min paper was used in a radiotherapy course across 45 class sessions in the 2024 academic year for third-year students enrolled in a 4-year radiography programme. Each 90-min class comprised a 60-min lecture, 10-min completion of the paper, and 20-min instructor feedback. After the course, a de-identified online questionnaire was administered. Eleven 5-point Likert-scale items were analysed using descriptive statistics and Spearman's rank correlations. Free-text responses were analysed using inductive qualitative content analysis.
Results: Of the 77 eligible students, 74 responded (96.1%). Ease of use received the highest rating (mean, 4.76; standard deviation [SD], 0.52), followed by ease of asking questions (mean, 4.32), question resolution (mean, 4.16), and usefulness of instructor feedback (mean, 4.08). Motivation to review after class was lowest (mean, 3.04; SD, 1.16). Active participation showed a strong positive association with in-class concentration (rs = 0.815; P < 0.001). Free-text responses indicated reflection and improved understanding, anonymous sharing of questions, active listening and concentration, and suggestions for improvement.
Conclusion: The electronic 1-min paper was widely accepted and perceived to support in-class reflection, question expression, and immediate feedback. However, studentsf perceptions of its influence on out-of-class review motivation were limited. The findings indicate perceived value and engagement rather than demonstrated educational effectiveness.
Implications for practice: Electronic 1-min papers may help instructors identify studentsf questions and respond during class, providing a practical approach to in-class feedback. en-copyright= kn-copyright= en-aut-name=KomatsuY. en-aut-sei=Komatsu en-aut-mei=Y. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=AbeS. en-aut-sei=Abe en-aut-mei=S. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=TsudouS. en-aut-sei=Tsudou en-aut-mei=S. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=YamamotoY. en-aut-sei=Yamamoto en-aut-mei=Y. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TanabeY. en-aut-sei=Tanabe en-aut-mei=Y. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= affil-num=1 en-affil=Division of Radiological Technology, Graduate School of Health Sciences, Okayama University kn-affil= affil-num=2 en-affil=Department of Radiological Technology, Faculty of Health Care Sciences, Jikei University of Health Care Sciences kn-affil= affil-num=3 en-affil=Department of Radiological Technology, Faculty of Health Care Sciences, Jikei University of Health Care Sciences kn-affil= affil-num=4 en-affil=Division of Radiological Technology, Graduate School of Health Sciences, Okayama University kn-affil= affil-num=5 en-affil=Faculty of Health Sciences, Department of Radiological Technology, Okayama University Medical School, Okayama University kn-affil= en-keyword=Electronic 1-min paper kn-keyword=Electronic 1-min paper en-keyword=Formative assessment kn-keyword=Formative assessment en-keyword=Radiography education kn-keyword=Radiography education en-keyword=Immediate feedback kn-keyword=Immediate feedback en-keyword=Student engagement kn-keyword=Student engagement en-keyword=Health professions education kn-keyword=Health professions education END start-ver=1.4 cd-journal=joma no-vol=429 cd-vols= no-issue= article-no= start-page=140693 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2027 dt-pub=202702 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Mechanism of Enhanced Heat Release in Spray Combustion of a Methanol?DME Blended Fuel en-subtitle= kn-subtitle= en-abstract= kn-abstract=This paper investigates the spray combustion characteristics of a methanol?DME blended fuel with a DME mole fraction of 0.57 in a constant volume vessel. The rate of heat release (ROHR) was evaluated using pressure-based heat release analysis. The results show that the methanol?DME blended fuel requires a longer injection duration due to the lower LHV (lower heating value), but it exhibits a shorter combustion duration than conventional diesel fuel, together with a higher ROHR normalized by the injection LHV rate and a shorter afterburning duration. To elucidate the relationship between the spray combustion processes and the ROHR characteristics, the spray flame was visualized using schlieren and OH chemiluminescence imaging techniques. In addition, a one-dimensional simulation based on a diesel jet model was conducted to evaluate the distributions of the equivalence ratio. These analyses reveal that the lower theoretical air?fuel ratio, attributed to the oxygenated nature of the methanol?DME blended fuel, reduces the equivalence ratio within the spray, promoting earlier formation of near-stoichiometric mixtures. As a result, the ROHR reaches and sustains its maximum earlier during mixing-controlled combustion, and fuel consumption is enhanced during afterburning. en-copyright= kn-copyright= en-aut-name=KobashiYoshimitsu en-aut-sei=Kobashi en-aut-mei=Yoshimitsu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MakinoShodai en-aut-sei=Makino en-aut-mei=Shodai kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=NambaMasakuni en-aut-sei=Namba en-aut-mei=Masakuni kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KawaharaNobuyuki en-aut-sei=Kawahara en-aut-mei=Nobuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=AsakaKatsuyoshi en-aut-sei=Asaka en-aut-mei=Katsuyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KobayashiKazuyuki en-aut-sei=Kobayashi en-aut-mei=Kazuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Faculty of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=4 en-affil=Faculty of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=5 en-affil=Technical Management Division, Carbon Neutral Technology Department, DAIHATSU INFINEARTH MFG. CO., LTD. kn-affil= affil-num=6 en-affil=Technical Management Division, Carbon Neutral Technology Department, DAIHATSU INFINEARTH MFG. CO., LTD. kn-affil= en-keyword=Diesel Engine kn-keyword=Diesel Engine en-keyword=Methanol kn-keyword=Methanol en-keyword=DME kn-keyword=DME en-keyword=Mixing-controlled combustion kn-keyword=Mixing-controlled combustion en-keyword=Oxygenated fuel kn-keyword=Oxygenated fuel END start-ver=1.4 cd-journal=joma no-vol=134 cd-vols= no-issue=7 article-no= start-page=455 end-page=460 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260701 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Dielectric response modulation in relaxor (Sr,Ba)Nb2O6 via engineered defect en-subtitle= kn-subtitle= en-abstract= kn-abstract=Defect engineering provides an effective pathway to tune the dielectric response of relaxor ferroelectrics, yet the roles of individual defect species in tungsten bronze (TTB) systems remain unclear. Here, we investigated how engineered Ti?VO?? defect dipoles and native oxygen vacancies introduced through reduction annealing modify the dielectric properties of relaxor (Sr0.5,Ba0.5)Nb2O6 (0.5-SBN). Ti loading forms stable defect dipoles that generate smaller polar nanoregions (PNRs), suppress their overgrowth, and increase the number of dynamically active PNRs at room temperature, leading to enhanced permittivity ƒÃŒ while preserving DC-bias stability and breakdown strength (EB). Reduction annealing generates Nb4+-related local polarizations aligned with the external electric field, which strengthen dipole fluctuations and slightly increase ƒÃŒ. Electron localization further relaxes the TTB-A2 site disorder?induced random fields, yielding a sharper dielectric peak and promoting more uniform PNR growth. Microwave dielectric spectroscopy combined with electromagnetic simulations revealed that the increases in ƒÃŒ for both Ti-loaded and reduced samples (0.5-SBNT and Reduced 0.5-SBN, respectively) originate predominantly from enhanced dipole polarization. Despite grain coarsening in 0.5-SBNT, the EB remained unchanged, indicating that defect dipoles act as pinning centers that inhibit field-induced PNR aggregation. In reduced 0.5-SBN, EB increased up to pO0 = 4.3 ~ 10?3 atm owing to relaxed random fields, whereas excessive reduction reduced EB through carrier-driven space-charge effects. These results demonstrate that precise control of defect species enables simultaneous optimization of ƒÃŒ, DC-bias stability, and EB in TTB-type relaxor ferroelectrics. en-copyright= kn-copyright= en-aut-name=ShiotaRyusei en-aut-sei=Shiota en-aut-mei=Ryusei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TeranishiTakashi en-aut-sei=Teranishi en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KondoShinya en-aut-sei=Kondo en-aut-mei=Shinya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KishimotoAkira en-aut-sei=Kishimoto en-aut-mei=Akira kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= affil-num=1 en-affil=Graduate School of Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Natural Science and Technology, Okayama University kn-affil= affil-num=3 en-affil=Department of Energy Engineering, Nagoya University kn-affil= affil-num=4 en-affil=Graduate School of Natural Science and Technology, Okayama University kn-affil= en-keyword=Relaxor ferroelectrics kn-keyword=Relaxor ferroelectrics en-keyword=(Sr,Ba)Nb2O6 kn-keyword=(Sr,Ba)Nb2O6 en-keyword=Polar nanoregions kn-keyword=Polar nanoregions en-keyword=Dipole polarization kn-keyword=Dipole polarization en-keyword=DC bias response kn-keyword=DC bias response END start-ver=1.4 cd-journal=joma no-vol=16 cd-vols= no-issue=2 article-no= start-page=e70289 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260331 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Recurrence of Pulmonary Hypertension After Unilateral Lung Transplantation: Histological Evidence of Vasoconstrictive Mechanism en-subtitle= kn-subtitle= en-abstract= kn-abstract=Pulmonary hypertension (PH) is widely recognized as a disease driven by both vasoconstriction and vascular remodeling. Vasoconstriction is thought to play a predominant role in the early stages of PH, whereas the contribution of vascular remodeling increases as the disease progresses. However, clinical or histological evidence of this pathological progression has not been reported. We describe a case of recurrent PH after unilateral right lung transplantation, ultimately requiring bilateral transplantation 9 years later, and discuss the pathogenesis of PH based on histological findings in the transplanted normal lungs and changes in pulmonary blood flow observed by lung perfusion scintigraphy. Serial lung perfusion scintigraphy revealed a dynamic shift in pulmonary blood flow, initially favoring the transplanted lung, followed by a gradual decline. Histological examination demonstrated that the right lung of the second transplantation showed minimal vascular remodeling. These findings provide compelling evidence that vasoconstriction was the predominant contributor to PH after the first transplantation, offering unique insight into early PH pathobiology. en-copyright= kn-copyright= en-aut-name=AkagiSatoshi en-aut-sei=Akagi en-aut-mei=Satoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KondoMegumi en-aut-sei=Kondo en-aut-mei=Megumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=IchimuraKoichi en-aut-sei=Ichimura en-aut-mei=Koichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TanakaTakehiro en-aut-sei=Tanaka en-aut-mei=Takehiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=SugimotoSeiichiro en-aut-sei=Sugimoto en-aut-mei=Seiichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=EjiriKentaro en-aut-sei=Ejiri en-aut-mei=Kentaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=NakamuraKazufumi en-aut-sei=Nakamura en-aut-mei=Kazufumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=YuasaShinsuke en-aut-sei=Yuasa en-aut-mei=Shinsuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= affil-num=1 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Pathology, Hiroshima City Hiroshima Citizens Hospital kn-affil= affil-num=4 en-affil=Department of Pathology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of General Thoracic Surgery and Organ Transplant Center, Okayama University Hospital kn-affil= affil-num=6 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Center for Advanced Heart Failure, Okayama University Hospital kn-affil= affil-num=8 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=pulmonary arterial hypertension kn-keyword=pulmonary arterial hypertension en-keyword=vascular remodeling kn-keyword=vascular remodeling en-keyword=vasoconstriction kn-keyword=vasoconstriction END start-ver=1.4 cd-journal=joma no-vol=34 cd-vols= no-issue=8 article-no= start-page=747 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260709 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Incidence and impact of odontogenic infection-related febrile episodes during perioperative doxorubicin-cyclophosphamide or docetaxel-cyclophosphamide chemotherapy for breast cancer en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background Doxorubicin-cyclophosphamide (AC) and docetaxel-cyclophosphamide (TC) are standard perioperative chemotherapy regimens for breast cancer. Febrile neutropenia (FN) is a common adverse event, and odontogenic infections may contribute to febrile episodes. This study was performed to investigate the incidence and impact of febrile episodes clinically associated with odontogenic infections during AC and TC chemotherapy.
Methods A total of 408 patients with breast cancer receiving 4 cycles of AC (n?=?285) or TC (n?=?123) between 2015 and 2020 were included in this single-center retrospective study. Patients recorded daily axillary temperatures and oral symptoms. Dental evaluations were performed when oral infection was suspected. Febrile episodes (??37.5 ‹C) were assessed, and their clinical association with odontogenic infections was determined based on dental records and the documented clinical course. Relative dose intensity (RDI) was calculated to assess chemotherapy delivery.
Results Overall, 40.2% of patients experienced febrile episodes, and the frequency was higher in the TC group (48.8%) than the AC group (36.5%, P?=?0.02). Febrile episodes associated with oral infections occurred in 9.1% of patients, of which 78.4% were clinically associated with odontogenic infections (7.1% of all patients). Most such episodes occurred during the first chemotherapy cycle (79.3%, P? Conclusions Febrile episodes clinically associated with odontogenic infections occurred in approximately 7%?8% of patients with breast cancer receiving perioperative AC or TC chemotherapy, predominantly during the first cycle. Odontogenic infections should be considered one possible source of febrile episodes during treatment. en-copyright= kn-copyright= en-aut-name=SogaYoshihiko en-aut-sei=Soga en-aut-mei=Yoshihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MatsuzakiKumiko en-aut-sei=Matsuzaki en-aut-mei=Kumiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KosakiHirotaka en-aut-sei=Kosaki en-aut-mei=Hirotaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KishimotoTomoko en-aut-sei=Kishimoto en-aut-mei=Tomoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=YoshitomiAiko en-aut-sei=Yoshitomi en-aut-mei=Aiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KajizonoMakoto en-aut-sei=Kajizono en-aut-mei=Makoto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=MakitaTakashi en-aut-sei=Makita en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=TanakaYuta en-aut-sei=Tanaka en-aut-mei=Yuta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=ZamamiYoshito en-aut-sei=Zamami en-aut-mei=Yoshito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=ShienTadahiko en-aut-sei=Shien en-aut-mei=Tadahiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=DoiharaHiroyoshi en-aut-sei=Doihara en-aut-mei=Hiroyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= affil-num=1 en-affil=Division of Hospital Dentistry, Okayama University Hospital kn-affil= affil-num=2 en-affil=Division of Hospital Dentistry, Okayama University Hospital kn-affil= affil-num=3 en-affil=Division of Hospital Dentistry, Okayama University Hospital kn-affil= affil-num=4 en-affil=Division of Hospital Dentistry, Okayama University Hospital kn-affil= affil-num=5 en-affil=Division of Hospital Dentistry, Okayama University Hospital kn-affil= affil-num=6 en-affil=Department of Pharmacy, Okayama University Hospital kn-affil= affil-num=7 en-affil=Department of Pharmacy, Okayama University Hospital kn-affil= affil-num=8 en-affil=Department of Pharmacy, Okayama University Hospital kn-affil= affil-num=9 en-affil=Department of Pharmacy, Okayama University Hospital kn-affil= affil-num=10 en-affil=Department of Breast and Endocrine Surgery, Okayama University Hospital kn-affil= affil-num=11 en-affil=Department of Surgery, Kawasaki Medical School General Medical Center kn-affil= en-keyword=Breast cancer kn-keyword=Breast cancer en-keyword=Perioperative chemotherapy kn-keyword=Perioperative chemotherapy en-keyword=Odontogenic infection kn-keyword=Odontogenic infection en-keyword=Oral infection kn-keyword=Oral infection en-keyword=Febrile episodes kn-keyword=Febrile episodes en-keyword=Relative dose intensity kn-keyword=Relative dose intensity END start-ver=1.4 cd-journal=joma no-vol=17 cd-vols= no-issue= article-no= start-page=1875734 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260703 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Quantitative resistance to Rhizoctonia solani AG-4 develops independently in leaves and roots of Brachypodium distachyon en-subtitle= kn-subtitle= en-abstract= kn-abstract=Rhizoctonia solani is a soil-borne phytopathogen with a broad host range, classified into multiple anastomosis groups (AGs). While the rice sheath blight pathogen AG-1 IA is well-studied, defense mechanisms against AG-4, which infects diverse monocots and dicots, remain unclear. Here, we screened 153 Brachypodium distachyon accessions for resistance to AG-4 HG-I+II using both leaf and soil inoculation assays. The accessions exhibited a quantitative resistance spectrum in both assays. Some accessions were resistant to both methods, while others showed resistance in only one, indicating that leaf and root defenses operate independently. Unlike the salicylic acid (SA)-dependent resistance observed in several accessions against AG-1 IA, AG-4 leaf resistance appears to be largely SA-independent. Among 22 resistant accessions, only eight induced the SA marker BdWRKY38, whereas twelve induced the jasmonic acid (JA) marker BdAOS. Additionally, resistance in Bd3?1 was unaffected by expression of the SA hydroxylase NahG. These results are consistent with previous findings that exogenous application of SA, JA, or ethylene fails to confer AG-4 resistance. Instead, most AG-4-resistant accessions showed common upregulation of cell wall biosynthesis-related genes following leaf infection, suggesting that cell wall fortification may contribute to defense against AG-4. These findings establish B. distachyon as a valuable model for dissecting resistance mechanisms against R. solani AG-4. en-copyright= kn-copyright= en-aut-name=FernandaRozi en-aut-sei=Fernanda en-aut-mei=Rozi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MahadevanNiranjan en-aut-sei=Mahadevan en-aut-mei=Niranjan kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KohnoNatsuka en-aut-sei=Kohno en-aut-mei=Natsuka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NagaoReiko en-aut-sei=Nagao en-aut-mei=Reiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=WatanabeMegumi en-aut-sei=Watanabe en-aut-mei=Megumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=SakataNanami en-aut-sei=Sakata en-aut-mei=Nanami kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=MatsuiHidenori en-aut-sei=Matsui en-aut-mei=Hidenori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=ToyodaKazuhiro en-aut-sei=Toyoda en-aut-mei=Kazuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=IchinoseYuki en-aut-sei=Ichinose en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=KouzaiYusuke en-aut-sei=Kouzai en-aut-mei=Yusuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=MochidaKeiichi en-aut-sei=Mochida en-aut-mei=Keiichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=NoutoshiYoshiteru en-aut-sei=Noutoshi en-aut-mei=Yoshiteru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= affil-num=1 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=3 en-affil=School of Agriculture, Okayama University kn-affil= affil-num=4 en-affil=School of Agriculture, Okayama University kn-affil= affil-num=5 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=6 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=7 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=8 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=9 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=10 en-affil=Crop Stress Management Group, Division of Plant Molecular Regulation Research, Institute of Agrobiological Sciences, National Agriculture and Food Research Organization (NARO) kn-affil= affil-num=11 en-affil=RIKEN Center for Sustainable Resource Science kn-affil= affil-num=12 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= en-keyword=Brachypodium distachyon kn-keyword=Brachypodium distachyon en-keyword=cell wall fortification kn-keyword=cell wall fortification en-keyword=phytohormone kn-keyword=phytohormone en-keyword=quantitative resistance kn-keyword=quantitative resistance en-keyword=Rhizoctonia solani kn-keyword=Rhizoctonia solani en-keyword=root infection kn-keyword=root infection END start-ver=1.4 cd-journal=joma no-vol=33 cd-vols= no-issue=2 article-no= start-page=228 end-page=236 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260201 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=A Case of Acquired LCAT Deficiency with the Discrepancy between Spontaneous Resolution of Proteinuria and Continually Low HDL Cholesterol Levels en-subtitle= kn-subtitle= en-abstract= kn-abstract=A 79-year-old Chinese man was referred for nephrotic syndrome (proteinuria 4.4 g/day). In blood tests, serum high-density lipoprotein (HDL) cholesterol was undetectable, and the esterified cholesterol to total cholesterol ratio was very low. Lecithin: cholesterol acyltransferase (LCAT) activity was also undetectable. Since he had neither corneal opacity nor pathological mutations in the LCAT gene and anti-LCAT antibodies were detected in serum, a diagnosis of acquired LCAT deficiency was made. Renal biopsy revealed glomerulopathy associated with LCAT deficiency and membranous nephropathy (MN). Since the patientfs proteinuria did not improve despite prescribing an angiotensin II receptor blocker (ARB), we suggested the prescription of prednisolone, but he returned to China due to the expiration of his residence visa for Japan. One year after the initial visit, his proteinuria had improved to 0.9 g/day without immunosuppressive therapy. However, his HDL cholesterol level was still low at around 3 mg/dL, indicating a discrepancy between remission of nephrotic syndrome and lack of improvement in lipid levels.
Of the 11 patients with acquired LCAT deficiency reported to date, 4 with undetectable LCAT activity and MN on renal biopsy required immunosuppressive therapy to alleviate proteinuria. The present patient was prescribed only an ARB according to his preference, which happened to be consistent with the MN treatment guideline that states, gWait 6 months for spontaneous remission while using maximal antiproteinuric therapy.h The clinical course of acquired LCAT deficiency varies, and further case reports are needed to determine the necessity of immunosuppressive therapy. en-copyright= kn-copyright= en-aut-name=MatsuoMiki en-aut-sei=Matsuo en-aut-mei=Miki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=OguraMasatsune en-aut-sei=Ogura en-aut-mei=Masatsune kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KurodaMasayuki en-aut-sei=Kuroda en-aut-mei=Masayuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=ArisatoTetsuya en-aut-sei=Arisato en-aut-mei=Tetsuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KishidaMasatsugu en-aut-sei=Kishida en-aut-mei=Masatsugu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=Harada-ShibaMariko en-aut-sei=Harada-Shiba en-aut-mei=Mariko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=WadaJun en-aut-sei=Wada en-aut-mei=Jun kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=YokoteKoutaro en-aut-sei=Yokote en-aut-mei=Koutaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=YoshiharaFumiki en-aut-sei=Yoshihara en-aut-mei=Fumiki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil=Department of Nephrology and Hypertension, National Cerebral and Cardiovascular Center kn-affil= affil-num=2 en-affil=Department of Clinical Laboratory Technology, Faculty of Medical Science, Juntendo University kn-affil= affil-num=3 en-affil=Center for Advanced Medicine, Chiba University Hospital, Chiba University kn-affil= affil-num=4 en-affil=Department of Nephrology and Hypertension, National Cerebral and Cardiovascular Center kn-affil= affil-num=5 en-affil=Department of Nephrology and Hypertension, National Cerebral and Cardiovascular Center kn-affil= affil-num=6 en-affil=Cardiovascular Center, Osaka Medical and Pharmaceutical University kn-affil= affil-num=7 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of Endocrinology, Hematology and Gerontology, Chiba University Graduate School of Medicine kn-affil= affil-num=9 en-affil=Department of Nephrology and Hypertension, National Cerebral and Cardiovascular Center kn-affil= en-keyword=Acquired LCAT deficiency kn-keyword=Acquired LCAT deficiency en-keyword=HDL deficiency kn-keyword=HDL deficiency en-keyword=Nephrotic syndrome kn-keyword=Nephrotic syndrome en-keyword=Membranous glomerulonephritis kn-keyword=Membranous glomerulonephritis END start-ver=1.4 cd-journal=joma no-vol=33 cd-vols= no-issue=1 article-no= start-page=109 end-page=115 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260101 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Safe Continuation of Apheresis during Pregnancy using the Double-Filtration Plasmapheresis Thermo Mode in a Pregnant Female with Familial Hypercholesterolemia: A Case Report en-subtitle= kn-subtitle= en-abstract= kn-abstract=Familial hypercholesterolemia (FH) is an inherited disorder characterized by elevated LDL cholesterol levels and an increased risk of early-onset atherosclerotic cardiovascular disease. In pregnant female with FH, apheresis is the preferred treatment because standard therapeutic agents such as statins are contraindicated during pregnancy. LDL adsorption therapy is commonly used; however, after 27 weeks of gestation, it is often switched to dual filtration plasma exchange (DFPP) due to the significant drop in blood pressure caused by bradykinin production. However, DFPP has limited ability to adapt to the increase in circulating plasma volume associated with pregnancy. Here we discuss the case of a 32-year-old female with homozygous FH who underwent different apheresis strategies during her pregnancies. In her first pregnancy, she continued LDL adsorption therapy using DFPP but ultimately delivered a small-for-gestational-age infant via cesarean section. For her second pregnancy, double-filtration plasmapheresis thermo mode, DF-thermo, was introduced to mitigate the limitations of DFPP and LDL adsorption therapies, such as hypotension during apheresis and albumin loss. By minimizing these complications, DF-thermo allowed for a successful delivery without compromising fetal growth. en-copyright= kn-copyright= en-aut-name=SakurabuYoshimasa en-aut-sei=Sakurabu en-aut-mei=Yoshimasa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=UchidaHaruhito A. en-aut-sei=Uchida en-aut-mei=Haruhito A. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=OkuyamaYuka en-aut-sei=Okuyama en-aut-mei=Yuka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=EtoEriko en-aut-sei=Eto en-aut-mei=Eriko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TakasugiKanako en-aut-sei=Takasugi en-aut-mei=Kanako kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=AsakawaTomohiko en-aut-sei=Asakawa en-aut-mei=Tomohiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KatayamaKatsuyoshi en-aut-sei=Katayama en-aut-mei=Katsuyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=OkamotoShugo en-aut-sei=Okamoto en-aut-mei=Shugo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=OnishiYasuhiro en-aut-sei=Onishi en-aut-mei=Yasuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=Matsuoka-UchiyamaNatsumi en-aut-sei=Matsuoka-Uchiyama en-aut-mei=Natsumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=FujiharaChihiro en-aut-sei=Fujihara en-aut-mei=Chihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=TanakaKeiko en-aut-sei=Tanaka en-aut-mei=Keiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=TakeuchiHidemi en-aut-sei=Takeuchi en-aut-mei=Hidemi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=UmebayashiRyoko en-aut-sei=Umebayashi en-aut-mei=Ryoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=TanabeKatsuyuki en-aut-sei=Tanabe en-aut-mei=Katsuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=WadaJun en-aut-sei=Wada en-aut-mei=Jun kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= affil-num=1 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Faculty of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Faculty of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Faculty of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of Obstetrics and Gynecology, Okayama University Hospital kn-affil= affil-num=5 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Faculty of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Faculty of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Faculty of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Faculty of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=9 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Faculty of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=10 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Faculty of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=11 en-affil=Department of Clinical Engineering Center, Okayama University Hospital kn-affil= affil-num=12 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Faculty of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=13 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Faculty of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=14 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Faculty of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=15 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Faculty of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=16 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Faculty of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=Familial hypercholesterolemia kn-keyword=Familial hypercholesterolemia en-keyword=Double-filtration plasmapheresis thermo-mode kn-keyword=Double-filtration plasmapheresis thermo-mode en-keyword=Pregnancy kn-keyword=Pregnancy END start-ver=1.4 cd-journal=joma no-vol=75 cd-vols= no-issue=3 article-no= start-page=400 end-page=408 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202607 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Outcomes following the discontinuation of biologic therapy in patients with severe asthma en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background: Biologic therapies are pivotal in managing severe asthma. Despite their efficacy, some patients discontinue biologics, with varying outcomes. Predictors of successful versus unsuccessful discontinuation remain poorly defined. This study aimed to identify clinical factors associated with post-discontinuation outcomes in a real-world practice.
Methods: This retrospective cohort included adults with severe asthma who had received biologics for at least 12 months and subsequently discontinued therapy for a minimum of three consecutive months. We assessed the effects of baseline blood eosinophilia (?300 cells/ƒÊL), residual sputum symptoms during biologic therapy, treatment responsiveness, biologic class, and discontinuation reasons on post-discontinuation asthma exacerbation rates using multivariable Cox models.
Results: A total of 118 patients were analyzed. The Kaplan?Meier analysis estimated a 65 % exacerbation-free probability at 12 months after discontinuation. Factors associated with successful discontinuation included a robust clinical response and absence of exacerbations before cessation. Conversely, baseline eosinophilia, residual sputum symptoms during biologics, and discontinuation due to inadequate therapeutic response or financial burden were associated with post-discontinuation exacerbations. In class-stratified restricted models, persistent sputum remained significantly associated with post-discontinuation exacerbations after stopping anti-IL-5 therapies, while baseline eosinophilia was associated with post-discontinuation exacerbations after stopping anti-IgE or anti-IL-4Rƒ¿. Among patients with sputum symptoms or poor-response discontinuation, the overall frequency of exacerbations declined after discontinuation.
Conclusions: Baseline eosinophilia, persistent sputum during therapy, and discontinuation prompted by poor response or cost may serve as risk factors for post-discontinuation exacerbations; however, risk is phenotype- and class-dependent. Careful patient selection and monitoring are essential when considering the discontinuation of biologic treatment. en-copyright= kn-copyright= en-aut-name=NagasakiTadao en-aut-sei=Nagasaki en-aut-mei=Tadao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MatsumotoHisako en-aut-sei=Matsumoto en-aut-mei=Hisako kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=IwanagaTakashi en-aut-sei=Iwanaga en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=MatsunagaKazuto en-aut-sei=Matsunaga en-aut-mei=Kazuto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=SekiyaKiyoshi en-aut-sei=Sekiya en-aut-mei=Kiyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=HaradaTomoya en-aut-sei=Harada en-aut-mei=Tomoya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=SakuraiShogo en-aut-sei=Sakurai en-aut-mei=Shogo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=HaradaNorihiro en-aut-sei=Harada en-aut-mei=Norihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=KoyaToshiyuki en-aut-sei=Koya en-aut-mei=Toshiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=FukunagaKoichi en-aut-sei=Fukunaga en-aut-mei=Koichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=KanekoTakeshi en-aut-sei=Kaneko en-aut-mei=Takeshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=AsaiKazuhisa en-aut-sei=Asai en-aut-mei=Kazuhisa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=KomaseYuko en-aut-sei=Komase en-aut-mei=Yuko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=GonYasuhiro en-aut-sei=Gon en-aut-mei=Yasuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=TanakaAkihiko en-aut-sei=Tanaka en-aut-mei=Akihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=SagaraHironori en-aut-sei=Sagara en-aut-mei=Hironori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=SunadomeHironobu en-aut-sei=Sunadome en-aut-mei=Hironobu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=NaganoTatsuya en-aut-sei=Nagano en-aut-mei=Tatsuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= en-aut-name=NakamuraYoichi en-aut-sei=Nakamura en-aut-mei=Yoichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=19 ORCID= en-aut-name=NiimiAkio en-aut-sei=Niimi en-aut-mei=Akio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=20 ORCID= en-aut-name=HattoriNoboru en-aut-sei=Hattori en-aut-mei=Noboru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=21 ORCID= en-aut-name=HajiroTakashi en-aut-sei=Hajiro en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=22 ORCID= en-aut-name=FujimotoHajime en-aut-sei=Fujimoto en-aut-mei=Hajime kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=23 ORCID= en-aut-name=HojoMasayuki en-aut-sei=Hojo en-aut-mei=Masayuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=24 ORCID= en-aut-name=MiyaharaNobuaki en-aut-sei=Miyahara en-aut-mei=Nobuaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=25 ORCID= en-aut-name=YamaguchiMasafumi en-aut-sei=Yamaguchi en-aut-mei=Masafumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=26 ORCID= en-aut-name=TsujiKimiko en-aut-sei=Tsuji en-aut-mei=Kimiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=27 ORCID= en-aut-name=SanoAkiko en-aut-sei=Sano en-aut-mei=Akiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=28 ORCID= en-aut-name=HaraguchiRyuta en-aut-sei=Haraguchi en-aut-mei=Ryuta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=29 ORCID= en-aut-name=SanoHiroyuki en-aut-sei=Sano en-aut-mei=Hiroyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=30 ORCID= en-aut-name=MurakiMasato en-aut-sei=Muraki en-aut-mei=Masato kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=31 ORCID= en-aut-name=TohdaYuji en-aut-sei=Tohda en-aut-mei=Yuji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=32 ORCID= affil-num=1 en-affil=Department of Respiratory Medicine and Allergology, Kindai University Nara Hospital kn-affil= affil-num=2 en-affil=Department of Respiratory Medicine and Allergology, Kindai University Faculty of Medicine kn-affil= affil-num=3 en-affil=Department of Respiratory Medicine and Allergology, Kindai University Faculty of Medicine kn-affil= affil-num=4 en-affil=Department of Respiratory Medicine and Infectious Disease, Graduate School of Medicine, Yamaguchi University kn-affil= affil-num=5 en-affil=Clinical Research Center for Allergy and Rheumatology, National Hospital Organization Sagamihara National Hospital kn-affil= affil-num=6 en-affil=Department of Multidisciplinary Internal Medicine, Division of Respiratory Medicine and Rheumatology, Faculty of Medicine, Tottori University kn-affil= affil-num=7 en-affil=Department of Respiratory Medicine, Shizuoka General Hospital kn-affil= affil-num=8 en-affil=Department of Respiratory Medicine, Juntendo University Faculty of Medicine and Graduate School of Medicine kn-affil= affil-num=9 en-affil=Department of Respiratory Medicine and Infectious Diseases, Niigata University Graduate School of Medical and Dental Sciences kn-affil= affil-num=10 en-affil=Division of Pulmonary Medicine, Department of Medicine, Keio University, School of Medicine kn-affil= affil-num=11 en-affil=Department of Pulmonology, Yokohama City University Graduate School of Medicine kn-affil= affil-num=12 en-affil=Department of Respiratory Medicine, Graduate School of Medicine, Osaka Metropolitan University kn-affil= affil-num=13 en-affil=Department of Respiratory Medicine, St.Marianna University School of Medicine, Yokohama Seibu Hospital kn-affil= affil-num=14 en-affil=Division of Respiratory Medicine, Department of Internal Medicine, Nihon University School of Medicine kn-affil= affil-num=15 en-affil=Department of Medicine, Division of Respiratory Medicine and Allergology, Showa Medical University, School of Medicine kn-affil= affil-num=16 en-affil=Department of Medicine, Division of Respiratory Medicine and Allergology, Showa Medical University, School of Medicine kn-affil= affil-num=17 en-affil=Department of Respiratory Care and Sleep Control Medicine, Graduate School of Medicine, Kyoto University kn-affil= affil-num=18 en-affil=Division of Respiratory Medicine, Department of Internal Medicine, Kobe University Graduate School of Medicine kn-affil= affil-num=19 en-affil=Medical Center for Allergic and Immune Diseases, Yokohama City Minato Red Cross Hospital kn-affil= affil-num=20 en-affil=Department of Respiratory Medicine, Allergy, and Clinical Immunology, Nagoya City University Graduate School of Medical Sciences kn-affil= affil-num=21 en-affil=Department of Molecular and Internal Medicine, Graduate School of Biomedical Sciences, Hiroshima University kn-affil= affil-num=22 en-affil=Department of Respiratory Medicine, Tenri Hospital kn-affil= affil-num=23 en-affil=Department of Pulmonary and Critical Care Medicine, Mie University Graduate School of Medicine kn-affil= affil-num=24 en-affil=Division of Respiratory Medicine, National Center for Global Health and Medicine kn-affil= affil-num=25 en-affil=Department of Medical Technology, Okayama University Graduate School of Health Sciences kn-affil= affil-num=26 en-affil=Division of Respiratory Medicine, Department of Internal Medicine, Shiga University of Medical Science kn-affil= affil-num=27 en-affil=Department of Respiratory Medicine and Allergology, Kochi Medical School, Kochi University kn-affil= affil-num=28 en-affil=Department of Respiratory Medicine and Allergology, Kindai University Faculty of Medicine kn-affil= affil-num=29 en-affil=Department of Respiratory Medicine and Allergology, Kindai University Faculty of Medicine kn-affil= affil-num=30 en-affil=Department of Respiratory Medicine and Allergology, Kindai University Faculty of Medicine kn-affil= affil-num=31 en-affil=Department of Respiratory Medicine and Allergology, Kindai University Nara Hospital kn-affil= affil-num=32 en-affil=Department of Respiratory Medicine and Allergology, Kindai University Faculty of Medicine kn-affil= en-keyword=Adult asthma kn-keyword=Adult asthma en-keyword=Biologics kn-keyword=Biologics en-keyword=Discontinuation kn-keyword=Discontinuation en-keyword=Exacerbation kn-keyword=Exacerbation en-keyword=Severe asthma kn-keyword=Severe asthma END start-ver=1.4 cd-journal=joma no-vol=27 cd-vols= no-issue=1 article-no= start-page=35 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20251210 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Oral health care during pregnancy to prevent preterm birth and low birth weight: study protocol for a randomized controlled trial en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background Periodontal disease during pregnancy has been associated with an increased risk of preterm birth (PTB) and low birth weight (LBW). However, most previous interventional studies have reported that scaling and root planing (SRP), a form of basic periodontal treatment, is insufficient to effectively prevent PTB and LBW. Recent systematic reviews and meta-analyses suggest that combining SRP with routine use of chlorhexidine gluconate (CHG) mouthwash may reduce the risk of these adverse birth outcomes by approximately half. This study will be among the first randomized controlled trials (RCTs) to evaluate the potential synergistic effects of this combined approach on improving birth outcomes.
Methods This multi-center, three-arm RCT will be conducted at two hospitals in Dhaka and Bogura, Bangladesh, between April 2025 and September 2026. A total of 480 pregnant women less than 20 weeksf gestation attending antenatal checkups will be recruited. Participants diagnosed with periodontal disease will be randomly assigned to either an intervention group or a positive control group. Participants without periodontal disease will be assigned to a negative control group. The intervention consists of SRP combined with continued use of CHG mouthwash throughout pregnancy. The primary outcome will be the rate of PTB. Secondary outcomes include the birth weight of the newborn baby, maternal periodontal status, and oral health-related quality of life (OHRQoL). Effectiveness will be assessed by comparing outcomes across the study groups.
Discussion The oral health intervention is expected to improve both birth outcomes and maternal oral health. Demonstrating its effectiveness in a real-world setting may support the integration of oral health care into broader maternal, neonatal, and child health strategies, particularly in resource-limited settings.
Trial registration UMIN Clinical Trials Registry. UMIN000057519. Registered on April 4, 2025. https://center6.umin.ac.jp/cgi-open-bin/ctr/ctr_view.cgi?recptno=R000065719. en-copyright= kn-copyright= en-aut-name=YasuokaJunko en-aut-sei=Yasuoka en-aut-mei=Junko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TakeshitaYohei en-aut-sei=Takeshita en-aut-mei=Yohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=OkadaShunsuke en-aut-sei=Okada en-aut-mei=Shunsuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=AlamProdhan MD Rubayet en-aut-sei=Alam en-aut-mei=Prodhan MD Rubayet kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=ShibanumaAkira en-aut-sei=Shibanuma en-aut-mei=Akira kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=NanishiKeiko en-aut-sei=Nanishi en-aut-mei=Keiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=SatoYoko en-aut-sei=Sato en-aut-mei=Yoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=HossainMd. Zahid en-aut-sei=Hossain en-aut-mei=Md. Zahid kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=AmanMusfiqa en-aut-sei=Aman en-aut-mei=Musfiqa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=KarimFahmida en-aut-sei=Karim en-aut-mei=Fahmida kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=RaziaSultana en-aut-sei=Razia en-aut-mei=Sultana kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=RezwanaRifat en-aut-sei=Rezwana en-aut-mei=Rifat kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=RahmanMd Mahmudur en-aut-sei=Rahman en-aut-mei=Md Mahmudur kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=Jahan KhanNusrat en-aut-sei=Jahan Khan en-aut-mei=Nusrat kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=NakashimaNaoki en-aut-sei=Nakashima en-aut-mei=Naoki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=IslamRafiqul en-aut-sei=Islam en-aut-mei=Rafiqul kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=KikuchiKimiyo en-aut-sei=Kikuchi en-aut-mei=Kimiyo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= affil-num=1 en-affil=Division of Global Health Sciences, Graduate School of Public Health, St. Lukefs International University kn-affil= affil-num=2 en-affil=Department of Oral and Maxillofacial Radiology, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Oral and Maxillofacial Radiology, Medical Development Field, Okayama University kn-affil= affil-num=4 en-affil=Department of Orthodontics, Dental Unit, TMSS Medical College & Rafatullah Community Hospital kn-affil= affil-num=5 en-affil=Department of Community and Global Health, Graduate School of Medicine, The University of Tokyo kn-affil= affil-num=6 en-affil=Office of International Academic Affairs, Graduate School of Medicine, The University of Tokyo kn-affil= affil-num=7 en-affil=Department of Health Sciences, Graduate School of Medical Sciences, Kyushu University kn-affil= affil-num=8 en-affil=Department of Periodontology and Oral Pathology, Holy Family Red Crescent Medical College Hospital kn-affil= affil-num=9 en-affil=Department of Periodontology, Dental Unit, TMSS Medical College & Rafatullah Community Hospital kn-affil= affil-num=10 en-affil=Department of Obstetrics & Gynecology, Holy Family Red Crescent Medical College Hospital kn-affil= affil-num=11 en-affil=Department of Obstetrics & Gynecology, TMSS Medical College & Rafatullah Community Hospital kn-affil= affil-num=12 en-affil=Department of Molecular and Cellular Biochemistry, Division of Oral Health, Brain Health and Total Health, Faculty of Dental Science, Kyushu University kn-affil= affil-num=13 en-affil=Global Communication Center, Grameen Communications kn-affil= affil-num=14 en-affil=Global Communication Center, Grameen Communications kn-affil= affil-num=15 en-affil=Department of Medical Informatics, Graduate School of Medical Sciences, Kyushu University kn-affil= affil-num=16 en-affil=Division of Healthcare Digital Transformation, Kyushu University kn-affil= affil-num=17 en-affil=Department of Research Promotion, Institute for Asian and Oceanian Studies, Kyushu University kn-affil= en-keyword=Preterm birth kn-keyword=Preterm birth en-keyword=Low birth weight kn-keyword=Low birth weight en-keyword=Oral health kn-keyword=Oral health en-keyword=Periodontal treatment kn-keyword=Periodontal treatment en-keyword=Chlorhexidine gluconate mouthwash kn-keyword=Chlorhexidine gluconate mouthwash en-keyword=Randomized controlled trial kn-keyword=Randomized controlled trial en-keyword=Bangladesh kn-keyword=Bangladesh END start-ver=1.4 cd-journal=joma no-vol=87 cd-vols= no-issue=5 article-no= start-page=429 end-page=433 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202605 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Cardio-ankle vascular index as a screening tool for coronary artery disease in patients with metabolic dysfunction-associated steatotic liver disease en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background: Metabolic dysfunction-associated steatotic liver disease (MASLD) is a common hepatic disorder that significantly increases cardiovascular risk. However, no established screening method exists for detecting subclinical coronary artery disease (CAD) in this high-risk population. The cardio-ankle vascular index (CAVI), a blood pressure?independent measure of arterial stiffness, may offer a non-invasive tool for early detection of coronary atherosclerosis.
Methods: We retrospectively analyzed 295 patients with MASLD who underwent both CAVI measurement and coronary computed tomography angiography at a single center. Significant CAD was defined as ?50?% luminal stenosis. Receiver operating characteristic (ROC) analysis was used to evaluate diagnostic performance. Multivariable logistic regression was performed to identify independent associations between elevated CAVI and CAD. The incremental predictive value of CAVI was assessed using net reclassification improvement (NRI).
Results: Of the 295 patients, 110 (37.3?%) had significant CAD. Patients with CAD had significantly higher CAVI values (9.0 vs. 8.7, p?=?0.007). The area under the ROC curve for CAVI predicting CAD was 0.614. A CAVI cut-off of 8.6 provided a sensitivity of 66.4?% and a specificity of 56.8?%. CAVI ?8.0 was independently associated with CAD (OR 3.44, 95?% CI: 1.06?11.2, p?=?0.040). Adding CAVI to a conventional risk model improved risk reclassification (NRI 0.4236, p? Conclusions: CAVI is independently associated with significant coronary stenosis in MASLD patients and may serve as a non-invasive screening tool to enhance cardiovascular risk stratification. Its moderate diagnostic accuracy suggests utility as a component of a multifactorial risk assessment strategy. en-copyright= kn-copyright= en-aut-name=NakashimaMitsutaka en-aut-sei=Nakashima en-aut-mei=Mitsutaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MiyoshiToru en-aut-sei=Miyoshi en-aut-mei=Toru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=UekiYuta en-aut-sei=Ueki en-aut-mei=Yuta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NishiharaTakahiro en-aut-sei=Nishihara en-aut-mei=Takahiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MikiTakashi en-aut-sei=Miki en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=HaraShohei en-aut-sei=Hara en-aut-mei=Shohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=IchikawaKeishi en-aut-sei=Ichikawa en-aut-mei=Keishi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=OsawaKazuhiro en-aut-sei=Osawa en-aut-mei=Kazuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=YuasaShinsuke en-aut-sei=Yuasa en-aut-mei=Shinsuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of General Internal Medicine 3, Kawasaki Medical School General Medicine Centre kn-affil= affil-num=9 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=Cardio-ankle vascular index kn-keyword=Cardio-ankle vascular index en-keyword=Steatotic liver kn-keyword=Steatotic liver en-keyword=Coronary artery disease kn-keyword=Coronary artery disease en-keyword=Arterial stiffness kn-keyword=Arterial stiffness en-keyword=Screening kn-keyword=Screening END start-ver=1.4 cd-journal=joma no-vol=19 cd-vols= no-issue=1 article-no= start-page=19 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20251210 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Plasma expression levels of microRNA-101 are downregulated in patients with Parkinsonfs disease en-subtitle= kn-subtitle= en-abstract= kn-abstract=Objective Parkinsonfs disease (PD) is a neurodegenerative disorder characterized by the loss of dopaminergic neurons. Endoplasmic reticulum (ER) stress contributes to PD pathogenesis, with the ER-associated degradation (ERAD) system playing a protective role. HRD1, an ER-resident ubiquitin ligase, and its stabilizer SEL1L are involved in ERAD and neuronal survival. This study investigated alterations in the plasma levels of microRNA-101 (miR-101), which targets SEL1L, in patients with PD, and its potential role as a biomarker.
Results Plasma miR-101 levels in patients with PD significantly decreased compared with those in healthy controls. Receiver operating characteristic curve analysis demonstrated that miR-101 could moderately discriminate patients with PD from healthy individuals (area under the curve?=?0.781, 95% confidence interval?=?0.547?1.00). The optimal cutoff, as determined by the Youden index, was 0.737 (expression ratio relative to that in the healthy control group), yielding a sensitivity of 50% and specificity of 100%. These results suggested that reduced plasma miR-101 expression may reflect the pathophysiological state of PD, and miR-101 has potential as minimally invasive biomarker for PD. en-copyright= kn-copyright= en-aut-name=OmuraTomohiro en-aut-sei=Omura en-aut-mei=Tomohiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=NishiguchiHiroki en-aut-sei=Nishiguchi en-aut-mei=Hiroki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KanedaHaruka en-aut-sei=Kaneda en-aut-mei=Haruka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KitahiroYumi en-aut-sei=Kitahiro en-aut-mei=Yumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=ItoharaKotaro en-aut-sei=Itohara en-aut-mei=Kotaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=YamamotoKazuhiro en-aut-sei=Yamamoto en-aut-mei=Kazuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=SakaneToshiyasu en-aut-sei=Sakane en-aut-mei=Toshiyasu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=YanoIkuko en-aut-sei=Yano en-aut-mei=Ikuko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= affil-num=1 en-affil=Department of Pharmacy, Kobe University Hospital kn-affil= affil-num=2 en-affil=Department of Pharmacy, Kobe University Hospital kn-affil= affil-num=3 en-affil=Department of Pharmacy, Kobe University Hospital kn-affil= affil-num=4 en-affil=Department of Pharmacy, Kobe University Hospital kn-affil= affil-num=5 en-affil=Department of Pharmacy, Kobe University Hospital kn-affil= affil-num=6 en-affil=Department of Integrated Clinical and Basic Pharmaceutical Sciences, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Department of Pharmaceutical Technology, Kobe Pharmaceutical University kn-affil= affil-num=8 en-affil=Department of Pharmacy, Kobe University Hospital kn-affil= en-keyword=Parkinsonfs disease kn-keyword=Parkinsonfs disease en-keyword=microRNA kn-keyword=microRNA en-keyword=Endoplasmic reticulum stress kn-keyword=Endoplasmic reticulum stress en-keyword=HRD1 kn-keyword=HRD1 en-keyword=SEL1L kn-keyword=SEL1L END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page= end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260707 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Sex differences and contest experience shape walking patterns in the broad-horned flour beetle en-subtitle= kn-subtitle= en-abstract= kn-abstract=Animal movement patterns vary widely across species, and sex differences are often expected because males typically need to encounter multiple females and acquire resources. In species where males engage in male?male combat using exaggerated weapons, variation in weapon size and contest outcomes is known to influence male reproductive strategies, and may therefore also affect movement behavior. However, sex-specific and male-specific differences in locomotor behavior, particularly in relation to weapon size and social interactions, remain poorly understood. Here, we investigated walking trajectories in the broad-horned flour beetle (Gnatocerus cornutus) to test for (1) sex differences, (2) associations between male weapon size and movement behavior, and (3) the effects of male?male combat. Males exhibited more tortuous and localized movement, whereas females showed straighter and more spatially extensive trajectories. Following contests, all males showed a reduction in activity regardless of contest outcome; however, winners and losers exhibited divergent changes in movement patterns, with winners showing straighter and more spatially extensive trajectories and losers showing more tortuous and localized trajectories. In contrast, body-size-corrected weapon size was not associated with any aspect of walking behavior. These results indicate that locomotor behavior in G. cornutus varies with sex and contest experience, and that variation in walking behavior is more closely associated with social experience than with weapon morphology. en-copyright= kn-copyright= en-aut-name=MatsumuraKentarou en-aut-sei=Matsumura en-aut-mei=Kentarou kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HashiokaSora en-aut-sei=Hashioka en-aut-mei=Sora kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=NagayaNaohisa en-aut-sei=Nagaya en-aut-mei=Naohisa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=FujisawaRyusuke en-aut-sei=Fujisawa en-aut-mei=Ryusuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MiyatakeTakahisa en-aut-sei=Miyatake en-aut-mei=Takahisa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= affil-num=1 en-affil=Graduate School of Arts and Sciences, The University of Tokyo kn-affil= affil-num=2 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=3 en-affil=Faculty of Information Science and Engineering, Kyoto Sangyo University kn-affil= affil-num=4 en-affil=Faculty of Environmental Engineering, University of Kitakyushu, kn-affil= affil-num=5 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= en-keyword=Turning angle kn-keyword=Turning angle en-keyword= Acceleration kn-keyword= Acceleration en-keyword=Male-male combat kn-keyword=Male-male combat en-keyword=Weapon kn-keyword=Weapon en-keyword=ANTAM kn-keyword=ANTAM END start-ver=1.4 cd-journal=joma no-vol=53 cd-vols= no-issue=14 article-no= start-page=e2026GL121981 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260710 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Calcium Solubility of Bridgmanite in Subducted Basalt in Earth's Lower Mantle en-subtitle= kn-subtitle= en-abstract= kn-abstract=The calcium solubility in bridgmanite and the resulting abundance of davemaoite under lower-mantle pressure-temperature conditions have been under debate following a recent report of extensive calcium dissolution in bridgmanite. We experimentally investigated the calcium solubility in bridgmanite in a basaltic composition at pressures up to 125 GPa and temperatures up to 3,520 K. Our experimental data are modeled thermodynamically along the bridgmanite-davemaoite solvus to quantify the calcium solubility in bridgmanite and the davemaoite proportion in basaltic and pyrolitic assemblages along lower mantle geotherms. Our results indicate that bridgmanite hosts only 0.001?0.03 Ca cations per formula unit in the lower mantle, while davemaoite remains as an abundant mineral, accounting for 8 and 25 vol% of pyrolitic and basaltic mineralogical models, respectively, along representative lower-mantle geotherms. Our thermoelastic modeling further indicates that the effect of calcium dissolution on the density and bulk sound velocity of lower-mantle assemblages is negligible. en-copyright= kn-copyright= en-aut-name=ZhangChengwei en-aut-sei=Zhang en-aut-mei=Chengwei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=YoshinoTakashi en-aut-sei=Yoshino en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=El GhazaouiElias en-aut-sei=El Ghazaoui en-aut-mei=Elias kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=CharitonStella en-aut-sei=Chariton en-aut-mei=Stella kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=PrakapenkaVitali B. en-aut-sei=Prakapenka en-aut-mei=Vitali B. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=LiLuo en-aut-sei=Li en-aut-mei=Luo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=ZhangYanyao en-aut-sei=Zhang en-aut-mei=Yanyao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=LinJung]Fu en-aut-sei=Lin en-aut-mei=Jung]Fu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= affil-num=1 en-affil=Department of Earth and Planetary Sciences, Jackson School of Geosciences The University of Texas at Austin kn-affil= affil-num=2 en-affil=Institute for Planetary Materials, Okayama University kn-affil= affil-num=3 en-affil=School of Earth and Environmental Sciences, Seoul National University kn-affil= affil-num=4 en-affil=Center for Advanced Radiation Sources, The University of Chicago kn-affil= affil-num=5 en-affil=Center for Advanced Radiation Sources, The University of Chicago kn-affil= affil-num=6 en-affil=Department of Earth and Planetary Sciences, Jackson School of Geosciences The University of Texas at Austin kn-affil= affil-num=7 en-affil=Earth and Planetary Sciences, Stanford University kn-affil= affil-num=8 en-affil=Department of Earth and Planetary Sciences, Jackson School of Geosciences The University of Texas at Austin kn-affil= END start-ver=1.4 cd-journal=joma no-vol=58 cd-vols= no-issue=1 article-no= start-page=47 end-page=59 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260722 dt-online= en-article= kn-article= en-subject= kn-subject= en-title=Die Agrarstruktur in Sachsen im 19. Jahrhunderti6j kn-title=19¢‹IƒUƒNƒZƒ“‚Ì“y’n§“xi‚Uj en-subtitle= kn-subtitle= en-abstract= kn-abstract= en-copyright= kn-copyright= en-aut-name=MatsuoNobushige en-aut-sei=Matsuo en-aut-mei=Nobushige kn-aut-name=¼”ö“W¬ kn-aut-sei=¼”ö kn-aut-mei=“W¬ aut-affil-num=1 ORCID= affil-num=1 en-affil= kn-affil=‰ªŽR‘åŠw–¼—_‹³Žö END start-ver=1.4 cd-journal=joma no-vol=58 cd-vols= no-issue=1 article-no= start-page=33 end-page=45 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260722 dt-online= en-article= kn-article= en-subject= kn-subject= en-title=Historical Shifts in the Scope of the Biological Concept in IAS 41 and AASB 1037 kn-title=IAS41 ‚Æ AASB1037 ‚É‚¨‚¯‚é¶•¨‚͈̔ÍÝ’è‚ÉŠÖ‚·‚é—ðŽj“I•Ï‘J en-subtitle= kn-subtitle= en-abstract= kn-abstract= en-copyright= kn-copyright= en-aut-name=YoshidaKohei en-aut-sei=Yoshida en-aut-mei=Kohei kn-aut-name=‹g“c_•½ kn-aut-sei=‹g“c kn-aut-mei=_•½ aut-affil-num=1 ORCID= affil-num=1 en-affil= kn-affil=“Œ‹ž‘åŠw‘åŠw‰@‘‡•¶‰»Œ¤‹†‰È”ŽŽm‰Û’ö END start-ver=1.4 cd-journal=joma no-vol=58 cd-vols= no-issue=1 article-no= start-page=21 end-page=32 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260722 dt-online= en-article= kn-article= en-subject= kn-subject= en-title=The Current State and Challenges of the Academic Economics Job Market in China: An Analysis of Incentive Structures Based on Crowdsourced Data kn-title=’†‘‚É‚¨‚¯‚éŒoÏŠwƒAƒJƒfƒ~ƒbƒNEƒWƒ‡ƒuƒ}[ƒPƒbƒg‚ÌŒ»ó‚Ɖۑè \ƒNƒ‰ƒEƒhƒ\[ƒVƒ“ƒOEƒf[ƒ^‚ÉŠî‚­ƒCƒ“ƒZƒ“ƒeƒBƒu\‘¢‚Ì•ªÍ\ en-subtitle= kn-subtitle= en-abstract= kn-abstract= en-copyright= kn-copyright= en-aut-name=WangRuiting en-aut-sei=Wang en-aut-mei=Ruiting kn-aut-name=‰¤áÍè» kn-aut-sei=‰¤ kn-aut-mei=áÍè» aut-affil-num=1 ORCID= affil-num=1 en-affil= kn-affil=‰ªŽR‘åŠwŒoÏŠw•” END start-ver=1.4 cd-journal=joma no-vol=58 cd-vols= no-issue=1 article-no= start-page=1 end-page=19 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260722 dt-online= en-article= kn-article= en-subject= kn-subject= en-title=Visualizing University Library Structures through a Library Schema: A Conceptual Framework for Knowledge Creation in Academic Libraries kn-title=ƒ‰ƒCƒuƒ‰ƒŠEƒXƒL[ƒ}‚É‚æ‚é‘åŠw}‘ŠÙ\‘¢‚̉Ž‹‰»‚Æ’mޝ‘n‘¢ \‹¤—L”F’m‚ÌŒ`¬‚ÉŠî‚­Œ¤‹†˜g‘g‚Ý‚Ì\’z\ en-subtitle= kn-subtitle= en-abstract= kn-abstract=@This study proposes a theoretical framework for understanding the relationship between the structural representation of university libraries and knowledge creation. In recent years, university libraries have experienced significant transformations due to the digitization of scholarly information, the expansion of research data management, and the increasing importance of learning support services. As their functions diversify, it has become increasingly difficult to comprehensively understand the structure and roles of university libraries.
@To address this issue, this study focuses on the concept of a library schema, which represents the structural relationships among the elements that constitute a library, including people, resources, services, and activities. While previous research has discussed methods for organizing library components, little attention has been paid to how structural understanding of libraries contributes to knowledge creation and service value.
@Drawing on schema theory, shared cognition in organizational studies, and the knowledge creation theory of Nonaka and Takeuchi, this study constructs a conceptual framework linking library schema visualization, shared cognition, interaction, knowledge creation processes, and library service value. The framework proposes that visualization of library structure through a library schema promotes shared cognition among librarians and users, which in turn facilitates interactions that activate knowledge creation processes. These processes ultimately contribute to the creation of library service value that supports learning and research activities.
@Furthermore, the framework introduces two moderating factors: schema representation methods and operational constraints of library management. Based on this framework, six research propositions are presented.
@By integrating concepts from library and information science with knowledge management theory, this study contributes to the theoretical understanding of university libraries as knowledge infrastructures and provides a foundation for future empirical research on knowledge creation in library environments. en-copyright= kn-copyright= en-aut-name=KobayashiKensuke en-aut-sei=Kobayashi en-aut-mei=Kensuke kn-aut-name=¬—ÑŒ’•ã kn-aut-sei=¬—Ñ kn-aut-mei=Œ’•ã aut-affil-num=1 ORCID= en-aut-name=MiyazakiSatoru en-aut-sei=Miyazaki en-aut-mei=Satoru kn-aut-name=‹{èŒå kn-aut-sei=‹{è kn-aut-mei=Œå aut-affil-num=2 ORCID= affil-num=1 en-affil= kn-affil=‰ªŽR‘åŠwŒ¤‹†EƒCƒmƒx[ƒVƒ‡ƒ“‹¤‘n‹@\ affil-num=2 en-affil= kn-affil=‰ªŽR‘åŠwŠwpŒ¤‹†‰@ŽÐ‰ï•¶‰»‰ÈŠwŠwˆæ END start-ver=1.4 cd-journal=joma no-vol=65 cd-vols= no-issue=8 article-no= start-page=1172 end-page=1177 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260415 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Autopsy Case of a Disseminated Cytomegalovirus Infection with a Cutaneous Ulcer Mimicking Rheumatoid Vasculitis en-subtitle= kn-subtitle= en-abstract= kn-abstract=A 60-year-old woman with rheumatoid arthritis and an impaired consciousness was referred to our hospital. Prior to transfer, the patient underwent intensified immunosuppressive therapy under a diagnosis of rheumatoid vasculitis that had developed in her buttocks. Upon hospitalization, she developed severe multiorgan failure and hemophagocytic syndrome. Four days after admission, both blood cytomegalovirus (CMV) antigenemia and the DNA load were markedly elevated. Despite intensive care, the patient died. Later, a histopathological examination revealed that the cutaneous manifestation represented CMV disease, not rheumatoid vasculitis, as was initially suspected. Failure to identify CMV as the underlying cause may result in the inappropriate administration of immunosuppressive therapy, potentially worsening the patient's condition. en-copyright= kn-copyright= en-aut-name=OguniKohei en-aut-sei=Oguni en-aut-mei=Kohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HagiyaHideharu en-aut-sei=Hagiya en-aut-mei=Hideharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YamamotoYukichika en-aut-sei=Yamamoto en-aut-mei=Yukichika kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=IshidaTomoharu en-aut-sei=Ishida en-aut-mei=Tomoharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=OhkiTomoka en-aut-sei=Ohki en-aut-mei=Tomoka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=OtsukaFumio en-aut-sei=Otsuka en-aut-mei=Fumio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= affil-num=3 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of Pathology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=autopsy kn-keyword=autopsy en-keyword=cytomegalovirus kn-keyword=cytomegalovirus en-keyword=cutaneous cytomegalovirus kn-keyword=cutaneous cytomegalovirus en-keyword=virus-associated hemophagocytic syndrome kn-keyword=virus-associated hemophagocytic syndrome en-keyword=rheumatoid vasculitis kn-keyword=rheumatoid vasculitis END start-ver=1.4 cd-journal=joma no-vol=65 cd-vols= no-issue=7 article-no= start-page=1069 end-page=1073 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260401 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Nasal Mucosal Manifestation of Beh?et's Disease en-subtitle= kn-subtitle= en-abstract= kn-abstract=Beh?et's disease (BD) is a multisystem inflammatory condition that rarely affects the nasal mucosa. We report the case of a 25-year-old man presenting with prolonged fever, bilateral rhinalgia, and nasal obstruction, who was subsequently diagnosed with nasal ulcers associated with BD. These ulcers resolved along with the systemic symptoms following treatment with colchicine, apremilast, and prednisolone. Although there is no specific treatment strategy for nasal mucosal lesions in BD, standard systemic therapies may be effective. This case highlights nasal mucosal involvement as a rare but important manifestation of BD, emphasizing the importance of thorough evaluation and consideration of nasal symptoms for the diagnosis and treatment. en-copyright= kn-copyright= en-aut-name=AkiyamaHiroshi en-aut-sei=Akiyama en-aut-mei=Hiroshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=OtsukaYuki en-aut-sei=Otsuka en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MasudaYohei en-aut-sei=Masuda en-aut-mei=Yohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=SoejimaYoshiaki en-aut-sei=Soejima en-aut-mei=Yoshiaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=NakamotoKenta en-aut-sei=Nakamoto en-aut-mei=Kenta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KatayamaYu en-aut-sei=Katayama en-aut-mei=Yu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=SatoAki en-aut-sei=Sato en-aut-mei=Aki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=HagiyaHideharu en-aut-sei=Hagiya en-aut-mei=Hideharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=OtsukaFumio en-aut-sei=Otsuka en-aut-mei=Fumio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Otolaryngology - Head and Neck Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Science kn-affil= affil-num=8 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= affil-num=9 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=Beh?et's disease kn-keyword=Beh?et's disease en-keyword=nasal mucosal manifestation kn-keyword=nasal mucosal manifestation en-keyword=apremilast kn-keyword=apremilast en-keyword=colchicine kn-keyword=colchicine en-keyword=prednisolone kn-keyword=prednisolone END start-ver=1.4 cd-journal=joma no-vol=32 cd-vols= no-issue=4 article-no= start-page=454 end-page=465 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202604 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Spatial Transcriptomics Analysis of Macrophage-to-Myofibroblast Transition in Bronchiolitis Obliterans Following Hematopoietic Stem Cell Transplantation en-subtitle= kn-subtitle= en-abstract= kn-abstract=Bronchiolitis obliterans (BO) is a severe, fibrotic manifestation of chronic graft-versus-host disease (GVHD) after hematopoietic stem cell transplantation (HSCT). Macrophage-derived TGF-ƒÀ is linked to GVHD-related fibrosis; however, its role in BO remains unclear. Given emerging evidence of macrophage-to-myofibroblast transition (MMT) in fibrosis, this study aimed to investigate whether MMT contributes to BO development. We analyzed lung samples from 3 HSCT recipients with BO who underwent lung transplantation, with tissues from 2 patients with lung cancer as controls. Immunofluorescent staining for CD68, CD206, and ƒ¿-SMA was used to identify cells undergoing MMT. Spatial transcriptomics was performed to profile gene expression in foamy macrophages across anatomical regions and histological stages, compared to control peribronchiolar regions. Immunostaining showed strong co-expression of CD68, CD206, and ƒ¿-SMA in foamy macrophages within and surrounding bronchioles in BO samples, with minimal expression in controls, suggesting MMT involvement. In BO, spatial transcriptomics revealed upregulation of macrophage- and TGF-ƒÀ signaling genes, with distinct stage- and region-specific gene expression patterns. Unsupervised clustering revealed a shift from inflammation to fibrosis. These findings indicate that MMT contributes to fibrosis in BO. Gene expression shifts from inflammation to fibrosis as the disease advances, underscoring the importance of early intervention. en-copyright= kn-copyright= en-aut-name=YamamotoAkira en-aut-sei=Yamamoto en-aut-mei=Akira kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FujiiNobuharu en-aut-sei=Fujii en-aut-mei=Nobuharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=SeikeKeisuke en-aut-sei=Seike en-aut-mei=Keisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=SugimotoSeiichiro en-aut-sei=Sugimoto en-aut-mei=Seiichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=NaoiYusuke en-aut-sei=Naoi en-aut-mei=Yusuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=NaganoTomohiro en-aut-sei=Nagano en-aut-mei=Tomohiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KubotaSaya en-aut-sei=Kubota en-aut-mei=Saya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=KambaraYui en-aut-sei=Kambara en-aut-mei=Yui kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=FujiwaraKanako en-aut-sei=Fujiwara en-aut-mei=Kanako kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=TeraoToshiki en-aut-sei=Terao en-aut-mei=Toshiki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=OyamaTadashi en-aut-sei=Oyama en-aut-mei=Tadashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=KunihiroMari en-aut-sei=Kunihiro en-aut-mei=Mari kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=KobayashiHiroki en-aut-sei=Kobayashi en-aut-mei=Hiroki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=KondoTakumi en-aut-sei=Kondo en-aut-mei=Takumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=FujiwaraHideaki en-aut-sei=Fujiwara en-aut-mei=Hideaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=AsadaNoboru en-aut-sei=Asada en-aut-mei=Noboru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=EnnishiDaisuke en-aut-sei=Ennishi en-aut-mei=Daisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=FujiiKeiko en-aut-sei=Fujii en-aut-mei=Keiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= en-aut-name=ToyookaShinichi en-aut-sei=Toyooka en-aut-mei=Shinichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=19 ORCID= en-aut-name=MaedaYoshinobu en-aut-sei=Maeda en-aut-mei=Yoshinobu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=20 ORCID= affil-num=1 en-affil=Department of Hematology and Oncology, Okayama University Hospital kn-affil= affil-num=2 en-affil=Department of Hematology and Oncology, Okayama University Hospital kn-affil= affil-num=3 en-affil=Department of Hematology and Oncology, Okayama University Hospital kn-affil= affil-num=4 en-affil=Department of General Thoracic Surgery and Organ Transplant Center, Okayama University Hospital kn-affil= affil-num=5 en-affil=Center for Comprehensive Genomic Medicine, Okayama University Hospital kn-affil= affil-num=6 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Dan L Duncan Comprehensive Cancer Center, Baylor College of Medicine kn-affil= affil-num=9 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=10 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=11 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=12 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=13 en-affil=Department of Hematology and Oncology, Okayama University Hospital kn-affil= affil-num=14 en-affil=Department of Hematology and Oncology, Okayama University Hospital kn-affil= affil-num=15 en-affil=Department of Hematology and Oncology, Okayama University Hospital kn-affil= affil-num=16 en-affil=Department of Hematology and Oncology, Okayama University Hospital kn-affil= affil-num=17 en-affil=Department of Hematology and Oncology, Okayama University Hospital kn-affil= affil-num=18 en-affil=Department of Hematology and Oncology, Okayama University Hospital kn-affil= affil-num=19 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Faculty of Medicine, Dentistry and Pharmaceutical Science, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=20 en-affil=Department of Hematology and Oncology, Okayama University Hospital kn-affil= en-keyword=Bronchiolitis obliterans kn-keyword=Bronchiolitis obliterans en-keyword=GeoMx kn-keyword=GeoMx en-keyword=Graft versus host disease kn-keyword=Graft versus host disease en-keyword=Hematopoietic stem cell transplantation kn-keyword=Hematopoietic stem cell transplantation en-keyword=Macrophage kn-keyword=Macrophage en-keyword=Macrophage to myofibroblast transition kn-keyword=Macrophage to myofibroblast transition en-keyword=Myofibroblast kn-keyword=Myofibroblast en-keyword=Spatial transcriptomics kn-keyword=Spatial transcriptomics END start-ver=1.4 cd-journal=joma no-vol=21 cd-vols= no-issue=1 article-no= start-page=128 end-page=135 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260201 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Developing and Implementing a Disaster Prevention Game to Enhance Local Understanding en-subtitle= kn-subtitle= en-abstract= kn-abstract=This study developed and implemented a local disaster prevention sugoroku-style game to address challenges in preserving and transmitting regional knowledge in areas with high population mobility. Many Japanese communities face both natural and social vulnerabilities, and effective disaster education requires linking hazard knowledge with local characteristics. Conducted at Sonan Junior High School in Okayama, the project combined lectures, workshops, and a community engagement event. Students learned about regional topography, land use, and disaster history and used this knowledge to design quizzes, rules, and disaster scenarios for the game. The final sugoroku set included a map-based board, thematic quiz areas, and preparedness item cards, enabling players to predict damage and consider appropriate actions. After creating the game, students shifted from identifying familiar landmarks to describing concrete disaster impacts such as liquefaction or infrastructure collapse. Interaction with local residents further enriched learning through shared experiences. The model proved feasible in terms of time and cost, and its structure is easily adaptable to other regions by incorporating local information. The findings suggest that this participatory, place-based approach enhances imagination, self-efficacy, and intergenerational knowledge transfer, contributing to community-wide disaster preparedness. Future studies will examine long-term educational impacts and broader regional applications. en-copyright= kn-copyright= en-aut-name=ShirokaneMiri en-aut-sei=Shirokane en-aut-mei=Miri kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=YamadaAiri en-aut-sei=Yamada en-aut-mei=Airi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MisawaRyo en-aut-sei=Misawa en-aut-mei=Ryo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=MattaNobuhisa en-aut-sei=Matta en-aut-mei=Nobuhisa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= affil-num=1 en-affil=Okayama University kn-affil= affil-num=2 en-affil=Okayama University kn-affil= affil-num=3 en-affil=Okayama University kn-affil= affil-num=4 en-affil=Okayama University kn-affil= en-keyword=disaster education kn-keyword=disaster education en-keyword=local disaster knowledge kn-keyword=local disaster knowledge en-keyword=disaster literacy kn-keyword=disaster literacy en-keyword=damage estimation abilities kn-keyword=damage estimation abilities en-keyword=community resilience kn-keyword=community resilience END start-ver=1.4 cd-journal=joma no-vol=66 cd-vols= no-issue=3 article-no= start-page=107 end-page=115 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260315 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Full-endoscopic Laminotomy Is Effective for Lumbar Spinal Stenosis with Low-grade Spondylolisthesis: A Comparative Cohort Study en-subtitle= kn-subtitle= en-abstract= kn-abstract=The optimal management of lumbar spinal canal stenosis with spondylolisthesremains controversial, particularly when choosing between decompression alone or decompression with fusion. Current evidence is based on conventional open or endoscopy-assisted surgeries, with limited data on full-endoscopic decompression. This study aimed to assess the impact of spondylolisthesis on outcomes after full-endoscopic laminotomy by evaluating back pain-related disability scores in patients with lumbar spinal canal stenosis, with and without spondylolisthesis. A retrospective analysis was conducted at Iwai Orthopaedic Hospital, Japan. Patients with lumbar spinal canal stenosis who underwent full-endoscopic laminotomy between January 2021 and December 2022 were included and categorized into those without spondylolisthesis and those with spondylolisthesis. Postoperative Oswestry Disability Index scores at 2 years were compared in the groups using multivariable linear regression, adjusting for confounding factors. Exploratory analyses were also conducted to identify factors affecting the Oswestry Disability Index in the patients with lumbar spinal canal stenosis with spondylolisthesis group. Statistical significance was set at p < 0.05. The study included 80 patients, with 40 in each group. Both groups showed improved postoperative Oswestry Disability Index. There was no significant association between spondylolisthesis and postoperative Oswestry Disability Index. However, cauda equina redundancy negatively affected postoperative Oswestry Disability Index improvement in the patients with lumbar spinal canal stenosis with spondylolisthesis group. Full-endoscopic laminotomy is an effective surgical option for lumbar spinal canal stenosis, leading to significant alleviation of disability and improvements in quality of life, regardless of spondylolisthesis. Full-endoscopic laminotomy may offer similar functional improvements regardless of the presence of low-grade spondylolisthesis, supporting its role as a less invasive alternative to fusion. en-copyright= kn-copyright= en-aut-name=KINKyohei en-aut-sei=KIN en-aut-mei=Kyohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TOMINAGARyoji en-aut-sei=TOMINAGA en-aut-mei=Ryoji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=TAKEBAYASHIKento en-aut-sei=TAKEBAYASHI en-aut-mei=Kento kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=IWAIHiroki en-aut-sei=IWAI en-aut-mei=Hiroki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=INANAMIHirohiko en-aut-sei=INANAMI en-aut-mei=Hirohiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KOGAHisashi en-aut-sei=KOGA en-aut-mei=Hisashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Department of Neurological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Orthopaedics, Iwai Orthopaedic Medical Hospital kn-affil= affil-num=3 en-affil=Department of Orthopaedics, Iwai Orthopaedic Medical Hospital kn-affil= affil-num=4 en-affil=Department of Neurological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of Orthopaedics, Iwai Orthopaedic Medical Hospital kn-affil= affil-num=6 en-affil=Department of Orthopaedics, Iwai Orthopaedic Medical Hospital kn-affil= en-keyword=full-endoscopic spine surgery kn-keyword=full-endoscopic spine surgery en-keyword=spondylolisthesis kn-keyword=spondylolisthesis en-keyword=full-endoscopic laminotomy kn-keyword=full-endoscopic laminotomy en-keyword=minimally invasive kn-keyword=minimally invasive en-keyword=lumbar spinal canal stenosis kn-keyword=lumbar spinal canal stenosis END start-ver=1.4 cd-journal=joma no-vol=23 cd-vols= no-issue=5 article-no= start-page=823 end-page=827 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260215 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Global trends in sarcoidosis-associated mortality, 2001?2023: insights from the World Health Organization mortality database en-subtitle= kn-subtitle= en-abstract= kn-abstract= en-copyright= kn-copyright= en-aut-name=HaradaKo en-aut-sei=Harada en-aut-mei=Ko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FujiiMariko en-aut-sei=Fujii en-aut-mei=Mariko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=SakoNanami en-aut-sei=Sako en-aut-mei=Nanami kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=VuQuynh Thi en-aut-sei=Vu en-aut-mei=Quynh Thi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=NishimuraYoshito en-aut-sei=Nishimura en-aut-mei=Yoshito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=BelangoyKeith Pardillada en-aut-sei=Belangoy en-aut-mei=Keith Pardillada kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=OuddoudHanane en-aut-sei=Ouddoud en-aut-mei=Hanane kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=TakedaTatsuaki en-aut-sei=Takeda en-aut-mei=Tatsuaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=ZamamiYoshito en-aut-sei=Zamami en-aut-mei=Yoshito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=HagiyaHideharu en-aut-sei=Hagiya en-aut-mei=Hideharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=KoyamaToshihiro en-aut-sei=Koyama en-aut-mei=Toshihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= affil-num=1 en-affil=Brookdale Department of Geriatrics and Palliative Medicine, Icahn School of Medicine at Mount Sinai kn-affil= affil-num=2 en-affil=Department of Health Data Science, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Health Data Science, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Department of Health Data Science, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Division of Hematology and Oncology, Mayo Clinic kn-affil= affil-num=6 en-affil=Department of Health Data Science, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Department of Health Data Science, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=8 en-affil=Department of Education and Research Centre for Clinical Pharmacy, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=9 en-affil=Department of Pharmacy, Okayama University Hospital kn-affil= affil-num=10 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= affil-num=11 en-affil=Department of Health Data Science, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= END start-ver=1.4 cd-journal=joma no-vol=114 cd-vols= no-issue=3 article-no= start-page=486 end-page=489 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260304 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=A Case of Heavy Paragonimiasis Involving a Multi-Organ Presentation with Hypereosinophilia and Hepatic Migration en-subtitle= kn-subtitle= en-abstract= kn-abstract=Paragonimiasis is a parasitic disease caused by the genus Paragonimus, typically transmitted through the ingestion of raw or undercooked freshwater crabs. Although pulmonary involvement is typical, ectopic migration to subcutaneous or hepatic sites is rare and poses diagnostic challenges. A case of paragonimiasis in a 29-year-old Cambodian woman residing in Japan who presented with painless subcutaneous nodules on the chest and abdomen is reported in the current study. She had consumed raw crab 4 months before presentation. Laboratory findings revealed marked eosinophilia (21,000/?L) and elevated immunoglobulin E (5,049 IU/mL). Computed tomography scans revealed pleural effusion, club-shaped pulmonary consolidation, funicular hypodense lesions in the liver, and subcutaneous lesions. Stool and sputum test results were negative for parasite eggs; however, a microplate ELISA indicated a Paragonimus westermani infection. The patient responded well to 3 consecutive days of praziquantel (75 mg/kg/day) and was discharged a week later. This case highlights the importance of considering paragonimiasis in patients with unexplained subcutaneous nodules and eosinophilia, especially when supported by dietary risk factors. en-copyright= kn-copyright= en-aut-name=AkazawaHidemasa en-aut-sei=Akazawa en-aut-mei=Hidemasa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HagiyaHideharu en-aut-sei=Hagiya en-aut-mei=Hideharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=FukushimaShinnosuke en-aut-sei=Fukushima en-aut-mei=Shinnosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NakamotoKenta en-aut-sei=Nakamoto en-aut-mei=Kenta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=OguniKohei en-aut-sei=Oguni en-aut-mei=Kohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=ManabeYohei en-aut-sei=Manabe en-aut-mei=Yohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=Kokubo-TanakaMio en-aut-sei=Kokubo-Tanaka en-aut-mei=Mio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MaruyamaHaruhiko en-aut-sei=Maruyama en-aut-mei=Haruhiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=OtsukaFumio en-aut-sei=Otsuka en-aut-mei=Fumio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= affil-num=2 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= affil-num=3 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= affil-num=4 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= affil-num=5 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= affil-num=6 en-affil=Department of Pharmacy, Okayama University Hospital kn-affil= affil-num=7 en-affil=Division of Parasitology, Department of Infectious Diseases, Faculty of Medicine, University of Miyazaki kn-affil= affil-num=8 en-affil=Division of Parasitology, Department of Infectious Diseases, Faculty of Medicine, University of Miyazaki kn-affil= affil-num=9 en-affil=Department of General Medicine, Okayama University Hospital kn-affil= END start-ver=1.4 cd-journal=joma no-vol=65 cd-vols= no-issue=11 article-no= start-page=1520 end-page=1523 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Endotracheal and Endobronchial Metastases in Epidermal Growth Factor Receptor Exon 19 Deletion Lung Adenocarcinoma: A Case Successfully Managed with Bronchoscopic Therapy and Sequential Epidermal Growth Factor Receptor Tyrosine Kinase Inhibitors en-subtitle= kn-subtitle= en-abstract= kn-abstract=Endotracheal and endobronchial metastases from peripheral lung adenocarcinoma are rare, and optimal clinical management remains unclear. We herein report a 60-year-old woman with epidermal growth factor receptor (EGFR) exon 19 deletion-positive early-stage lung adenocarcinoma who underwent surgical resection followed by osimertinib treatment for recurrence. She later developed oligoprogressive disease with airway metastases. Bronchoscopic tumor removal was performed, and next-generation sequencing of the resected specimen revealed an acquired EGFR C797S mutation, along with exon 19 deletion. Gefitinib treatment was initiated, which led to a partial response. This case underscores the utility of repeated molecular profiling and local intervention in managing acquired resistance in EGFR-mutant non-small-cell lung cancer. en-copyright= kn-copyright= en-aut-name=FujiwaraMiho en-aut-sei=Fujiwara en-aut-mei=Miho kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=BabaTakahiro en-aut-sei=Baba en-aut-mei=Takahiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YamadaKotaro en-aut-sei=Yamada en-aut-mei=Kotaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NakamuraEri en-aut-sei=Nakamura en-aut-mei=Eri kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TakeguchiTetsuya en-aut-sei=Takeguchi en-aut-mei=Tetsuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=TakigawaYuki en-aut-sei=Takigawa en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=MoritaAyako en-aut-sei=Morita en-aut-mei=Ayako kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=HaraNaofumi en-aut-sei=Hara en-aut-mei=Naofumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=WatanabeHiromi en-aut-sei=Watanabe en-aut-mei=Hiromi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=NinomiyaKiichiro en-aut-sei=Ninomiya en-aut-mei=Kiichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=RaiKammei en-aut-sei=Rai en-aut-mei=Kammei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=IchiharaEiki en-aut-sei=Ichihara en-aut-mei=Eiki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=OhashiKadoaki en-aut-sei=Ohashi en-aut-mei=Kadoaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=HottaKatsuyuki en-aut-sei=Hotta en-aut-mei=Katsuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=SatoKen en-aut-sei=Sato en-aut-mei=Ken kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=MaedaYoshinobu en-aut-sei=Maeda en-aut-mei=Yoshinobu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=TogashiYosuke en-aut-sei=Togashi en-aut-mei=Yosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=MakimotoGo en-aut-sei=Makimoto en-aut-mei=Go kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= affil-num=1 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=2 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=3 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=4 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=5 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=6 en-affil=Department of Respiratory Medicine, NHO Okayama Medical Center kn-affil= affil-num=7 en-affil=Center for Clinical Oncology, Okayama University Hospital kn-affil= affil-num=8 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=9 en-affil=Department of Respiratory Medicine, NHO Okayama Medical Center kn-affil= affil-num=10 en-affil=Center for Comprehensive Genomic Medicine, Okayama University Hospital kn-affil= affil-num=11 en-affil=Center for Innovative Clinical Medicine, Okayama University Hospital kn-affil= affil-num=12 en-affil=Center for Clinical Oncology, Okayama University Hospital kn-affil= affil-num=13 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=14 en-affil=Center for Innovative Clinical Medicine, Okayama University Hospital kn-affil= affil-num=15 en-affil=Department of Respiratory Medicine, NHO Okayama Medical Center kn-affil= affil-num=16 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Dentistry and Pharmaceutical Sciences, Okayama University Graduate School of Medicine kn-affil= affil-num=17 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=18 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= en-keyword=EGFR C797S kn-keyword=EGFR C797S en-keyword=EGFR exon 19 deletion kn-keyword=EGFR exon 19 deletion en-keyword=endotracheal metastasis kn-keyword=endotracheal metastasis en-keyword=lung adenocarcinoma kn-keyword=lung adenocarcinoma en-keyword=TBLC kn-keyword=TBLC END start-ver=1.4 cd-journal=joma no-vol=58 cd-vols= no-issue= article-no= start-page=105422 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202604 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Pathological features of residual head and neck cancer after near-infrared photoimmunotherapy: implications of an unfavorable tumor immune microenvironment en-subtitle= kn-subtitle= en-abstract= kn-abstract=Purpose: Near-infrared photoimmunotherapy has been approved in Japan for unresectable locally advanced or recurrent head and neck cancer. While this therapy theoretically induces selective necrosis of epidermal growth factor receptor-expressing tumor cells following administration of cetuximab sarotalocan sodium and irradiation with 690-nm light, residual disease is not uncommon in clinical practice. The mechanisms underlying such persistence remain poorly understood.
Methods: We examined two patients with head and neck squamous cell carcinoma who underwent salvage resection due to residual disease after four cycles of near-infrared photoimmunotherapy. Resected specimens were subjected to histopathological evaluation, including immunohistochemistry for epidermal growth factor receptor, cluster of differentiation 8, programmed cell death protein 1, and forkhead box P3 proteins.
Results: In both cases, residual tumor cells were predominantly localized in the superficial mucosal layers, while deeper layers were replaced by fibrosis. All residual tumors retained expression of epidermal growth factor receptor. Lymphocytic infiltration was sparse, with scattered cluster of differentiation 8-positive cells but few programmed cell death protein 1-positive or forkhead box P3-positive lymphocytes. These findings suggest that the tumor microenvironment surrounding residual tumors may have been unfavorable for the induction of robust antitumor immune responses.
Conclusion: Residual tumors after near-infrared photoimmunotherapy can occur despite adequate laser irradiation and epidermal growth factor receptor expression. Our observations imply that insufficient immune activation within the tumor microenvironment may contribute to treatment resistance. Further characterization of the post-photoimmunotherapy tumor microenvironment will be essential to better understand treatment mechanisms and to optimize therapeutic efficacy. en-copyright= kn-copyright= en-aut-name=MakinoTakuma en-aut-sei=Makino en-aut-mei=Takuma kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=SatoYasuharu en-aut-sei=Sato en-aut-mei=Yasuharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=NishikoriAsami en-aut-sei=Nishikori en-aut-mei=Asami kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NaoiYuto en-aut-sei=Naoi en-aut-mei=Yuto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=AndoMizuo en-aut-sei=Ando en-aut-mei=Mizuo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= affil-num=1 en-affil=Department of Otolaryngology - Head and Neck Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Hematopathology, Okayama University Graduate School of Health Sciences kn-affil= affil-num=3 en-affil=Department of Hematopathology, Okayama University Graduate School of Health Sciences kn-affil= affil-num=4 en-affil=Department of Otolaryngology - Head and Neck Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of Otolaryngology - Head and Neck Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=NIR-PIT kn-keyword=NIR-PIT en-keyword=EGFR kn-keyword=EGFR en-keyword=CD8 kn-keyword=CD8 en-keyword=PD-1 kn-keyword=PD-1 en-keyword=FOXP3 kn-keyword=FOXP3 en-keyword=Tumor microenvironment kn-keyword=Tumor microenvironment en-keyword=Photoimmunotherapy kn-keyword=Photoimmunotherapy en-keyword=Head and neck cancer kn-keyword=Head and neck cancer END start-ver=1.4 cd-journal=joma no-vol=112 cd-vols= no-issue=3 article-no= start-page=104642 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202605 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Relationship between the Hounsfield Unit value of the greater trochanter and the risk of greater trochanteric fractures in anterolateral muscle-sparing minimally invasive total hip arthroplasty en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background: No previous studies have investigated the association between the risk of greater trochanteric fractures and the Hounsfield Unit (HU) of the greater trochanter in muscle-sparing minimally invasive total hip arthroplasty (MIS-THA). This study aimed to investigate the risk factors for greater trochanteric fractures in anterolateral MIS-THA.
Hypothesis: Lower HU values of the greater trochanter are associated with a higher risk of intraoperative and early postoperative greater trochanteric fractures.
Patients and methods: This single-center retrospective observational study included 223 patients (257 hips) who underwent primary THA for osteoarthritis or osteonecrosis between January 2010 and August 2024 using a minimally invasive anterolateral approach in the lateral position. All surgeries were performed by four surgeons. Preoperative CT was used to reconstruct coronal sections including the femoral head center and proximal femoral axis, and cancellous HU values of the greater trochanter were measured. Postoperative CT (1 week) with metal artifact reduction was routinely performed; fractures were defined as cortical fracture lines on 3D-reconstructed CT and assessed by two independent orthopedic surgeons. Patients were divided into two groups according to the presence or absence of fractures.
Results: The incidence of greater trochanteric fractures was 6.6% (17/257 hips). Twelve of these fractures (70.6%) were recognized intraoperatively or immediately postoperatively. Full hydroxyapatite (HA)-coated stems were associated with an increased fracture risk compared with other designs (relative risk [RR], 2.68; 95% CI, 1.07?6.68). Age, sex, BMI, ASA physical status, and diagnosis were not significantly associated with fractures. Multivariate analysis identified lower HU values (odds ratio [OR], 0.973; p < 0.0001) and full HA-coated stems (OR, 13.3; p = 0.04) as independent predictors. Receiver operating characteristic (ROC) analysis determined an optimal cut-off of 72.0 HU (sensitivity, 0.941; specificity, 0.742), with a value ?72.0 HU demonstrating high predictive power (RR, 36.7; p < 0.0001).
Conclusion: Preoperative measurement of HU values in the greater trochanter is a useful screening tool for identifying patients at increased risk of fractures in anterolateral MIS-THA. While an HU value of ? 72.0 necessitates careful intraoperative management and increased vigilance, it should be interpreted as an indicator of risk rather than a definitive predictor of fracture due to its moderate specificity.
Level of evidence: IV; retrospective study. en-copyright= kn-copyright= en-aut-name=OkudaRyuichiro en-aut-sei=Okuda en-aut-mei=Ryuichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TetsunagaTomonori en-aut-sei=Tetsunaga en-aut-mei=Tomonori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YamadaKazuki en-aut-sei=Yamada en-aut-mei=Kazuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TetsunagaTomoko en-aut-sei=Tetsunaga en-aut-mei=Tomoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=InoueTomohiro en-aut-sei=Inoue en-aut-mei=Tomohiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MasadaYasutaka en-aut-sei=Masada en-aut-mei=Yasutaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=YamamotoTetsuya en-aut-sei=Yamamoto en-aut-mei=Tetsuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MatsumotoShin en-aut-sei=Matsumoto en-aut-mei=Shin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=OkazakiYuki en-aut-sei=Okazaki en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=OzakiToshifumi en-aut-sei=Ozaki en-aut-mei=Toshifumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=Department of Orthopaedic Surgery, Section of Medicine, Division of Medicine, Dentistry and Pharmaceutical Sciences, Graduate School of Medicine, Okayama University kn-affil= affil-num=2 en-affil=Department of Musculoskeletal Health Promotion, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Orthopaedic Surgery, Faculty of Medical Development Field, Okayama University kn-affil= affil-num=4 en-affil=Department of Sports Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Department of Orthopaedic Surgery, Section of Medicine, Division of Medicine, Dentistry and Pharmaceutical Sciences, Graduate School of Medicine, Okayama University kn-affil= affil-num=6 en-affil=Department of Orthopaedic Surgery, Section of Medicine, Division of Medicine, Dentistry and Pharmaceutical Sciences, Graduate School of Medicine, Okayama University kn-affil= affil-num=7 en-affil=Department of Orthopaedic Surgery, Section of Medicine, Division of Medicine, Dentistry and Pharmaceutical Sciences, Graduate School of Medicine, Okayama University kn-affil= affil-num=8 en-affil=Department of Orthopaedic Surgery, Section of Medicine, Division of Medicine, Dentistry and Pharmaceutical Sciences, Graduate School of Medicine, Okayama University kn-affil= affil-num=9 en-affil=Department of Orthopaedic Surgery, Section of Medicine, Division of Medicine, Dentistry and Pharmaceutical Sciences, Graduate School of Medicine, Okayama University kn-affil= affil-num=10 en-affil=Department of Orthopaedic Surgery, Section of Medicine, Division of Medicine, Dentistry and Pharmaceutical Sciences, Graduate School of Medicine, Okayama University kn-affil= en-keyword=Periprosthetic fracture kn-keyword=Periprosthetic fracture en-keyword=Anterolateral approach kn-keyword=Anterolateral approach en-keyword=Direct anterior approach kn-keyword=Direct anterior approach en-keyword=Bone density kn-keyword=Bone density en-keyword=Hip prosthesis kn-keyword=Hip prosthesis END start-ver=1.4 cd-journal=joma no-vol=42 cd-vols= no-issue=4 article-no= start-page=350 end-page=361 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202604 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Medaka: a novel model for analyzing genome?environment interactions en-subtitle= kn-subtitle= en-abstract= kn-abstract=Medaka is an established vertebrate model system for biological and biomedical research. It possesses unique features that make it particularly suitable for studying genome?environment interactions. Endemic to habitats spanning from 4 to 40‹C and varying salinities, it combines broad ecological adaptability with experimental tractability. Its exceptional tolerance to inbreeding enabled the creation of the Medaka Inbred Kiyosu-Karlsruhe panel?80 near-isogenic, fully sequenced lines derived from a single wild population. More than 100 wild-derived, fully sequenced strains, collected throughout East Asia for more than 40 years, show relatively low intra-strain variation (inbreeding coefficient of >0.75) but high inter-strain variability (SNP rates >4%). Advanced quantification methods facilitate genome-wide association studies and quantitative trait locus mapping. The systemfs amenability to clustered regularly interspaced short palindromic repeats (CRISPR)/Cas9 editing and emerging epigenomic profiling enables causal validation and regulatory-mechanism discovery. Collectively, medaka offers an unparalleled vertebrate framework for integrating genetics, environment, and epigenetics?bridging evolutionary, biomedical, and population-level perspectives. en-copyright= kn-copyright= en-aut-name=NaruseKiyoshi en-aut-sei=Naruse en-aut-mei=Kiyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=LoosliFelix en-aut-sei=Loosli en-aut-mei=Felix kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=AnsaiSatoshi en-aut-sei=Ansai en-aut-mei=Satoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=BirneyEwan en-aut-sei=Birney en-aut-mei=Ewan kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=WittbrodtJoachim en-aut-sei=Wittbrodt en-aut-mei=Joachim kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= affil-num=1 en-affil=Laboratory of Bioresources, National Institute for Basic Biology kn-affil= affil-num=2 en-affil=Institute of Biological and Chemical Systems, Biological Information Processing (IBCS-BIP), Karlsruhe Institute of Technology kn-affil= affil-num=3 en-affil=Ushimado Marine Institute, Okayama University kn-affil= affil-num=4 en-affil=European Molecular Biology Laboratory, European Bioinformatics Institute (EMBL-EBI) kn-affil= affil-num=5 en-affil=Centre for Organismal Studies (COS), Heidelberg University kn-affil= en-keyword=medaka kn-keyword=medaka en-keyword=population genetics resource kn-keyword=population genetics resource en-keyword=wild-derived strains kn-keyword=wild-derived strains en-keyword=GWAS kn-keyword=GWAS en-keyword=QTL mapping kn-keyword=QTL mapping en-keyword=genome?environment interactions kn-keyword=genome?environment interactions END start-ver=1.4 cd-journal=joma no-vol=65 cd-vols= no-issue=11 article-no= start-page=1578 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Ocular Abscess Causing Remarkable Eyeball Deformity en-subtitle= kn-subtitle= en-abstract= kn-abstract= en-copyright= kn-copyright= en-aut-name=MiyaharaTomoyuki en-aut-sei=Miyahara en-aut-mei=Tomoyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FukushimaShinnosuke en-aut-sei=Fukushima en-aut-mei=Shinnosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MatsuoToshihiko en-aut-sei=Matsuo en-aut-mei=Toshihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=HagiyaHideharu en-aut-sei=Hagiya en-aut-mei=Hideharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= affil-num=1 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Ophthalmology, Okayama University Hospital kn-affil= affil-num=4 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= en-keyword=abscess kn-keyword=abscess en-keyword=endophthalmitis kn-keyword=endophthalmitis en-keyword=orbital cellulitis kn-keyword=orbital cellulitis en-keyword=Staphylococcus aureus kn-keyword=Staphylococcus aureus END start-ver=1.4 cd-journal=joma no-vol=17 cd-vols= no-issue=1 article-no= start-page=3482 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260305 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Atomic imaging for hydrogen and boron aggregates in boron-doped diamond by spectro-photoelectron holography en-subtitle= kn-subtitle= en-abstract= kn-abstract=The electrical properties of diamond are modulated by impurity doping. Isolated substitutional boron atoms introduce holes; however, the fraction of electrically inactive boron atoms increases at higher doping concentrations. This has been attributed to boron aggregation and hydrogen passivation, although their structural identification based on atomic arrangement has yet to be experimentally verified. Here we show the origin of multiple chemical states in homoepitaxially grown boron-doped diamond thin films by analyzing the atomic environment of boron using spectro-photoelectron holography. Our analysis identifies boron dimers and boron-hydrogen complexes, with hydrogen occupying different atomic sites that give rise to distinct chemical shifts. These results suggest that hydrogen incorporation during growth leads to passivation of boron acceptors. We demonstrate that photoelectron holography serves as a promising tool for imaging hydrogen as well as determining the atomic sites of dopants. en-copyright= kn-copyright= en-aut-name=TomitaHiroto en-aut-sei=Tomita en-aut-mei=Hiroto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HosodaWataru en-aut-sei=Hosoda en-aut-mei=Wataru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=TaniguchiTakumi en-aut-sei=Taniguchi en-aut-mei=Takumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=FujiwaraHirokazu en-aut-sei=Fujiwara en-aut-mei=Hirokazu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KataokaNoriyuki en-aut-sei=Kataoka en-aut-mei=Noriyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KageuraTaisuke en-aut-sei=Kageura en-aut-mei=Taisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=TakanoYoshihiko en-aut-sei=Takano en-aut-mei=Yoshihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=KawaradaHiroshi en-aut-sei=Kawarada en-aut-mei=Hiroshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=OguchiTamio en-aut-sei=Oguchi en-aut-mei=Tamio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=YokoyaTakayoshi en-aut-sei=Yokoya en-aut-mei=Takayoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=MatsushitaTomohiro en-aut-sei=Matsushita en-aut-mei=Tomohiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= affil-num=1 en-affil=Graduate School of Science and Technology, Nara Institute of Science and Technology kn-affil= affil-num=2 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= affil-num=3 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= affil-num=4 en-affil=Department of Advanced Materials Science, Graduate School of Frontier Sciences, The University of Tokyo kn-affil= affil-num=5 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= affil-num=6 en-affil=Sensing Technology Research Institute, National Institute of Advanced Industrial Science and Technology kn-affil= affil-num=7 en-affil=Research Center for Materials Nanoarchitectonics, National Institute for Materials Science kn-affil= affil-num=8 en-affil=Faculty of Science and Engineering, Waseda University kn-affil= affil-num=9 en-affil=Center for Spintronics Research Network, The University of Osaka kn-affil= affil-num=10 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= affil-num=11 en-affil=Graduate School of Science and Technology, Nara Institute of Science and Technology kn-affil= END start-ver=1.4 cd-journal=joma no-vol=16 cd-vols= no-issue=1 article-no= start-page=16760 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260409 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Asthma-like bronchodilator responsiveness in patients with neuronal intranuclear inclusion disease en-subtitle= kn-subtitle= en-abstract= kn-abstract=Neuronal intranuclear inclusion disease (NIID) is a neurodegenerative condition characterized by the presence of intranuclear inclusions in neuronal and visceral cells. Patients with NIID can present respiratory symptoms; however, data on pulmonary functions in NIID are lacking. This study investigated the respiratory conditions in NIID patients diagnosed with histopathological and genetic studies. We conducted two spirometries before and after administrating the bronchodilator in NIID patients with asthmatic histories or symptoms. We statistically compared pre- and post-measured values including forced vital capacity (FVC), forced expiratory volume in one second (FEV1), and peak expiratory flow (PEF). Before two spirometries, we also measured fractional concentration of exhaled nitric oxide (FeNO), if possible. Of the 51finally enrolled patients, 17 (33.3%, 95% CI 20.8% to 47.9%) patients had asthmatic histories or symptoms, and 14 patients received two spirometries. After administrating the bronchodilator, FEV1 and PEF significantly increased by 150 mL (6.01%, p?=?0.002) and 260 mL/s (6.72%, p?=?0.017), respectively. The median (interquartile range) of FeNO measured in nine patients was 15 (10?21) ppb. Patients with NIID have airflow reversibility like asthma. This condition appears to be less associated with airway inflammation and may be related to autonomic dysfunction. en-copyright= kn-copyright= en-aut-name=TaharaDaisuke en-aut-sei=Tahara en-aut-mei=Daisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TaharaNao en-aut-sei=Tahara en-aut-mei=Nao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=TamaiChisato en-aut-sei=Tamai en-aut-mei=Chisato kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=AkagiAkio en-aut-sei=Akagi en-aut-mei=Akio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=RikuYuichi en-aut-sei=Riku en-aut-mei=Yuichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MiyaharaHiroaki en-aut-sei=Miyahara en-aut-mei=Hiroaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KobayashiRei en-aut-sei=Kobayashi en-aut-mei=Rei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=OkadaHisashi en-aut-sei=Okada en-aut-mei=Hisashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=KawamotoMichi en-aut-sei=Kawamoto en-aut-mei=Michi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=IshiiJunko en-aut-sei=Ishii en-aut-mei=Junko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=YamazakiHiroki en-aut-sei=Yamazaki en-aut-mei=Hiroki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=KurashigeTakashi en-aut-sei=Kurashige en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=SugiyamaAtsuhiko en-aut-sei=Sugiyama en-aut-mei=Atsuhiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=NagaishiAkiko en-aut-sei=Nagaishi en-aut-mei=Akiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=NishidaKatsuya en-aut-sei=Nishida en-aut-mei=Katsuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=SugieKazuma en-aut-sei=Sugie en-aut-mei=Kazuma kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=FukudomeTakayasu en-aut-sei=Fukudome en-aut-mei=Takayasu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=HasegawaKazuko en-aut-sei=Hasegawa en-aut-mei=Kazuko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= en-aut-name=IshiuraHiroyuki en-aut-sei=Ishiura en-aut-mei=Hiroyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=19 ORCID= en-aut-name=KoikeHaruki en-aut-sei=Koike en-aut-mei=Haruki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=20 ORCID= en-aut-name=KasaiTakashi en-aut-sei=Kasai en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=21 ORCID= en-aut-name=MizunoToshiki en-aut-sei=Mizuno en-aut-mei=Toshiki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=22 ORCID= en-aut-name=AndoMasahiro en-aut-sei=Ando en-aut-mei=Masahiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=23 ORCID= en-aut-name=HiguchiYujiro en-aut-sei=Higuchi en-aut-mei=Yujiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=24 ORCID= en-aut-name=TanakaFumiaki en-aut-sei=Tanaka en-aut-mei=Fumiaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=25 ORCID= en-aut-name=IzumiYuishin en-aut-sei=Izumi en-aut-mei=Yuishin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=26 ORCID= en-aut-name=SobueGen en-aut-sei=Sobue en-aut-mei=Gen kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=27 ORCID= en-aut-name=IwasakiYasushi en-aut-sei=Iwasaki en-aut-mei=Yasushi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=28 ORCID= en-aut-name=ItoSatoru en-aut-sei=Ito en-aut-mei=Satoru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=29 ORCID= en-aut-name=SoneJun en-aut-sei=Sone en-aut-mei=Jun kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=30 ORCID= affil-num=1 en-affil=Department of Neuropathology, Institute for Medical Science of Aging, Aichi Medical University kn-affil= affil-num=2 en-affil=Department of Neuropathology, Institute for Medical Science of Aging, Aichi Medical University kn-affil= affil-num=3 en-affil=Department of Neuropathology, Institute for Medical Science of Aging, Aichi Medical University kn-affil= affil-num=4 en-affil=Department of Neuropathology, Institute for Medical Science of Aging, Aichi Medical University kn-affil= affil-num=5 en-affil=Department of Neuropathology, Institute for Medical Science of Aging, Aichi Medical University kn-affil= affil-num=6 en-affil=Department of Neuropathology, Institute for Medical Science of Aging, Aichi Medical University kn-affil= affil-num=7 en-affil=Department of Neurology, NHO Nagoya Medical Center kn-affil= affil-num=8 en-affil=Department of Neurology, NHO Nagoya Medical Center kn-affil= affil-num=9 en-affil=Department of Neurology, Kobe City Medical Center General Hospital kn-affil= affil-num=10 en-affil=Department of Neurology, Kobe City Medical Center General Hospital kn-affil= affil-num=11 en-affil=Department of Neurology, Tokushima University Graduate School of Biomedical Science kn-affil= affil-num=12 en-affil=Department of Neurology, NHO Kure Medical Center and Chugoku Cancer Center kn-affil= affil-num=13 en-affil=Department of Neurology, Chiba University kn-affil= affil-num=14 en-affil=Department of Neurology, NHO Nagasaki Kawatana Medical Center kn-affil= affil-num=15 en-affil=Department of Neurology, NHO Hyogo Chuo National Hospital kn-affil= affil-num=16 en-affil=Department of Neurology, Nara Medical University Hospital kn-affil= affil-num=17 en-affil=Department of Neurology, NHO Nagasaki Kawatana Medical Center kn-affil= affil-num=18 en-affil=Department of Neurology, NHO Sagamihara National Hospital kn-affil= affil-num=19 en-affil=Department of Neurology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=20 en-affil=Department of Neurology, Saga University kn-affil= affil-num=21 en-affil=Department of Neurology, Kyoto Prefectural University of Medicine kn-affil= affil-num=22 en-affil=Department of Neurology, Kyoto Prefectural University of Medicine kn-affil= affil-num=23 en-affil=Department of Neurology and Geriatrics, Kagoshima University Graduate School of Medical and Dental Sciences kn-affil= affil-num=24 en-affil=Department of Neurology and Geriatrics, Kagoshima University Graduate School of Medical and Dental Sciences kn-affil= affil-num=25 en-affil=Department of Neurology and Stroke Medicine, Yokohama City University Graduate School of Medicine kn-affil= affil-num=26 en-affil=Department of Neurology, Tokushima University Graduate School of Biomedical Science kn-affil= affil-num=27 en-affil=Aichi Medical University kn-affil= affil-num=28 en-affil=Department of Neuropathology, Institute for Medical Science of Aging, Aichi Medical University kn-affil= affil-num=29 en-affil=Division of Respiratory Medicine and Allergology, Department of Internal Medicine, School of Medicine, Aichi Medical University kn-affil= affil-num=30 en-affil=Department of Neuropathology, Institute for Medical Science of Aging, Aichi Medical University kn-affil= en-keyword=Asthma kn-keyword=Asthma en-keyword=Autonomic dysfunction kn-keyword=Autonomic dysfunction en-keyword=Cough kn-keyword=Cough en-keyword=Neuronal intranuclear inclusion disease kn-keyword=Neuronal intranuclear inclusion disease en-keyword=NOTCH2NLC kn-keyword=NOTCH2NLC en-keyword=Pulmonary function kn-keyword=Pulmonary function END start-ver=1.4 cd-journal=joma no-vol=9 cd-vols= no-issue=1 article-no= start-page=838 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260418 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=In vivo activities of E1 elements in the insulin promoter en-subtitle= kn-subtitle= en-abstract= kn-abstract=In this study, we evaluated the in vivo activity of the E1 element within the insulin promoter region. While we successfully obtained mice carrying a deletion exclusively in the E1 element of Ins2 (2E mice), we were unable to obtain mice with a deletion limited to the E1 element of Ins1. To assess the role of the E1 element in Ins1, we compared the mice carrying deletions in the GG2-GG1/A2-C1 elements with or without an additional E1 element deletion (1GC/1GCE mice). 1GCE2E mice developed diabetes. In contrast, 1GCE23 mice (without deletion in the E1 element of Ins2) did not develop diabetes, suggesting that the E1 element of Ins2 is critical for transcriptional regulation. Furthermore, 1GC2E mice (presence of the E1 element of Ins1) developed diabetes. However, the severity of the disease was milder in 1GC2E mice than in 1GCE2E mice, indicating that the E1 element of Ins1 also contributes to transcriptional regulation. These data suggest that the E1 elements in both Ins1/2 promoters are regulated for the in vivo transcription of insulin genes in mice. en-copyright= kn-copyright= en-aut-name=NoguchiHirofumi en-aut-sei=Noguchi en-aut-mei=Hirofumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=Miyagi-ShiohiraChika en-aut-sei=Miyagi-Shiohira en-aut-mei=Chika kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=SadahiraTakuya en-aut-sei=Sadahira en-aut-mei=Takuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=WatanabeMasami en-aut-sei=Watanabe en-aut-mei=Masami kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=SaitohIssei en-aut-sei=Saitoh en-aut-mei=Issei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= affil-num=1 en-affil=Department of Regenerative Medicine, Graduate School of Medicine, University of the Ryukyus kn-affil= affil-num=2 en-affil=Department of Regenerative Medicine, Graduate School of Medicine, University of the Ryukyus kn-affil= affil-num=3 en-affil=Department of Urology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of Urology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of Pediatric Dentistry, Asahi University School of Dentistry kn-affil= END start-ver=1.4 cd-journal=joma no-vol=26 cd-vols= no-issue=1 article-no= start-page=1050 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260423 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Differences in understanding of explanations and risk perception between dental staff and patients: a questionnaire study at a university hospital en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background and purpose: Proper self-care necessitates behavioral changes, underpinned by correct knowledge. Oral health literacy (OHL) research constitutes a fundamental foundation for fostering effective self-care practices. However, the extent of the awareness gap between patients and dental staff regarding explanations provided during treatment remains unknown. This descriptive study was conducted to serve as an initial step in bridging this gap.
Methods: Questionnaires were distributed to 92 dental staff members and 205 patients at university hospitals, with responses from 72 staff members and 157 patients.
Results: In the category assessing understanding of explanations (patient vs. dental staff), patientsf self-assessed understanding exceeded the dental stafffs estimates in three aspects: disease name (p?=?0.03, r?=?0.17), treatment period (p?=?0.01, r?=?0.21), and pain relief (p?=?0.01, r?=?0.19). Regarding health self-awareness, the high-scoring group significantly outperformed the low-scoring group in explaining treatment risks (p?=?0.03, r?=?0.21) and understanding (p?=?0.01, r?=?0.23). Nevertheless, patientsf risk recognition was higher than that of dental staff in three aspects: root canal treatment (p? Conclusion: Dental staff should not be satisfied merely with having "explained" something to the patient; they must engage in a confirmation process to verify the patient's correct understanding of the information or to identify excessive anxiety. en-copyright= kn-copyright= en-aut-name=OtomoShiho en-aut-sei=Otomo en-aut-mei=Shiho kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FujisakiMaoko en-aut-sei=Fujisaki en-aut-mei=Maoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YanagaseRisako en-aut-sei=Yanagase en-aut-mei=Risako kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NoritakeKanako en-aut-sei=Noritake en-aut-mei=Kanako kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=YanagiYoshinobu en-aut-sei=Yanagi en-aut-mei=Yoshinobu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=SugiharaTaro en-aut-sei=Sugihara en-aut-mei=Taro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=School of Environment and Society, Institute of Science Tokyo kn-affil= affil-num=2 en-affil=School of Environment and Society, Institute of Science Tokyo kn-affil= affil-num=3 en-affil=School of Environment and Society, Institute of Science Tokyo kn-affil= affil-num=4 en-affil=Institute of Science Tokyo Hospital, Institute of Science Tokyo kn-affil= affil-num=5 en-affil=Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=6 en-affil=School of Environment and Society, Institute of Science Tokyo kn-affil= en-keyword=Dental care kn-keyword=Dental care en-keyword=Dentist-patient relations kn-keyword=Dentist-patient relations en-keyword=Recognition gaps kn-keyword=Recognition gaps en-keyword=Oral health literacy kn-keyword=Oral health literacy END start-ver=1.4 cd-journal=joma no-vol=2026 cd-vols= no-issue=1 article-no= start-page=2879891 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=A Rare Case of Hyperplastic Dental Follicle Presenting With an Unusually Large Radiolucent Area en-subtitle= kn-subtitle= en-abstract= kn-abstract=Hyperplastic dental follicle (HDF) is a rare odontogenic hamartomatous lesion typically associated with unerupted teeth in children and adolescents and is often found incidentally on radiographic imaging. HDF usually presents as a pericoronal radiolucency of 2?3?mm in diameter and is commonly difficult to distinguish from dentigerous cysts on radiographs. We report an unusual case of HDF in an 11-year-old male who was referred for evaluation of delayed eruption of the left maxillary canine. Panoramic radiography and cone-beam computed tomography (CBCT) revealed a remarkably large radiolucent area, with a maximum dimension of 25.3?mm. The initial clinical diagnosis was a dentigerous cyst; however, incisional biopsy revealed solid tissue characteristics, and histopathological examination confirmed HDF, with no evidence of cystic lining, neoplastic transformation, or inflammation. Following the patientŒs and parentsŒ preference for complete removal, resection of the lesion together with extraction of the impacted canine was performed under general anesthesia. At the 6-month follow-up, no recurrence was observed and bone regeneration was confirmed on radiographic examination. This case underscores the diagnostic challenge posed by atypical radiographic findings and highlights the necessity of histopathological confirmation. Given the exceptional size and potential for recurrence, long-term follow-up is warranted. en-copyright= kn-copyright= en-aut-name=OtsukiSatoshi en-aut-sei=Otsuki en-aut-mei=Satoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KunisadaYuki en-aut-sei=Kunisada en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KadoyaKoichi en-aut-sei=Kadoya en-aut-mei=Koichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KobayashiChizuru en-aut-sei=Kobayashi en-aut-mei=Chizuru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=NakanoKeisuke en-aut-sei=Nakano en-aut-mei=Keisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KawazuToshiyuki en-aut-sei=Kawazu en-aut-mei=Toshiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=IbaragiSoichiro en-aut-sei=Ibaragi en-aut-mei=Soichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= affil-num=1 en-affil=Department of Oral and Maxillofacial Surgery, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Department of Oral and Maxillofacial Surgery, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Oral and Maxillofacial Surgery, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Department of Oral and Maxillofacial Surgery, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Department of Oral Pathology and Medicine, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=6 en-affil=Department of Oral and Maxillofacial Radiology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Department of Oral and Maxillofacial Surgery, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=case report kn-keyword=case report en-keyword=hyperplastic dental follicle kn-keyword=hyperplastic dental follicle en-keyword=large radiolucent lesion kn-keyword=large radiolucent lesion en-keyword=odontogenic hamartoma kn-keyword=odontogenic hamartoma en-keyword=unerupted tooth kn-keyword=unerupted tooth END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page=pcag056 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260428 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=NIMA-related kinases redundantly regulate vegetative and reproductive development in Arabidopsis thaliana en-subtitle= kn-subtitle= en-abstract= kn-abstract=Never-in-mitosis A-related kinases (NEKs) are conserved protein kinases in eukaryotes that regulate cell division and elongation. In Arabidopsis thaliana, NEK6 has been shown to control anisotropic growth through cortical microtubule depolymerization, but the functions of other NEK family members remain largely unknown. Here, we show that Arabidopsis NEKs redundantly regulate organ growth and flowering through phosphorylation-dependent mechanisms. Expression analyses revealed overlapping promoter activities of NEK genes in meristems, vascular tissues, and floral organs. While most single mutants showed no obvious phenotype, multiple mutants exhibited defects in root growth direction, leaf elongation, vascular formation, and floral transition. Biochemical analysis showed that NEK3 and NEK6 phosphorylate both ƒÀ-tubulin and ƒÁ-tubulin, indicating a conserved role in microtubule regulation. In addition, several NEKs interacted with the florigen FLOWERING LOCUS T (FT), and NEK3 phosphorylated FT in vitro and inhibited the FT?FD interaction in transient assays, suggesting a role in flowering regulation. These findings show that Arabidopsis NEKs redundantly coordinate vegetative and reproductive development through phosphorylation-dependent regulation of microtubules and the flowering pathway. en-copyright= kn-copyright= en-aut-name=TakataniShogo en-aut-sei=Takatani en-aut-mei=Shogo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KanazawaMai en-aut-sei=Kanazawa en-aut-mei=Mai kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=SakamotoKotaro en-aut-sei=Sakamoto en-aut-mei=Kotaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TomitaYuki en-aut-sei=Tomita en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KawamotoNozomi en-aut-sei=Kawamoto en-aut-mei=Nozomi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=SakaiTatsuya en-aut-sei=Sakai en-aut-mei=Tatsuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=ArakiTakashi en-aut-sei=Araki en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MotoseHiroyasu en-aut-sei=Motose en-aut-mei=Hiroyasu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= affil-num=1 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Department of Biology, Faculty of Science, Okayama University kn-affil= affil-num=3 en-affil=Department of Biology, Faculty of Science, Okayama University kn-affil= affil-num=4 en-affil=Graduate School of Biostudies, Division of Integrated Life Science, Kyoto University kn-affil= affil-num=5 en-affil=Graduate School of Biostudies, Division of Integrated Life Science, Kyoto University kn-affil= affil-num=6 en-affil=Graduate School of Science and Technology, Niigata University kn-affil= affil-num=7 en-affil=Graduate School of Biostudies, Division of Integrated Life Science, Kyoto University kn-affil= affil-num=8 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= en-keyword=Arabidopsis thaliana kn-keyword=Arabidopsis thaliana en-keyword=flowering kn-keyword=flowering en-keyword=FLOWERING LOCUS T kn-keyword=FLOWERING LOCUS T en-keyword=NIMA-related kinase kn-keyword=NIMA-related kinase en-keyword=organ development kn-keyword=organ development en-keyword=tubulin kn-keyword=tubulin END start-ver=1.4 cd-journal=joma no-vol=18 cd-vols= no-issue=11 article-no= start-page=1688 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260525 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=GLP-1 Receptor Agonists in the Rehabilitation of Patients with Heart Failure: Mechanisms, Clinical Evidence, and Future Perspectives en-subtitle= kn-subtitle= en-abstract= kn-abstract=Heart failure (HF) remains associated with high morbidity and mortality, with heart failure with preserved ejection fraction (HFpEF) becoming increasingly prevalent and therapeutically challenging despite advances in pharmacological and rehabilitative care. Beyond their glucose-lowering effects, glucagon-like peptide-1 receptor agonists (GLP-1RAs) confer cardiometabolic benefits and may serve as effective adjuncts to cardiac rehabilitation (CR), particularly in obese patients with HFpEF. Obesity plays a central role in the pathophysiology of HFpEF, and GLP-1RAs promote weight loss, reduce insulin resistance and leptin signaling, and improve hemodynamic and metabolic abnormalities associated with HFpEF. Accumulating evidence suggests that the benefits of GLP-1RAs are phenotype-specific and more pronounced in patients with HFpEF than in patients with HF with reduced ejection fraction. Current clinical guidelines recommend GLP-1RAs for patients who have type 2 diabetes mellitus and established cardiovascular (CV) disease or are at high CV risk, with recent updates recognizing their potential benefits in patients with HFpEF and obesity. Cardiac rehabilitation, delivered through multidisciplinary programs, remains a cornerstone of HF management. Although caloric restriction and aerobic exercise can be beneficial in patients with HFpEF and obesity, these interventions alone are often insufficient. Sarcopenia is common in older patients with HFpEF and contributes to adverse outcomes, underscoring the importance of incorporating resistance training into CR programs. The most frequent adverse effects of GLP-1RAs are gastrointestinal events, which are generally mild to moderate but may lead to treatment discontinuation in some patients. Future studies should investigate the potential synergistic effects of GLP-1RAs and CR, clarify their long-term safety and efficacy in HF populations, and define their role beyond obese HFpEF phenotypes. en-copyright= kn-copyright= en-aut-name=SuastikaLuh Oliva Saraswati en-aut-sei=Suastika en-aut-mei=Luh Oliva Saraswati kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=BandoYasuko K. en-aut-sei=Bando en-aut-mei=Yasuko K. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=HoshinoKeiji en-aut-sei=Hoshino en-aut-mei=Keiji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KoitabashiNorimichi en-aut-sei=Koitabashi en-aut-mei=Norimichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=SaitoYukihiro en-aut-sei=Saito en-aut-mei=Yukihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=YuasaShinsuke en-aut-sei=Yuasa en-aut-mei=Shinsuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=NakamuraKazufumi en-aut-sei=Nakamura en-aut-mei=Kazufumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= affil-num=1 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Molecular Physiology and Cardiovascular Biology, Mie University Graduate School of Medicine kn-affil= affil-num=3 en-affil=Division of Cardiology, Gunma Prefectural Cardiovascular Center kn-affil= affil-num=4 en-affil=Division of Cardiology, Gunma Prefectural Cardiovascular Center kn-affil= affil-num=5 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=GLP-1 receptor agonists kn-keyword=GLP-1 receptor agonists en-keyword=heart failure kn-keyword=heart failure en-keyword=cardiac rehabilitation kn-keyword=cardiac rehabilitation en-keyword=obesity kn-keyword=obesity en-keyword=sarcopenia kn-keyword=sarcopenia END start-ver=1.4 cd-journal=joma no-vol=105 cd-vols= no-issue=7 article-no= start-page=105 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260509 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=WT1 mRNA in peripheral blood enables early prognostic stratification in AML patients receiving venetoclax and azacitidine therapy en-subtitle= kn-subtitle= en-abstract= kn-abstract=Venetoclax and azacitidine (VEN/AZA), which target BCL-2 and DNA methylation, have demonstrated substantial efficacy, particularly in older or unfit patients with acute myeloid leukemia (AML). Wilmsf Tumor-1 (WT1) mRNA, measurable in peripheral blood (PB), is an established biomarker for monitoring treatment response and predicting AML prognosis. We conducted a retrospective analysis of patients with AML treated with VEN/AZA within the Okayama Hematology Study Group (OHSG). Patients who showed a marked reduction in PB WT1 mRNA levels from baseline after the first or second treatment cycle had significantly improved overall survival (OS) and progression-free survival (PFS). Moreover, achieving PB WT1 mRNA negativity-regardless of whether this occurred early or later in the therapy?was consistently associated with superior OS and PFS. These findings suggest that PB WT1 mRNA is a sensitive and reliable biomarker for predicting treatment response and long-term outcomes in patients with AML receiving VEN/AZA. en-copyright= kn-copyright= en-aut-name=SugiuraHiroyuki en-aut-sei=Sugiura en-aut-mei=Hiroyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=AsadaNoboru en-aut-sei=Asada en-aut-mei=Noboru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=AsanoTakeru en-aut-sei=Asano en-aut-mei=Takeru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=HiramatsuYasushi en-aut-sei=Hiramatsu en-aut-mei=Yasushi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=UrataTomohiro en-aut-sei=Urata en-aut-mei=Tomohiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=ImaiToshi en-aut-sei=Imai en-aut-mei=Toshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=NakamuraMakoto en-aut-sei=Nakamura en-aut-mei=Makoto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=YamamotoKazuhiko en-aut-sei=Yamamoto en-aut-mei=Kazuhiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=IshikawaTatsunori en-aut-sei=Ishikawa en-aut-mei=Tatsunori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=MakitaMasanori en-aut-sei=Makita en-aut-mei=Masanori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=YoshiokaTakanori en-aut-sei=Yoshioka en-aut-mei=Takanori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=SunamiKazutaka en-aut-sei=Sunami en-aut-mei=Kazutaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=SaekiKyosuke en-aut-sei=Saeki en-aut-mei=Kyosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=NawaYuichiro en-aut-sei=Nawa en-aut-mei=Yuichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=KimuraMaiko en-aut-sei=Kimura en-aut-mei=Maiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=TakeuchiMakoto en-aut-sei=Takeuchi en-aut-mei=Makoto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=AbeMasaya en-aut-sei=Abe en-aut-mei=Masaya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=AsakuraShoji en-aut-sei=Asakura en-aut-mei=Shoji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= en-aut-name=YanoTomofumi en-aut-sei=Yano en-aut-mei=Tomofumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=19 ORCID= en-aut-name=MaedaYoshinobu en-aut-sei=Maeda en-aut-mei=Yoshinobu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=20 ORCID= affil-num=1 en-affil=Division of Internal Medicine, Fukuyama City Hospital kn-affil= affil-num=2 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Dentistry and Pharmaceutical Sciences, Okayama University Graduate School of Medicine kn-affil= affil-num=3 en-affil=Department of Hematology and Oncology, Japanese Red Cross Society Himeji Hospital kn-affil= affil-num=4 en-affil=Department of Hematology and Oncology, Japanese Red Cross Society Himeji Hospital kn-affil= affil-num=5 en-affil=Department of Hematology and Blood Transfusion, Kochi Health Sciences Center kn-affil= affil-num=6 en-affil=Department of Hematology and Blood Transfusion, Kochi Health Sciences Center kn-affil= affil-num=7 en-affil=Department of Hematology, Okayama City Hospital kn-affil= affil-num=8 en-affil=Department of Hematology, Okayama City Hospital kn-affil= affil-num=9 en-affil=Department of Hematology, Chugoku Central Hospital of Japan Mutual Aid Association of Public School Teachers kn-affil= affil-num=10 en-affil=Department of Hematology, Chugoku Central Hospital of Japan Mutual Aid Association of Public School Teachers kn-affil= affil-num=11 en-affil=Department of Hematology, NHO Okayama Medical Center kn-affil= affil-num=12 en-affil=Department of Hematology, NHO Okayama Medical Center kn-affil= affil-num=13 en-affil=Division of Hematology, Ehime Prefectural Central Hospital kn-affil= affil-num=14 en-affil=Division of Hematology, Ehime Prefectural Central Hospital kn-affil= affil-num=15 en-affil=Department of Hematology, Japanese Red Cross Okayama Hospital kn-affil= affil-num=16 en-affil=Department of Hematology, Japanese Red Cross Okayama Hospital kn-affil= affil-num=17 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Dentistry and Pharmaceutical Sciences, Okayama University Graduate School of Medicine kn-affil= affil-num=18 en-affil=Department of Internal Medicine, Okayama Rosai Hospital kn-affil= affil-num=19 en-affil=Department of Internal Medicine, Okayama Rosai Hospital kn-affil= affil-num=20 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Dentistry and Pharmaceutical Sciences, Okayama University Graduate School of Medicine kn-affil= en-keyword=WT1 mRNA kn-keyword=WT1 mRNA en-keyword=Acute myeloid leukemia kn-keyword=Acute myeloid leukemia en-keyword=Venetoclax kn-keyword=Venetoclax en-keyword=Azacitidine kn-keyword=Azacitidine en-keyword=Measurable residual disease kn-keyword=Measurable residual disease END start-ver=1.4 cd-journal=joma no-vol=225 cd-vols= no-issue= article-no= start-page=111049 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202608 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Decline in rescue breathing and its impact on outcomes in pediatric out-of-hospital cardiac arrest due to drowning: a nationwide study, 2012?2023 en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background: Rescue breathing is considered essential in pediatric out-of-hospital cardiac arrest (OHCA) due to drowning, a type of asphyxial arrest where hypoxia precedes circulatory collapse. However, the increasing promotion of compression-only CPR (CO-CPR) may have contributed to changes in bystander CPR practices, including a decline in rescue-breathing CPR (RB-CPR). Whether such temporal changes have influenced outcomes in pediatric drowning OHCA remains unclear.
Methods: We analyzed nationwide data from the All-Japan Utstein Registry (2012?2023), including pediatric OHCA patients (?17 years old) whose arrests were caused by drowning and received bystander CPR from laypersons. Patients were categorized into RB-CPR and CO-CPR groups. The primary outcome was 30-day mortality; secondary outcomes included prehospital absence of return of spontaneous circulation (ROSC) and 30-day unfavorable neurological survival, defined as Cerebral Performance Category score 3?5. We used multivariable Poisson regression to estimate adjusted risk ratio (aRR) and conducted analyses by age and witnessed status.
Results: Among 740 eligible patients, 41.6% received RB-CPR and 58.4% received CO-CPR. The proportion of RB-CPR declined over the study period. CO-CPR was associated with higher 30-day mortality (aRR 1.38, 95% CI 1.14?1.67), higher prehospital absence of ROSC, and worse neurological outcomes compared with RB-CPR. The adverse association of CO-CPR was most pronounced in unwitnessed arrests, where ventilation may be particularly important.
Conclusions: In pediatric drowning OHCA, CO-CPR was associated with worse survival and neurological outcomes than RB-CPR. These findings underscore the necessity for rescue breathing and the importance of ventilation-focused bystander CPR training in pediatric and drowning-related scenarios. en-copyright= kn-copyright= en-aut-name=ObaraTakafumi en-aut-sei=Obara en-aut-mei=Takafumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=NojimaTsuyoshi en-aut-sei=Nojima en-aut-mei=Tsuyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MatsumotoNaomi en-aut-sei=Matsumoto en-aut-mei=Naomi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TsukaharaKohei en-aut-sei=Tsukahara en-aut-mei=Kohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=HongoTakashi en-aut-sei=Hongo en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=YumotoTetsuya en-aut-sei=Yumoto en-aut-mei=Tetsuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=YorifujiTakashi en-aut-sei=Yorifuji en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=NakaoAtsunori en-aut-sei=Nakao en-aut-mei=Atsunori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=NaitoHiromichi en-aut-sei=Naito en-aut-mei=Hiromichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Faculty of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Faculty of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Epidemiology, Faculty of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Faculty of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Faculty of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=6 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Faculty of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Department of Epidemiology, Faculty of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=8 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Faculty of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=9 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Faculty of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=Drowning kn-keyword=Drowning en-keyword=Out-of-hospital cardiac arrest kn-keyword=Out-of-hospital cardiac arrest en-keyword=Cardiopulmo naryresuscitation kn-keyword=Cardiopulmo naryresuscitation en-keyword=Child kn-keyword=Child en-keyword=Asphyxia kn-keyword=Asphyxia END start-ver=1.4 cd-journal=joma no-vol=15 cd-vols= no-issue=9 article-no= start-page=e045149 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260505 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Insomnia and the Risk of Atrial Fibrillation: A Nationwide, Real]World Cohort Study en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background: Insomnia is one of the most prevalent diseases observed in clinical practice, contributing to increased death and a range of chronic diseases. While numerous studies have explored the relationship between insomnia and cardiovascular disease, research on its association with atrial fibrillation (AF) remains limited. This study aimed to investigate the association between insomnia and incident AF in the general population by comprehensive, nationwide, real]world data in Japan.
Methods: A total of 1?780?764 individuals without prior cardiovascular disease including AF from the DeSC database were included between April 2014 and August 2023. Insomnia was defined by International Classification of Diseases, Tenth Revision (ICD]10) codes (F510, G470) before the baseline health checkup. The primary outcome was incident AF (I480?I482 and I489). Cox proportional hazards models were used to estimate hazard ratios of AF according to present insomnia (versus absent).
Results: Insomnia was observed in 216?919 individuals (12.2%), showing a significant association with incident AF after adjusting for potential confounding factors (adjusted hazard ratio, 1.14 [95% CI, 1.10?1.18]). Among subgroups, a similar pattern in the association between insomnia and incident AF was seen, while the association was stronger in younger individuals aged <65?years (versus ?65?years) and women (versus men) (P for interaction=0.01 and 0.03, respectively).
Conclusions: Insomnia was significantly associated with the risk of AF. It highlighted the importance of recognizing insomnia as a risk factor for AF, given its high prevalence in the general population and the substantial impact of AF on quality of life and prognosis. en-copyright= kn-copyright= en-aut-name=MasudaTakuro en-aut-sei=Masuda en-aut-mei=Takuro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=EjiriKentaro en-aut-sei=Ejiri en-aut-mei=Kentaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KanekoHidehiro en-aut-sei=Kaneko en-aut-mei=Hidehiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=SuzukiYuta en-aut-sei=Suzuki en-aut-mei=Yuta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MiyoshiToru en-aut-sei=Miyoshi en-aut-mei=Toru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=TayaSatoshi en-aut-sei=Taya en-aut-mei=Satoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=IwasakiKeiichiro en-aut-sei=Iwasaki en-aut-mei=Keiichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=NakagawaKoji en-aut-sei=Nakagawa en-aut-mei=Koji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=NishiiNobuhiro en-aut-sei=Nishii en-aut-mei=Nobuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=MoritaHiroshi en-aut-sei=Morita en-aut-mei=Hiroshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=OkadaAkira en-aut-sei=Okada en-aut-mei=Akira kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=FujiuKatsuhito en-aut-sei=Fujiu en-aut-mei=Katsuhito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=TakedaNorifumi en-aut-sei=Takeda en-aut-mei=Norifumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=MoritaHiroyuki en-aut-sei=Morita en-aut-mei=Hiroyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=YasunagaHideo en-aut-sei=Yasunaga en-aut-mei=Hideo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=TakedaNorihiko en-aut-sei=Takeda en-aut-mei=Norihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=YuasaShinsuke en-aut-sei=Yuasa en-aut-mei=Shinsuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= affil-num=1 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Cardiovascular Medicine, The University of Tokyo kn-affil= affil-num=4 en-affil=Department of Advanced Cardiology, The University of Tokyo kn-affil= affil-num=5 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=9 en-affil=Department of Cardiovascular Therapeutics, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=10 en-affil=Department of Cardiovascular Therapeutics, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=11 en-affil=Department of Prevention of Diabetes and Lifestyle-Related Diseases, Graduate School of Medicine, The University of Tokyo kn-affil= affil-num=12 en-affil=Department of Cardiovascular Medicine, The University of Tokyo kn-affil= affil-num=13 en-affil=Department of Cardiovascular Medicine, The University of Tokyo kn-affil= affil-num=14 en-affil=Department of Cardiovascular Medicine, The University of Tokyo kn-affil= affil-num=15 en-affil=Department of Clinical Epidemiology and Health Economics, School of Public Health, The University of Tokyo kn-affil= affil-num=16 en-affil=Department of Cardiovascular Medicine, The University of Tokyo kn-affil= affil-num=17 en-affil=Department of Cardiovascular Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=atrial fibrillation kn-keyword=atrial fibrillation en-keyword=insomnia kn-keyword=insomnia en-keyword=risk factors kn-keyword=risk factors en-keyword=sleep apnea syndrome kn-keyword=sleep apnea syndrome en-keyword=sleep disorder kn-keyword=sleep disorder END start-ver=1.4 cd-journal=joma no-vol=26 cd-vols= no-issue=1 article-no= start-page=628 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260514 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Sebastidae-specific food allergy causing anaphylaxis: a pediatric case report and fish allergen analysis en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background Fish allergy affects approximately 0?0.3% of the population. Parvalbumin is the major allergen in fish allergy, and patients with fish allergy sensitized to parvalbumin demonstrate allergic reactions to various fish species. However, a subset of patients exhibits allergic responses to only specific fish species. Fish of the Sebastidae family, widely consumed in Asian, North American, and European countries, has rarely been reported as an allergenic trigger.
Case presentation A 14-year-old Japanese boy visited our clinic for evaluation of fish allergy after experiencing allergic reactions to Sebastes alutus (Alaskan rockfish). He developed respiratory symptoms, eyelid edema, and skin erythema after consuming a meal containing Sebastes alutus, suggesting anaphylaxis; however, he was able to consume many other fish species without any issues. Skin prick tests and basophil activation tests using fish species from the Sebastidae family showed positive reactions, whereas other fish species that the patient could tolerate showed negative reactions. Immunoblot analysis performed to identify the causative allergen revealed two IgE-binding bands (17 and 110 kDa) in Sebastidae, distinct from parvalbumin. Mass spectrometry identified these proteins as alpha-actinin-3b, ATPase sarcoplasmic/endoplasmic reticulum Ca2?+?transporting 1, and several myosin-related proteins.
Conclusions This case highlights the need for clinicians to recognize fish allergy specific to the Sebastidae family. Identifying the causative non-parvalbumin allergens would improve understanding of fish allergy diversity and individualized dietary management for patients. Additional cases and detailed analyses are necessary to identify the specific allergens involved in Sebastidae allergy. en-copyright= kn-copyright= en-aut-name=TsugeMitsuru en-aut-sei=Tsuge en-aut-mei=Mitsuru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=UdaKazuhiro en-aut-sei=Uda en-aut-mei=Kazuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=IkedaMasanori en-aut-sei=Ikeda en-aut-mei=Masanori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TsukaharaHirokazu en-aut-sei=Tsukahara en-aut-mei=Hirokazu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= affil-num=1 en-affil=Department of Pediatric Acute Diseases, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Pediatrics, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Pediatrics, Okayama University Hospital kn-affil= affil-num=4 en-affil=Department of Pediatrics, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= en-keyword=Food allergy kn-keyword=Food allergy en-keyword=Fish allergy kn-keyword=Fish allergy en-keyword=Sebastidae kn-keyword=Sebastidae en-keyword=Basophil activation test kn-keyword=Basophil activation test END start-ver=1.4 cd-journal=joma no-vol=34 cd-vols= no-issue=1 article-no= start-page=1 end-page=10 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Similar functional outcomes but different remodeling patterns: A minimum 5-years radiographic comparison of short fit-and-fill stem and quadrangular taper stem en-subtitle= kn-subtitle= en-abstract= kn-abstract=Purpose: ACTIS and CORAIL are cementless titanium femoral stems with hydroxyapatite (HA) coating but differing macro-geometries: ACTIS features a variable triple-taper with a medial collar, whereas CORAIL is a straight double-tapered design available with or without a collar. We compared mid-term clinical and radiographic outcomes of these stems with a minimum 5-years follow-up.
Methods: We retrospectively reviewed 114 primary total hip arthroplasties using ACTIS (63 hips) or CORAIL (51 hips). Clinical outcomes and standardized radiographic parameters were assessed and compared between groups.
Results: The canal-fill ratio (CFR) was significantly greater at the proximal, middle, and distal levels in the ACTIS group. Spot-weld formation was more frequent with ACTIS than with CORAIL (58.7% vs 35.3%). In logistic regression, proximal CFR significantly predicted spot-weld formation for ACTIS, with an optimal cutoff of 66.2% (sensitivity 91.9%, specificity 72.0%). Rates of subsidence, radiolucent lines, and pedestal formation did not differ significantly between groups. No severe stress shielding was observed with ACTIS, whereas three CORAIL hips demonstrated severe stress shielding (0% vs 5.9%). Clinical scores improved significantly in both groups, with no significant between-group differences at final follow-up.
Conclusions: Both stems yielded favorable radiographic and clinical mid-term outcomes. In ACTIS, greater proximal canal fill was associated with radiographic osseointegration, suggesting proximal CFR as a probabilistic radiographic marker of stem ingrowth. en-copyright= kn-copyright= en-aut-name=MasadaYasutaka en-aut-sei=Masada en-aut-mei=Yasutaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TetsunagaTomonori en-aut-sei=Tetsunaga en-aut-mei=Tomonori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=FujiwaraKazuo en-aut-sei=Fujiwara en-aut-mei=Kazuo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=YamadaKazuki en-aut-sei=Yamada en-aut-mei=Kazuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=InoueTomohiro en-aut-sei=Inoue en-aut-mei=Tomohiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=OkudaRyuichiro en-aut-sei=Okuda en-aut-mei=Ryuichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=TetsunagaTomoko en-aut-sei=Tetsunaga en-aut-mei=Tomoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=OkazakiYuki en-aut-sei=Okazaki en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=OzakiToshifumi en-aut-sei=Ozaki en-aut-mei=Toshifumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil=Department of Orthopaedic Surgery, Section of Medicine, Division of Medicine, Dentistry and Pharmaceutical Sciences, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Department of Musculoskeletal Health Promotion, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Orthopaedic Surgery, Okayama City General Medical Center, Okayama City Hospital kn-affil= affil-num=4 en-affil=Department of Orthopaedic Surgery, Okayama University Hospital kn-affil= affil-num=5 en-affil=Department of Orthopaedic Surgery, Section of Medicine, Division of Medicine, Dentistry and Pharmaceutical Sciences, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=6 en-affil=Department of Orthopaedic Surgery, Section of Medicine, Division of Medicine, Dentistry and Pharmaceutical Sciences, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Department of Sports Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=8 en-affil=Center for Education in Medicine and Health Sciences, Okayama University kn-affil= affil-num=9 en-affil=Department of Orthopaedic Surgery, Section of Medicine, Division of Medicine, Dentistry and Pharmaceutical Sciences, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=total hip arthroplasty kn-keyword=total hip arthroplasty en-keyword=ACTIS kn-keyword=ACTIS en-keyword=CORAIL kn-keyword=CORAIL en-keyword=mid-term outcome kn-keyword=mid-term outcome en-keyword=retrospective study kn-keyword=retrospective study END start-ver=1.4 cd-journal=joma no-vol=10 cd-vols= no-issue=13 article-no= start-page=4427 end-page=4438 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260714 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Drivers of temporal improvement in CAR T-cell therapy for large B-cell lymphoma: a Japanese nationwide registry analysis en-subtitle= kn-subtitle= en-abstract= kn-abstract=Real-world CD19 chimeric antigen receptor (CAR) T-cell therapy for large B-cell lymphoma (LBCL) is characterized by expanded eligibility and evolving management practices. However, the prognostic impact of these changes remains inconsistent, and the specific drivers of outcomes remain unclear. This study analyzed 913 patients with relapsed/refractory (R/R) LBCL from a Japanese registry and compared the outcomes between 2 calendar periods (2019-2021 vs 2022-2024). The 2022-2024 cohort was older, had more adverse baseline features, and was less pretreated. Treatment patterns have shifted toward higher utilization of second-line therapy, a growing preference for axicabtagene ciloleucel (axi-cel) and lisocabtagene maraleucel (liso-cel), and improved disease control before infusion. Accordingly, the 2022-2024 cohort achieved a longer progression-free survival (PFS; 6-month PFS, 63.2% vs 55.2%; P = .005), which persisted after adjusting for baseline characteristics using propensity score matching. Multivariable analysis identified second-line therapy, improved preinfusion disease control, and a shift in product selection from tisagenlecleucel to axi-cel or liso-cel as the primary drivers of this improvement. This benefit was pronounced in high-risk populations, including patients with stable or progressive disease at infusion (6-month PFS, 54.6% vs 43.8%; P = .012) and those who were refractory to first-line therapy (6-month PFS, 51.7% vs 40.3%; P = .013). Despite broader use in higher-risk populations and greater axi-cel exposure, 6-month nonrelapse mortality remained low (2.1% vs 1.5%). Real-world outcomes of CD19 CAR T-cell therapy for R/R LBCL have improved, predominantly driven by second-line therapy, enhanced preinfusion disease control, and increased use of more potent CAR T products. en-copyright= kn-copyright= en-aut-name=YagiYu en-aut-sei=Yagi en-aut-mei=Yu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KanemasaYusuke en-aut-sei=Kanemasa en-aut-mei=Yusuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=TeraoToshiki en-aut-sei=Terao en-aut-mei=Toshiki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KatoMotohiro en-aut-sei=Kato en-aut-mei=Motohiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=JoTomoyasu en-aut-sei=Jo en-aut-mei=Tomoyasu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=ShimoyamaTatsu en-aut-sei=Shimoyama en-aut-mei=Tatsu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KitawakiToshio en-aut-sei=Kitawaki en-aut-mei=Toshio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=HanajiriRyo en-aut-sei=Hanajiri en-aut-mei=Ryo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=DokiNoriko en-aut-sei=Doki en-aut-mei=Noriko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=YoshiharaSatoshi en-aut-sei=Yoshihara en-aut-mei=Satoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=FujiiNobuharu en-aut-sei=Fujii en-aut-mei=Nobuharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=IwakiNoriko en-aut-sei=Iwaki en-aut-mei=Noriko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=YamamotoGo en-aut-sei=Yamamoto en-aut-mei=Go kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=SakuraiMasatoshi en-aut-sei=Sakurai en-aut-mei=Masatoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=MatsukawaToshihiro en-aut-sei=Matsukawa en-aut-mei=Toshihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=SakaidaEmiko en-aut-sei=Sakaida en-aut-mei=Emiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=NakashimaYasuhiro en-aut-sei=Nakashima en-aut-mei=Yasuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=YoshidaAkiyo en-aut-sei=Yoshida en-aut-mei=Akiyo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= en-aut-name=UmezawaYoshihiro en-aut-sei=Umezawa en-aut-mei=Yoshihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=19 ORCID= en-aut-name=KimHaryoon en-aut-sei=Kim en-aut-mei=Haryoon kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=20 ORCID= en-aut-name=KataokaKeisuke en-aut-sei=Kataoka en-aut-mei=Keisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=21 ORCID= en-aut-name=GotoHideki en-aut-sei=Goto en-aut-mei=Hideki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=22 ORCID= en-aut-name=AtsutaYoshiko en-aut-sei=Atsuta en-aut-mei=Yoshiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=23 ORCID= en-aut-name=KatoKoji en-aut-sei=Kato en-aut-mei=Koji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=24 ORCID= affil-num=1 en-affil=Department of Medical Oncology, Tokyo Metropolitan Cancer and Infectious Diseases Center, Komagome Hospital kn-affil= affil-num=2 en-affil=Department of Medical Oncology, Tokyo Metropolitan Cancer and Infectious Diseases Center, Komagome Hospital kn-affil= affil-num=3 en-affil=2Department of Hematology, Okayama University Hospital, Okayama, Japan kn-affil= affil-num=4 en-affil=Department of Pediatrics, The University of Tokyo kn-affil= affil-num=5 en-affil=Department of Hematology, Kyoto University Hospital kn-affil= affil-num=6 en-affil=Department of Medical Oncology, Tokyo Metropolitan Cancer and Infectious Diseases Center, Komagome Hospital kn-affil= affil-num=7 en-affil=Department of Hematology, Kyoto University Hospital kn-affil= affil-num=8 en-affil=Department of Hematology and Oncology, Nagoya University Graduate School of Medicine kn-affil= affil-num=9 en-affil=Hematology Division, Tokyo Metropolitan Cancer and Infectious Diseases Center, Komagome Hospital kn-affil= affil-num=10 en-affil=Department of Hematology, Hyogo Medical University Hospital kn-affil= affil-num=11 en-affil=Department of Hematology, Okayama University Hospital kn-affil= affil-num=12 en-affil=Department of Hematology, National Cancer Center Hospital kn-affil= affil-num=13 en-affil=Department of Hematology, Federation of National Public Service Personnel Mutual Aid Associations Toranomon Hospital kn-affil= affil-num=14 en-affil=Division of Hematology, Department of Medicine, Keio University School of Medicine kn-affil= affil-num=15 en-affil=Department of Hematology, Hokkaido University Hospital kn-affil= affil-num=16 en-affil=Department of Hematology, Chiba University Hospital kn-affil= affil-num=17 en-affil=Hematology and Hematopoietic Cell Transplantation, Osaka Metropolitan University Hospital kn-affil= affil-num=18 en-affil=Division of Transfusion Medicine, Kanazawa University Hospital kn-affil= affil-num=19 en-affil=Department of Hematology, Institute of Science Tokyo Hospital kn-affil= affil-num=20 en-affil=Division of Hematology, Department of Medicine, Keio University School of Medicine kn-affil= affil-num=21 en-affil=Division of Hematology, Department of Medicine, Keio University School of Medicine kn-affil= affil-num=22 en-affil=11Department of Hematology, Hokkaido University Hospital, Sapporo, Japan kn-affil= affil-num=23 en-affil=Japanese Data Center for Hematopoietic Cell Transplantation kn-affil= affil-num=24 en-affil=Department of Hematology, Oncology, and Cardiovascular Medicine, Kyushu University Hospital kn-affil= END start-ver=1.4 cd-journal=joma no-vol=17 cd-vols= no-issue=1 article-no= start-page=5862 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260428 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=The role of Pth1r in posterior cranium cartilage regulation and craniosynostosis en-subtitle= kn-subtitle= en-abstract= kn-abstract=Craniosynostosis is a major craniofacial congenital disorder that causes developmental complications. During normal cranial development, intramembranous ossification forms the flat bones and sutures, while cartilage appears transiently in the posterior calvarial region. However, in craniosynostosis, premature suture fusion disturbs normal calvarial morphogenesis. To clarify the role of transient cartilage in this morphogenetic disruption, we investigated its molecular regulation and pathology in mice, focusing on parathyroid hormone 1 receptor (Pth1r) signaling. Conditional deletion of Pth1r in the cranial mesenchyme unexpectedly caused acrocephalic dysmorphology and craniosynostosis, with altered cartilage differentiation. Occipito?interparietal synostosis consistently occurred in Pth1r-ablated Gli1+ and Acan+ lineages, but not after adult Gli1-CreERT2 deletion, indicating a developmental role. Bulk and single-cell RNA-seq analysis revealed nine mesenchymal subsets, with mutant cells showing abnormal chondrocyte differentiation and upregulated Indian hedgehog (Ihh) signaling. These findings indicate that Pth1r maintains proper chondrogenic regulation during calvarial development, and its loss induces craniosynostosis through Ihh overactivation. en-copyright= kn-copyright= en-aut-name=AmanoKatsuhiko en-aut-sei=Amano en-aut-mei=Katsuhiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=OkuzakiDaisuke en-aut-sei=Okuzaki en-aut-mei=Daisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=FujimotoYuji en-aut-sei=Fujimoto en-aut-mei=Yuji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=LiuYu-Chen en-aut-sei=Liu en-aut-mei=Yu-Chen kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KogoMikihiko en-aut-sei=Kogo en-aut-mei=Mikihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=IidaSeiji en-aut-sei=Iida en-aut-mei=Seiji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Department of Oral and Maxillofacial Reconstructive Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Laboratory of Human Immunology (Single Cell Genomics), WPI Immunology Frontier Research Center, University of Osaka kn-affil= affil-num=3 en-affil=Laboratory of Human Immunology (Single Cell Genomics), WPI Immunology Frontier Research Center, University of Osaka kn-affil= affil-num=4 en-affil=Laboratory of Human Immunology (Single Cell Genomics), WPI Immunology Frontier Research Center, University of Osaka kn-affil= affil-num=5 en-affil=The First Department of Oral and Maxillofacial Surgery, Osaka University Graduate School of Dentistry kn-affil= affil-num=6 en-affil=Department of Oral and Maxillofacial Reconstructive Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= END start-ver=1.4 cd-journal=joma no-vol=46 cd-vols= no-issue=3 article-no= start-page=ruag033 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202607 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Estimating the distributional expansion of the invasive crayfish Procambarus clarkii (Girard, 1852) (Decapoda: Astacidea: Cambaridae) in South Korea using environmental DNA analysis en-subtitle= kn-subtitle= en-abstract= kn-abstract=The red swamp crayfish Procambarus clarkii (Girard, 1852) is a globally invasive species that poses serious threats to native biodiversity and ecosystem functioning. In South Korea, established populations of P. clarkii have been documented from the Jiseokcheon River in the Yeongsangang River basin since 2018; however, information on its current nationwide distribution remains limited. We conducted environmental DNA (eDNA) surveys at 19 sites across 11 river systems in South Korea, including sites with no prior distributional records, to evaluate the current distribution and potential range expansion of P. clarkii. Water samples collected during July-August 2024 were analyzed using quantitative real-time PCR (qPCR) with two species-specific primer-probe sets targeting the mitochondrial COI gene. Procambarus clarkii eDNA was detected at three sites in the Yeongsangang River basin, whereas no eDNA was detected in the other surveyed river systems. Notably, P. clarkii eDNA was not detected at a site in the Mangyeonggang River system despite previous reports of individuals and eDNA data sampled there, indicating a possible local population decline or very low abundance. By contrast, detections within the Yeongsangang River basin, together with elevated eDNA concentrations at some sites, are consistent with localized upstream expansion and increased local abundance. The concordant results from the two primer-probe sets, together with Sterivex-based on-site filtration, support the reliability of the applied eDNA framework. These findings identify the Yeongsangang River basin as the current primary focus of the P. clarkii invasion in South Korea, with evidence consistent with localized upstream expansion and increasing abundance, and provide baseline data for early detection and long-term monitoring, as well as for developing management strategies. en-copyright= kn-copyright= en-aut-name=HamSeong-Nam en-aut-sei=Ham en-aut-mei=Seong-Nam kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MoriuchiKaito en-aut-sei=Moriuchi en-aut-mei=Kaito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=HamadaMayuko en-aut-sei=Hamada en-aut-mei=Mayuko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NakataKazuyoshi en-aut-sei=Nakata en-aut-mei=Kazuyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= affil-num=1 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=4 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= en-keyword=Crustacea kn-keyword=Crustacea en-keyword=early detection kn-keyword=early detection en-keyword=eDNA kn-keyword=eDNA en-keyword=freshwater ecosystems kn-keyword=freshwater ecosystems en-keyword=red swamp crayfish kn-keyword=red swamp crayfish END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page=hyag102 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260703 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Impact of pre-existing schizophrenia spectrum disorder on the receipt of invasive and systemic therapy for gastric cancer: a multicenter nationwide cohort study in Japan en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background: Patients with schizophrenia spectrum disorders (SSD) experience higher cancer mortality, partly because of later-stage diagnosis and lower rates of recommended treatments. While treatment disparities have been reported across several cancer types, no study has specifically examined stage-appropriate treatment for gastric cancer among patients with SSD.
Methods: We conducted a retrospective cohort study using a nationwide Hospital-Based Cancer Registry linked to administrative data in Japan. Patients who received initial treatment for gastric cancer between 2018 and 2021 were included. Multivariable logistic regression models examined the association between SSD and the receipt of stage-appropriate cancer treatments, adjusting for age, sex, clinical stage, Charlson Comorbidity Index, and Barthel Index.
Results: Among 189?447 patients from 709 hospitals, 1312 had SSD. Patients with SSD were more likely to be diagnosed at advanced stages. In crude analysis, SSD was associated with lower rates of surgical or endoscopic treatment; however, this association was not statistically significant after adjustment (adjusted odds ratio [aOR], 0.90; 95% confidence interval [CI], 0.75?1.08). In contrast, SSD was independently associated with lower rates of postoperative adjuvant chemotherapy for pathological stage II/III disease (aOR, 0.64; 95% CI, 0.45?0.91) and systemic therapy for stage IV disease (aOR, 0.36; 95% CI, 0.28?0.47).
Conclusions: Among patients with gastric cancer, SSD was associated with reduced receipt of systemic therapy but not surgical or endoscopic treatment. Efforts to improve early detection among patients with SSD may be important for reducing treatment disparities, alongside strengthened support for systemic therapy to ensure equitable access to guideline-recommended gastric cancer care. en-copyright= kn-copyright= en-aut-name=KhantMyo Min en-aut-sei=Khant en-aut-mei=Myo Min kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FujiwaraMasaki en-aut-sei=Fujiwara en-aut-mei=Masaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YamadaYuto en-aut-sei=Yamada en-aut-mei=Yuto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=IshiiTaisuke en-aut-sei=Ishii en-aut-mei=Taisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=WatanabeTomone en-aut-sei=Watanabe en-aut-mei=Tomone kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=FukaoTakashi en-aut-sei=Fukao en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=FujimoriMaiko en-aut-sei=Fujimori en-aut-mei=Maiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=NakayaNaoki en-aut-sei=Nakaya en-aut-mei=Naoki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=KawamuraToshihiko en-aut-sei=Kawamura en-aut-mei=Toshihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=OtsukiKoji en-aut-sei=Otsuki en-aut-mei=Koji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=KakiuchiYoshihiko en-aut-sei=Kakiuchi en-aut-mei=Yoshihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=ShimazuTaichi en-aut-sei=Shimazu en-aut-mei=Taichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=HinotsuShiro en-aut-sei=Hinotsu en-aut-mei=Shiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=UchitomiYosuke en-aut-sei=Uchitomi en-aut-mei=Yosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=InagakiMasatoshi en-aut-sei=Inagaki en-aut-mei=Masatoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= affil-num=1 en-affil=Department of Psychiatry, Faculty of Medicine, Shimane University kn-affil= affil-num=2 en-affil=Department of Neuropsychiatry, Medical Development Field, Okayama University kn-affil= affil-num=3 en-affil=Division of Survivorship Research, National Cancer Center Institute for Cancer Control, National Cancer Center kn-affil= affil-num=4 en-affil=Division of Health Services Research, National Cancer Center Institute for Cancer Control, National Cancer Center kn-affil= affil-num=5 en-affil=Division of Health Services Research, National Cancer Center Institute for Cancer Control, National Cancer Center kn-affil= affil-num=6 en-affil=Department of Neuropsychiatry, Medical Development Field, Okayama University kn-affil= affil-num=7 en-affil=Division of Survivorship Research, National Cancer Center Institute for Cancer Control, National Cancer Center kn-affil= affil-num=8 en-affil=Tohoku Medical Megabank Organization, Tohoku University kn-affil= affil-num=9 en-affil=Department of Medical Informatics, Shimane University Hospital kn-affil= affil-num=10 en-affil=Department of Psychiatry, Faculty of Medicine, Shimane University kn-affil= affil-num=11 en-affil=Department of Gastroenterological Surgery, Dentistry and Pharmaceutical Sciences, Okayama University Graduate School of Medicine kn-affil= affil-num=12 en-affil=Division of Behavioral Sciences, National Cancer Center Institute for Cancer Control, National Cancer Center kn-affil= affil-num=13 en-affil=Department of Biostatistics and Data Management, Sapporo Medical University kn-affil= affil-num=14 en-affil=Department of Cancer Survivorship and Digital Medicine, The Jikei University School of Medicine kn-affil= affil-num=15 en-affil=Department of Psychiatry, Faculty of Medicine, Shimane University kn-affil= en-keyword=healthcare disparities kn-keyword=healthcare disparities en-keyword=schizophrenia Spectrum and other psychotic disorders kn-keyword=schizophrenia Spectrum and other psychotic disorders en-keyword=stomach neoplasms kn-keyword=stomach neoplasms END start-ver=1.4 cd-journal=joma no-vol=131 cd-vols= no-issue=7 article-no= start-page=e2025JE009578 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202607 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Surface Geology and Evolution of Asteroid Ryugu: Insights From Hayabusa2 Global Mapping en-subtitle= kn-subtitle= en-abstract= kn-abstract=Rubble-pile asteroids, characterized by loose aggregates of debris held together by gravity, represent both a significant planetary hazard and a key to understanding planetesimal formation. Geologic mapping of these bodies provides essential insights into their origins, evolution, and surface processes. This knowledge is crucial for advancing space mission capabilities, from precise navigation and safe sampling to assessing the feasibility of future asteroid mining. Here, we present the most comprehensive geologic map of Ryugu in comparison to previous early-stage and single-feature maps, integrating Optical Navigation Camera (ONC) mosaics, LIDAR-derived topography, Mobile Asteroid Surface Scout (MASCOT) descent images, and spectral slope data. The analysis includes reclassification of previously identified features and newly identified features from global to local scales. The geologic mapping technique followed United States Geological Survey (USGS) planetary cartography standards using the ArcGIS Pro platform. This global framework provides an essential geologic context for interpreting returned samples and constraining rubble-pile evolution. We identified geomorphological, structural, and surface texture units on Ryugu's unconsolidated rubble-pile surface using 0.2?0.7 m/pixel image mosaics. Elongated troughs at the poles and mirrored, oblique lineaments near the equatorial ridge are consistent with rotational strain. Compared with another rubble-pile asteroid Bennu, Ryugu shows a more uniform boulder distribution, and its immensely prominent equatorial ridge indicates a more intense period of rotational deformation. However, the western bulge deviates from this trend; its fewer boulders, underdeveloped ridges, and older degraded craters suggest selective resurfacing. These features show evidence of catastrophic disruption, rotational reshaping, and ongoing surface movement. en-copyright= kn-copyright= en-aut-name=VincentLisa M. en-aut-sei=Vincent en-aut-mei=Lisa M. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=RujTrishit en-aut-sei=Ruj en-aut-mei=Trishit kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KomatsuGoro en-aut-sei=Komatsu en-aut-mei=Goro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=RayAditya en-aut-sei=Ray en-aut-mei=Aditya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KikuchiHiroshi en-aut-sei=Kikuchi en-aut-mei=Hiroshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=HemmiRyodo en-aut-sei=Hemmi en-aut-mei=Ryodo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=MiyamotoHideaki en-aut-sei=Miyamoto en-aut-mei=Hideaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=SugitaSeiji en-aut-sei=Sugita en-aut-mei=Seiji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=the Hayabusa2 ONC science team en-aut-sei=the Hayabusa2 ONC science team en-aut-mei= kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil=Department of Earth Sciences, Utrecht University kn-affil= affil-num=2 en-affil=Institute for Planetary Materials, Okayama University kn-affil= affil-num=3 en-affil=International Research School of Planetary Sciences, Universit? G. d'Annunzio kn-affil= affil-num=4 en-affil=Department of Geology, Presidency University kn-affil= affil-num=5 en-affil=Gakushuin University kn-affil= affil-num=6 en-affil=Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency kn-affil= affil-num=7 en-affil=Department of Systems Innovation School of Engineering, The University of Tokyo kn-affil= affil-num=8 en-affil=Planetary Exploration Research Center, Chiba Institute of Technology kn-affil= affil-num=9 en-affil= kn-affil= END start-ver=1.4 cd-journal=joma no-vol=14 cd-vols= no-issue=1 article-no= start-page=30 end-page=33 dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=202501 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Study of Signal Separation and Demodulation Techniques Considering IQ Imbalance by Stored Data Batch Signal Processing en-subtitle= kn-subtitle= en-abstract= kn-abstract=With the arrival of the IoT era, the problem of interference has become even more serious, and the challenge is to establish techniques for separating and demodulating collide signals. To achieve this, we are conducting research on stored data batch signal processing technology using short-time Fourier transform (STFT). In this paper, we used a feature quantity demodulation method proposed as a method for stored data batch signal processing to evaluate the effect of IQ imbalance, which is a factor in signal degradation in the transmitter, on signal separation and demodulation performance. Furthermore, we proposed a receiver configuration that estimates the amount of degradation due to IQ imbalance from the extracted feature quantities and compensates for the signal degradation. Computer simulation results confirmed that the proposed compensation method can improve signal separation and demodulation performance when degraded by IQ imbalance. en-copyright= kn-copyright= en-aut-name=MitaYudai en-aut-sei=Mita en-aut-mei=Yudai kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HiraokaYuta en-aut-sei=Hiraoka en-aut-mei=Yuta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=HikasaTomofumi en-aut-sei=Hikasa en-aut-mei=Tomofumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TomisatoShigeru en-aut-sei=Tomisato en-aut-mei=Shigeru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=DennoSatoshi en-aut-sei=Denno en-aut-mei=Satoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=UeharaKazuhiro en-aut-sei=Uehara en-aut-mei=Kazuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Graduate School of Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Natural Science and Technology, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Natural Science and Technology, Okayama University kn-affil= affil-num=4 en-affil=Graduate School of Natural Science and Technology, Okayama University kn-affil= affil-num=5 en-affil=Graduate School of Natural Science and Technology, Okayama University kn-affil= affil-num=6 en-affil=Graduate School of Natural Science and Technology, Okayama University kn-affil= en-keyword=stored data batch signal processing kn-keyword=stored data batch signal processing en-keyword=short-time Fourier transform kn-keyword=short-time Fourier transform en-keyword=IQ imbalance kn-keyword=IQ imbalance en-keyword=IQ imbalance compensation kn-keyword=IQ imbalance compensation END start-ver=1.4 cd-journal=joma no-vol=27 cd-vols= no-issue=1 article-no= start-page=19 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250131 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Performance of the modified 2022 ACR/EULAR giant cell arteritis classification criteria without age restriction for discriminating from Takayasu arteritis en-subtitle= kn-subtitle= en-abstract= kn-abstract=Objective To evaluate the ability to discriminate giant cell arteritis (GCA) from Takayasu arteritis (TAK) according to the modified 2022 American College of Rheumatology/European Alliance of Associations for Rheumatology (ACR/EULAR) GCA classification criteria.
Methods Patients enrolled in the Japanese nationwide retrospective registry were evaluated using the criteria with partial modification; wall thickening of descending thoracic-abdominal aorta were mainly diagnosed by contrast-enhanced computed tomography (CT) or magnetic resonance imaging instead of evaluating with positron emission tomography (PET)-CT. The discriminability of the criteria was evaluated using C-statistic (>?0.7: good ability).
Results Newly diagnosed patients with GCA (n?=?139) and TAK (n?=?129) were assessed, and 23.3% of TAK were aged 50 years or older at onset. The sensitivity of the modified 2022 ACR/EULAR GCA classification criteria with a score???6 was 82.0%, 68.5%, and 32.1% in all GCA, GCA with large-vessel involvement, and GCA without cranial arteritis, respectively. The specificity of the modified criteria was 96.1% for the 129 TAK as controls. Five patients with late-onset TAK met the modified criteria, and four had cranial signs and symptoms, two had bilateral axillary artery involvement, and four had descending thoracic-abdominal aorta involvement. The discriminability of the criteria was good (C-statistic: 0.986, 95% confidence interval [CI]: 0.976?0.996) and remained good after excluding age (C-statistic: 0.927, 95% CI: 0.894?0.961). The discriminability of a set of large-vessel lesions (bilateral axillary artery and descending thoracic-abdominal aorta) and inflammatory markers was markedly decreased with poor C-statistic value (C-statistic: 0.598, 95% CI: 0.530?0.667). Discriminability was improved after adding polymyalgia rheumatica (PMR) (C-statistic: 0.757, 95% CI: 0.700?0.813) or age (C-statistic: 0.913, 95%CI: 0.874?0.951) to the set of large-vessel lesions. In GCA patients with a score???5, 52% had bilateral subclavian and/or axillary artery involvement.
Conclusion The modified 2022 ACR/EULAR GCA classification criteria well performed in classifying GCA and TAK without PET-CT in routine clinical practice. A set of items included in the modified GCA classification criteria had good discriminative ability for GCA and TAK, even when age was excluded. However, age restriction or PMR was required to distinguish GCA without cranial lesions from TAK. en-copyright= kn-copyright= en-aut-name=SugiharaTakahiko en-aut-sei=Sugihara en-aut-mei=Takahiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HarigaiMasayoshi en-aut-sei=Harigai en-aut-mei=Masayoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=UchidaHaruhito A. en-aut-sei=Uchida en-aut-mei=Haruhito A. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=YoshifujiHajime en-aut-sei=Yoshifuji en-aut-mei=Hajime kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MaejimaYasuhiro en-aut-sei=Maejima en-aut-mei=Yasuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=IshizakiJun en-aut-sei=Ishizaki en-aut-mei=Jun kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=WatanabeYoshiko en-aut-sei=Watanabe en-aut-mei=Yoshiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=DobashiHiroaki en-aut-sei=Dobashi en-aut-mei=Hiroaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=KomagataYoshinori en-aut-sei=Komagata en-aut-mei=Yoshinori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=TamuraNaoto en-aut-sei=Tamura en-aut-mei=Naoto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=NakaokaYoshikazu en-aut-sei=Nakaoka en-aut-mei=Yoshikazu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=Japan Research Committee of the Ministry of Health, Labour, and Welfare for Intractable Vasculitis (JPVAS) en-aut-sei=Japan Research Committee of the Ministry of Health, Labour, and Welfare for Intractable Vasculitis (JPVAS) en-aut-mei= kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= affil-num=1 en-affil=Department of Rheumatology, Graduate School of Medical and Dental Sciences, Institute of Science Tokyo kn-affil= affil-num=2 en-affil=Division of Rheumatology, Department of Internal Medicine, Tokyo Womenfs Medical University School of Medicine kn-affil= affil-num=3 en-affil=Department of Chronic Kidney Disease and Cardiovascular Disease, Dentistry and Pharmaceutical Sciences, Okayama University Graduate School of Medicine kn-affil= affil-num=4 en-affil=Department of Rheumatology and Clinical Immunology, Graduate School of Medicine, Kyoto University kn-affil= affil-num=5 en-affil=Department of Cardiovascular Medicine, Graduate School of Medical and Dental Sciences, Institute of Science Tokyo kn-affil= affil-num=6 en-affil=Department of Hematology, Clinical Immunology and Infectious Diseases, Ehime University Graduate School of Medicine kn-affil= affil-num=7 en-affil=Department of General Medicine, Kawasaki Medical School kn-affil= affil-num=8 en-affil=Division of Hematology, Rheumatology and Respiratory Medicine, Department of Internal Medicine, Faculty of Medicine, Kagawa University kn-affil= affil-num=9 en-affil=Department of Nephrology and Rheumatology, Kyorin University School of Medicine kn-affil= affil-num=10 en-affil=Department of Internal Medicine and Rheumatology, Juntendo University School of Medicine kn-affil= affil-num=11 en-affil=Department of Vascular Physiology, National Cerebral and Cardiovascular Center Research Institute kn-affil= affil-num=12 en-affil= kn-affil= en-keyword=GCA kn-keyword=GCA en-keyword=TAK kn-keyword=TAK en-keyword=Classification criteria kn-keyword=Classification criteria en-keyword=Bilateral axillary artery kn-keyword=Bilateral axillary artery en-keyword=Descending thoracic-abdominal aorta kn-keyword=Descending thoracic-abdominal aorta en-keyword=Bilateral subclavian artery kn-keyword=Bilateral subclavian artery END start-ver=1.4 cd-journal=joma no-vol=64 cd-vols= no-issue=22 article-no= start-page=e202504108 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250327 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Efficient Nickel Precatalysts for Suzuki-Miyaura Cross-Coupling of Aryl Chlorides and Arylboronic Acids Under Mild Conditions en-subtitle= kn-subtitle= en-abstract= kn-abstract=The synthesis and catalytic properties of Ni(II) complexes with the general formula Ni(NHC)[P(OR)3](Ar)Cl are described. These complexes are air-stable and extremely effective precatalysts in the Suzuki-Miyaura cross-coupling reaction. The reaction protocols described allow for the cross-coupling of aryl chlorides and arylboronic acids, employing low catalytic loading, to deliver a large variety of functionalized biaryl compounds. For the coupling of aryl chlorides with N-heterocyclic boronic acids, TBAF was used as an additive to afford nitrogen-containing biaryl products. Overall, these reaction protocols operate at room or mild temperatures and can be applied to a variety of electronically and sterically differentiated coupling partners. Fundamental insights into the mechanism of this reaction, including the proposed formation of the catalytically active Ni(NHC)[P(Oi-Pr)3] and resting state species, are also reported. en-copyright= kn-copyright= en-aut-name=JohnMorgan E. en-aut-sei=John en-aut-mei=Morgan E. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=NuttMichael J. en-aut-sei=Nutt en-aut-mei=Michael J. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=OfferJosephine E. en-aut-sei=Offer en-aut-mei=Josephine E. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=DuczynskiJeremy A. en-aut-sei=Duczynski en-aut-mei=Jeremy A. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=YamazakiKen en-aut-sei=Yamazaki en-aut-mei=Ken kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MiuraTomoya en-aut-sei=Miura en-aut-mei=Tomoya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=MoggachStephen A. en-aut-sei=Moggach en-aut-mei=Stephen A. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=KoutsantonisGeorge A. en-aut-sei=Koutsantonis en-aut-mei=George A. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=DortaReto en-aut-sei=Dorta en-aut-mei=Reto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=StewartScott G. en-aut-sei=Stewart en-aut-mei=Scott G. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=School of Molecular Sciences, The University of Western Australia (M310) kn-affil= affil-num=2 en-affil=School of Molecular Sciences, The University of Western Australia (M310) kn-affil= affil-num=3 en-affil=School of Molecular Sciences, The University of Western Australia (M310) kn-affil= affil-num=4 en-affil=School of Molecular Sciences, The University of Western Australia (M310) kn-affil= affil-num=5 en-affil=Division of Applied Chemistry, Okayama University kn-affil= affil-num=6 en-affil=Division of Applied Chemistry, Okayama University kn-affil= affil-num=7 en-affil=School of Molecular Sciences, The University of Western Australia (M310) kn-affil= affil-num=8 en-affil=School of Molecular Sciences, The University of Western Australia (M310) kn-affil= affil-num=9 en-affil=School of Molecular Sciences, The University of Western Australia (M310) kn-affil= affil-num=10 en-affil=School of Molecular Sciences, The University of Western Australia (M310) kn-affil= en-keyword=Air Stable kn-keyword=Air Stable en-keyword=Aryl Chlorides kn-keyword=Aryl Chlorides en-keyword=Boronic Acids kn-keyword=Boronic Acids en-keyword=Nickel Catalysis kn-keyword=Nickel Catalysis en-keyword=Room Temperature kn-keyword=Room Temperature en-keyword=Suzuki-Miyaura Cross-Coupling kn-keyword=Suzuki-Miyaura Cross-Coupling END start-ver=1.4 cd-journal=joma no-vol=2025 cd-vols= no-issue=1 article-no= start-page=013A01 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=202501 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Saddle-Point Approximation to the False-Vacuum Decay at Finite Temperature in 1D Quantum Mechanics en-subtitle= kn-subtitle= en-abstract= kn-abstract=We calculate the false-vacuum decay rate in 1D quantum mechanics on the basis of the saddle-point approximation in the Euclidean path integral at finite temperature. The saddle points are the finite-T and shifted bounce solutions, which are finite-period analogs of the (zero-temperature) bounce solution, and the shot solutions. We reexamine the zero-temperature result by Callan and Coleman and compare it with the zero-temperature limit of our results. We also perform some numerical calculations to illustrate the temperature dependence of the decay rate and compare it with the result by Affleck. en-copyright= kn-copyright= en-aut-name=HaradaKoji en-aut-sei=Harada en-aut-mei=Koji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TaoShuichiro en-aut-sei=Tao en-aut-mei=Shuichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YinQiang en-aut-sei=Yin en-aut-mei=Qiang kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= affil-num=1 en-affil=Faculty of Arts and Science, Kyushu University kn-affil= affil-num=2 en-affil=Institute of Promotion of Education and Campus Life, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Science, Kyushu University kn-affil= END start-ver=1.4 cd-journal=joma no-vol=16 cd-vols= no-issue=1 article-no= start-page=10055 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260220 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Nitric oxide induces p53-mediated cell death in human nasal epithelial cells en-subtitle= kn-subtitle= en-abstract= kn-abstract=Nitric oxide (NO) is a key signaling molecule that plays a vital role in maintaining homeostasis of physiological processes such as immune responses and neurotransmission. However, excessive NO production during inflammatory responses to infection can lead to cytotoxicity and tissue damage. The nasal epithelial barrier is a crucial first line of immunological defense against viral infections, and it is likely exposed to excessive NO levels during chronic inflammation. Therefore, clarifying the effects of NO on this barrier is thus critical. In this study, we investigated the biological effects of sustained NO exposure on RPMI2650 human nasal epithelial cells. Post-NO exposure transcriptomic analyses revealed significant upregulation of genes involved in the p53 signaling pathway. RT-qPCR analyses confirmed the temporal upregulation of p53 target genes associated with apoptosis and cell cycle regulation. These gene expression changes downregulated cell proliferation and induced cell death. Our findings suggest that excessive NO exposure induces nasal epithelial cell death via the p53 pathway, which over the long term can result in tissue damage and dysfunction under inflammatory conditions. These results provide new insights into how prolonged NO exposure affects the nasal epithelial cells and may contribute to the progression of chronic infectious diseases. en-copyright= kn-copyright= en-aut-name=KamiuezonoShizuki en-aut-sei=Kamiuezono en-aut-mei=Shizuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KubotaSho en-aut-sei=Kubota en-aut-mei=Sho kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=TsuchidaTomoki en-aut-sei=Tsuchida en-aut-mei=Tomoki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TakasugiNobumasa en-aut-sei=Takasugi en-aut-mei=Nobumasa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=UeharaTakashi en-aut-sei=Uehara en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= affil-num=1 en-affil=Department of Medicinal Pharmacology, Faculty of Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Department of Medicinal Pharmacology, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Medicinal Pharmacology, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Department of Medicinal Pharmacology, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Department of Medicinal Pharmacology, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=Nitric oxide kn-keyword=Nitric oxide en-keyword=p53 kn-keyword=p53 en-keyword=Apoptosis kn-keyword=Apoptosis en-keyword=Cell death kn-keyword=Cell death en-keyword=Human nasal epithelial cells kn-keyword=Human nasal epithelial cells END start-ver=1.4 cd-journal=joma no-vol=136 cd-vols= no-issue=10 article-no= start-page=e195021 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260310 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Spatial single-cell proteotyping reveals immunotherapy-resistant features within the complex tumor microenvironment of metastatic NSCLC en-subtitle= kn-subtitle= en-abstract= kn-abstract=BACKGROUND. Immune checkpoint inhibitors (ICIs) targeting the programmed cell death 1 axis have revolutionized metastatic non?small cell lung cancer (mNSCLC) treatment. However, disease progression remains a concern, and the role of the complex tumor microenvironment (TME) in treatment failure is not fully understood.
METHODS. In this biomarker study involving 103 patients with mNSCLC, including 81 patients who received ICI treatment, we evaluated the association between heterogeneous immune cell subsets and ICI efficacy through single-cell spatial profiling of pretreatment tumor tissue, using a 29-marker multiplex IHC platform built for in-depth dissection of the TME.
RESULTS. Among various types of intratumoral lymphocytes, including Th1, Treg, and NK cells, only CD8+ T cells (tumor-infiltrating lymphocytes [TILs]) were associated with ICI efficacy. Computational tissue segmentation underscored the importance of direct physical interactions between CD8+ TILs and cancer cells for ICI efficacy. TIL phenotyping identified CD39/CD103/Ki-67 positivity as a hallmark of exhausted yet functional tumor-reactive CD8+ TILs. Immunosuppressive tumor-associated macrophages (TAMs) and cancer-associated fibroblasts were independent unfavorable adversaries. High CD73 expression on cancer cells was suggested to confer tolerance to ICI in EGFR/ALK-oncogene+ NSCLC, potentially through M2-TAM accumulation and aberrant angiogenesis.
CONCLUSION. Our study delineates the clinical relevance of heterogeneous immune cell subsets in ICI-treated mNSCLC, aiding the development of targeted therapeutic strategies. en-copyright= kn-copyright= en-aut-name=IsomotoKohsuke en-aut-sei=Isomoto en-aut-mei=Kohsuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HarataniKoji en-aut-sei=Haratani en-aut-mei=Koji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=TsujikawaTakahiro en-aut-sei=Tsujikawa en-aut-mei=Takahiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TomidaShuta en-aut-sei=Tomida en-aut-mei=Shuta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MakutaniYusuke en-aut-sei=Makutani en-aut-mei=Yusuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=TakedaMasayuki en-aut-sei=Takeda en-aut-mei=Masayuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=YonesakaKimio en-aut-sei=Yonesaka en-aut-mei=Kimio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=TanakaKaoru en-aut-sei=Tanaka en-aut-mei=Kaoru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=IwasaTsutomu en-aut-sei=Iwasa en-aut-mei=Tsutomu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=SakaiKazuko en-aut-sei=Sakai en-aut-mei=Kazuko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=NishioKazuto en-aut-sei=Nishio en-aut-mei=Kazuto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=ItoAkihiko en-aut-sei=Ito en-aut-mei=Akihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=NakagawaKazuhiko en-aut-sei=Nakagawa en-aut-mei=Kazuhiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=HayashiHidetoshi en-aut-sei=Hayashi en-aut-mei=Hidetoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= affil-num=1 en-affil=Department of Medical Oncology, Kindai University Faculty of Medicine kn-affil= affil-num=2 en-affil=Department of Medical Oncology, Kindai University Faculty of Medicine kn-affil= affil-num=3 en-affil=Department of Otolaryngology?Head and Neck Surgery, Kyoto Prefectural University of Medicine kn-affil= affil-num=4 en-affil=Center for Comprehensive Genomic Medicine, Okayama University Hospital kn-affil= affil-num=5 en-affil=Department of Surgery, Kindai University Faculty of Medicine kn-affil= affil-num=6 en-affil=Department of Medical Oncology, Kindai University Faculty of Medicine kn-affil= affil-num=7 en-affil=Department of Medical Oncology, Kindai University Faculty of Medicine kn-affil= affil-num=8 en-affil=Department of Medical Oncology, Kindai University Faculty of Medicine kn-affil= affil-num=9 en-affil=Department of Medical Oncology, Kindai University Faculty of Medicine kn-affil= affil-num=10 en-affil=Department of Genome Biology, Kindai University Faculty of Medicine kn-affil= affil-num=11 en-affil=Department of Genome Biology, Kindai University Faculty of Medicine kn-affil= affil-num=12 en-affil=Department of Pathology, Kindai University Faculty of Medicine kn-affil= affil-num=13 en-affil=Department of Medical Oncology, Kindai University Faculty of Medicine kn-affil= affil-num=14 en-affil=Department of Medical Oncology, Kindai University Faculty of Medicine kn-affil= END start-ver=1.4 cd-journal=joma no-vol=17 cd-vols= no-issue=1 article-no= start-page=5485 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260402 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Bacterial collagenase harnesses collagen geometry for processive cleavage en-subtitle= kn-subtitle= en-abstract= kn-abstract=Collagen, the major structural protein in the animal extracellular matrix, forms a triple helix that resists proteolysis and requires specialised enzymes for degradation. Flesh-eating bacteria secrete collagenases that unwind the collagen triple helix and processively trim Gly?X?Y triplet repeats, yet the molecular basis of this process has remained obscure. Here, cryo-electron microscopy reveals how Hathewaya histolytica collagenase ColH engages its substrate and exploits the helixfs architecture for catalysis. ColH encircles a single collagen triple helix in a closed-ring conformation and, through dynamic domain motions, dehydrates and destabilises it. The enzyme undergoes substrate-assisted twisting to adopt a rigid ratcheted conformation, in which one chain is bent into a tripeptide-long ebightf and threaded into the active site for cleavage, while two uncut strands are partitioned to non-catalytic sites. Release of the bight appears to reset the enzyme, with the uncut strands serving as guiding tracks. Repeated cycling between dynamic and rigid states likely enables triplet-by-triplet translocation, allowing ColH to harness collagenfs geometry for processive degradation. These findings reveal a bacterial strategy for collagen unwinding and cleavage distinct from that of mammalian collagenases, highlighting divergent evolutionary solutions for degrading one of naturefs most intractable substrates. en-copyright= kn-copyright= en-aut-name=OkiHiroya en-aut-sei=Oki en-aut-mei=Hiroya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TakebeKatsuki en-aut-sei=Takebe en-aut-mei=Katsuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=BonsuAdjoa en-aut-sei=Bonsu en-aut-mei=Adjoa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=FujiiKazunori en-aut-sei=Fujii en-aut-mei=Kazunori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MasudaRyo en-aut-sei=Masuda en-aut-mei=Ryo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=HendersonNicholas en-aut-sei=Henderson en-aut-mei=Nicholas kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=MimaTakehiko en-aut-sei=Mima en-aut-mei=Takehiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=KoideTakaki en-aut-sei=Koide en-aut-mei=Takaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=MoradiMahmoud en-aut-sei=Moradi en-aut-mei=Mahmoud kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=MatsushitaOsamu en-aut-sei=Matsushita en-aut-mei=Osamu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=SakonJoshua en-aut-sei=Sakon en-aut-mei=Joshua kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=KawaharaKazuki en-aut-sei=Kawahara en-aut-mei=Kazuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= affil-num=1 en-affil=Department of Infection Metagenomics, Genome Information Research Center, Research Institute for Microbial Diseases, The University of Osaka kn-affil= affil-num=2 en-affil=Department of Dental Pharmacology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Chemistry and Biochemistry, University of Arkansas kn-affil= affil-num=4 en-affil=Department of Chemistry and Biochemistry, School of Advanced Science and Engineering, Waseda University kn-affil= affil-num=5 en-affil=Waseda Research Institute for Science and Engineering, Waseda University kn-affil= affil-num=6 en-affil=Department of Chemistry and Biochemistry, University of Arkansas kn-affil= affil-num=7 en-affil=Department of Medical Technology, Faculty of Health Sciences, Ehime Prefectural University of Health Sciences kn-affil= affil-num=8 en-affil=Department of Chemistry and Biochemistry, School of Advanced Science and Engineering, Waseda University kn-affil= affil-num=9 en-affil=Department of Chemistry and Biochemistry, University of Arkansas kn-affil= affil-num=10 en-affil=Department of Bacteriology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=11 en-affil=Department of Chemistry and Biochemistry, University of Arkansas kn-affil= affil-num=12 en-affil=Graduate School of Pharmaceutical Sciences, The University of Osaka kn-affil= END start-ver=1.4 cd-journal=joma no-vol=16 cd-vols= no-issue=1 article-no= start-page=19282 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260427 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Dual-calibration RT-qPCR reveals distinct dnaK1/2/3 and groEL1/2 expression dynamics under heat and acid stress in the sinefungin producer Streptomyces incarnatus en-subtitle= kn-subtitle= en-abstract= kn-abstract=Streptomyces incarnatus NRRL8089 produces sinefungin, a nucleoside antibiotic whose yield is enhanced under defined environmental stresses. Here, dual-calibration RT-qPCR was used to resolve paralogue-specific expression dynamics of the dnaK and groE chaperone systems under heat and acid stress conditions that increase sinefungin titres. The canonical dnaK1?dnaJ1 and groES?groEL1 operons exhibited moderate induction, whereas monocistronic paralogues (dnaK2, dnaK3 and groEL2) showed markedly higher inducibility, with up to ~?125-fold increases relative to baseline expression. Promoter analyses revealed conserved inverted repeats and differences in predicted secondary-structure stability, suggesting that promoter architecture contributes to paralogue-specific responsiveness. Structural modelling indicated divergence among DnaK paralogues in regions associated with substrate interaction, whereas GroEL paralogues retained a conserved overall scaffold, consistent with kinetic rather than structural differentiation. Together, these findings indicate that duplicated paralogues are not functionally redundant but are differentially regulated to partition proteostasis capacity under stress. This paralogue-specific regulation may provide a framework linking environmental perturbation to secondary-metabolite production in actinomycetes. en-copyright= kn-copyright= en-aut-name=Xiao-HuiZhao en-aut-sei=Xiao-Hui en-aut-mei=Zhao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KuboMao en-aut-sei=Kubo en-aut-mei=Mao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YamagataHaruka en-aut-sei=Yamagata en-aut-mei=Haruka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NakashimaYuriko en-aut-sei=Nakashima en-aut-mei=Yuriko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=HasunumaTomohisa en-aut-sei=Hasunuma en-aut-mei=Tomohisa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KanaoTadayoshi en-aut-sei=Kanao en-aut-mei=Tadayoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=TamuraTakashi en-aut-sei=Tamura en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= affil-num=1 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=4 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=5 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=6 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=7 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= en-keyword=Heat shock kn-keyword=Heat shock en-keyword=Acid stress kn-keyword=Acid stress en-keyword=dnaK kn-keyword=dnaK en-keyword=hspR kn-keyword=hspR en-keyword=groES kn-keyword=groES en-keyword=groEL kn-keyword=groEL en-keyword=Sinefungin kn-keyword=Sinefungin en-keyword=Streptomyces incarnatus kn-keyword=Streptomyces incarnatus END start-ver=1.4 cd-journal=joma no-vol=16 cd-vols= no-issue=1 article-no= start-page=20445 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260503 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Metastatic promoting role of mesenchymal stem cells in oral squamous cell carcinoma revealed by an improved bone marrow chimeric model en-subtitle= kn-subtitle= en-abstract= kn-abstract=Mesenchymal stem cells (MSCs) are essential stromal regulators that coordinate tissue repair, angiogenesis, and immune balance. Within tumours, MSCs remodel the microenvironment and influence disease progression, yet their systemic contribution remains unclear due to the limited recovery of functional MSCs in conventional bone marrow transplantation models. Here, we developed an improved bone marrow collection (iBMC) method using enzymatic digestion, which markedly increases MSC yield while preserving their native phenotype. GFP bone marrow chimeric mice generated by iBMC and conventional transplantation displayed comparable hematopoietic reconstitution but differed in MSC abundance, enabling direct analysis of MSC-specific effects under physiological conditions. In mouse models of oral squamous cell carcinoma (OSCC), MSCs profoundly affected tumour development. MSC-deficient tumours exhibited necrosis and infiltration of immature myeloid-derived suppressor cells (MDSCs), whereas MSC-rich tumours showed enhanced vascularisation, adaptive immune infiltration, and stromal remodelling. Notably, lung metastasis occurred only in MSC-rich mice, accompanied by bone marrow?derived endothelial activation and TNF-ƒ¿?driven inflammation. Pharmacological inhibition of LepR signalling using SHU9119 unexpectedly increased metastasis, underscoring the dual, context-dependent functions of MSCs. These findings establish iBMC as a reproducible and physiologically relevant model to study MSC-mediated regulation of tumour immunity, angiogenesis, and metastasis. en-copyright= kn-copyright= en-aut-name=EainHtoo Shwe en-aut-sei=Eain en-aut-mei=Htoo Shwe kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KawaiHotaka en-aut-sei=Kawai en-aut-mei=Hotaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=SanouSho en-aut-sei=Sanou en-aut-mei=Sho kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=SoeYamin en-aut-sei=Soe en-aut-mei=Yamin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=OoMay Wathone en-aut-sei=Oo en-aut-mei=May Wathone kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=PiaoTianyan en-aut-sei=Piao en-aut-mei=Tianyan kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=MinZin Zin en-aut-sei=Min en-aut-mei=Zin Zin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=TakabatakeKiyofumi en-aut-sei=Takabatake en-aut-mei=Kiyofumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=NakanoKeisuke en-aut-sei=Nakano en-aut-mei=Keisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=IbaragiSoichiro en-aut-sei=Ibaragi en-aut-mei=Soichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=NagatsukaHitoshi en-aut-sei=Nagatsuka en-aut-mei=Hitoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= affil-num=1 en-affil=Department of Oral Pathology and Medicine, Graduate School of Medicine, Dentistry, and Pharmaceutical Science, Okayama University kn-affil= affil-num=2 en-affil=Department of Oral Pathology and Medicine, Graduate School of Medicine, Dentistry, and Pharmaceutical Science, Okayama University kn-affil= affil-num=3 en-affil=Department of Oral and Maxillofacial Surgery, Graduate School of Medicine, Dentistry, and Pharmaceutical Science, Okayama University kn-affil= affil-num=4 en-affil=Department of Oral Pathology and Medicine, Graduate School of Medicine, Dentistry, and Pharmaceutical Science, Okayama University kn-affil= affil-num=5 en-affil=Department of Oral Pathology and Medicine, Graduate School of Medicine, Dentistry, and Pharmaceutical Science, Okayama University kn-affil= affil-num=6 en-affil=Department of Oral Pathology and Medicine, Graduate School of Medicine, Dentistry, and Pharmaceutical Science, Okayama University kn-affil= affil-num=7 en-affil=Department of Oral Pathology and Medicine, Graduate School of Medicine, Dentistry, and Pharmaceutical Science, Okayama University kn-affil= affil-num=8 en-affil=Department of Oral Pathology and Medicine, Graduate School of Medicine, Dentistry, and Pharmaceutical Science, Okayama University kn-affil= affil-num=9 en-affil=Department of Oral Pathology and Medicine, Graduate School of Medicine, Dentistry, and Pharmaceutical Science, Okayama University kn-affil= affil-num=10 en-affil=Department of Oral and Maxillofacial Surgery, Graduate School of Medicine, Dentistry, and Pharmaceutical Science, Okayama University kn-affil= affil-num=11 en-affil=Department of Oral Pathology and Medicine, Graduate School of Medicine, Dentistry, and Pharmaceutical Science, Okayama University kn-affil= en-keyword=Mesenchymal stem cells (MSCs) kn-keyword=Mesenchymal stem cells (MSCs) en-keyword=Oral squamous cell carcinoma (OSCC) kn-keyword=Oral squamous cell carcinoma (OSCC) en-keyword=Bone marrow transplantation kn-keyword=Bone marrow transplantation en-keyword=Chimeric mouse models kn-keyword=Chimeric mouse models en-keyword=Tumour microenvironment (TME) kn-keyword=Tumour microenvironment (TME) END start-ver=1.4 cd-journal=joma no-vol=2 cd-vols= no-issue=3 article-no= start-page=uuag021 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260401 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Truncation by death in the sufficient-cause framework en-subtitle= kn-subtitle= en-abstract= kn-abstract=The sufficient-cause framework has been used for decades to improve our understanding of both basic and complex causal concepts in epidemiology, such as mediation and interaction. Here, we make use of this framework to provide a description of truncation by death, in which the outcome of interest is undefined for individuals who die before the assessment time at the end of follow-up. We explain the noncausal nature of the crude estimand that compares outcomes by treatment levels conditional on observed survival by showing that it corresponds to a comparison of distinct risk-status types, which are defined based on their susceptibility to sufficient causes. Further, expressions for the crude estimand and for the survivor average causal effect (SACE)?a causal estimand defined under the principal stratification approach?are provided in terms of population-level joint frequencies of the background factors of sufficient causes. Finally, we also describe conditions, based on background factors of sufficient causes, under which the SACE is null. Our description of this problem, which studies truncation by death from a new perspective, might encourage further analyses of principal stratification-based estimands using sufficient causes. en-copyright= kn-copyright= en-aut-name=Gon?alvesBronner P en-aut-sei=Gon?alves en-aut-mei=Bronner P kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=YamamotoEiji en-aut-sei=Yamamoto en-aut-mei=Eiji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=SuzukiEtsuji en-aut-sei=Suzuki en-aut-mei=Etsuji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= affil-num=1 en-affil=Faculty of Health and Medical Sciences, University of Surrey kn-affil= affil-num=2 en-affil=Okayama University of Science kn-affil= affil-num=3 en-affil=Department of Epidemiology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=causal mechanisms kn-keyword=causal mechanisms en-keyword=potential outcomes kn-keyword=potential outcomes en-keyword=principal stratification kn-keyword=principal stratification en-keyword=sufficient causes kn-keyword=sufficient causes END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page=kwag046 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260302 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Causal diagrams integrating counterfactuals and sufficient causes en-subtitle= kn-subtitle= en-abstract= kn-abstract= en-copyright= kn-copyright= en-aut-name=SuzukiEtsuji en-aut-sei=Suzuki en-aut-mei=Etsuji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=YamamotoEiji en-aut-sei=Yamamoto en-aut-mei=Eiji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= affil-num=1 en-affil=Department of Epidemiology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Okayama University of Science kn-affil= END start-ver=1.4 cd-journal=joma no-vol=69 cd-vols= no-issue=1 article-no= start-page=e01108-24 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250131 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Genomic epidemiology and genetic characteristics of clinical Campylobacter species cocirculating in West Bengal, India, 2019, using whole genome analysis en-subtitle= kn-subtitle= en-abstract= kn-abstract=Campylobacter species are the most common pathogens responsible for foodborne gastroenteritis worldwide. India is a region with frequent diarrheal infections and a high level of Campylobacter infection incidence, but the detailed genomic information is limited. This study aimed to characterize 112 isolates of Campylobacter from diarrhea patients at two hospitals in Kolkata, West Bengal, by whole genome analysis. The Campylobacter isolates consisted of 90 C. jejuni, 20 C. coli, and 2 C. lari isolates. Multilocus sequence typing analysis revealed that the largest sequence type (ST) populations were ST-2131 in C. jejuni and ST-830 in C. coli and seven novel STs were found in C. jejuni and one in C. coli. Notably, ST-2131, which is rarely seen elsewhere, was positive for a sialylated LOS-related gene (wlaN +neuA + cstIII) associated with Guillain-Barr? syndrome. Antibiotic resistance factors predicted from the genome sequence included blaOXA variants (58.9%), tet(O) (54.5%), tet(W) (0.9%), ant(6)-Ia (0.9%), mutation in GyrA (T86I, T86I+D90N, T86I+P104S, T86I+D90N+P104S) (79.5%), and mutation in 23S rRNA (A2075G) (12.5%). In addition to the high drug resistance of Campylobacter in Kolkata, Campylobacter pathogens were circulating that may be associated with Guillain-Barr? syndrome. This study indicates the importance of genomic analysis in the surveillance of pathogens, which provides genomic information on genetic diversity, virulence mechanisms, and determinants of antimicrobial resistance. en-copyright= kn-copyright= en-aut-name=MoritaDaichi en-aut-sei=Morita en-aut-mei=Daichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MukhopadhyayAsish Kumar en-aut-sei=Mukhopadhyay en-aut-mei=Asish Kumar kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=ChowdhuryGoutam en-aut-sei=Chowdhury en-aut-mei=Goutam kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=MaruyamaFumito en-aut-sei=Maruyama en-aut-mei=Fumito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KandaMiyuki en-aut-sei=Kanda en-aut-mei=Miyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=YamamotoYuki en-aut-sei=Yamamoto en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=TaharaHidetoshi en-aut-sei=Tahara en-aut-mei=Hidetoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MukherjeePiyali en-aut-sei=Mukherjee en-aut-mei=Piyali kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=BardhanMainak en-aut-sei=Bardhan en-aut-mei=Mainak kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=KumagaiTakanori en-aut-sei=Kumagai en-aut-mei=Takanori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=KitaharaKei en-aut-sei=Kitahara en-aut-mei=Kei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=MiyoshiShin-Ichi en-aut-sei=Miyoshi en-aut-mei=Shin-Ichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=DuttaShanta en-aut-sei=Dutta en-aut-mei=Shanta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=KurodaTeruo en-aut-sei=Kuroda en-aut-mei=Teruo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= affil-num=1 en-affil=Department of Microbiology, Graduate School of Biomedical and Health Sciences, Hiroshima University kn-affil= affil-num=2 en-affil=Division of Bacteriology, ICMR - National Institute of Cholera and Enteric Diseases kn-affil= affil-num=3 en-affil=Division of Bacteriology, ICMR - National Institute of Cholera and Enteric Diseases kn-affil= affil-num=4 en-affil=Section of Microbial Genomics and Ecology, The IDEC Institute, Hiroshima University kn-affil= affil-num=5 en-affil=Department of Cellular and Molecular Biology, Graduate School of Biomedical and Health Sciences, Hiroshima University kn-affil= affil-num=6 en-affil=Department of Cellular and Molecular Biology, Graduate School of Biomedical and Health Sciences, Hiroshima University kn-affil= affil-num=7 en-affil=Department of Cellular and Molecular Biology, Graduate School of Biomedical and Health Sciences, Hiroshima University kn-affil= affil-num=8 en-affil=Division of Bacteriology, ICMR - National Institute of Cholera and Enteric Diseases kn-affil= affil-num=9 en-affil=Division of Bacteriology, ICMR - National Institute of Cholera and Enteric Diseases kn-affil= affil-num=10 en-affil=Department of Microbiology, Graduate School of Biomedical and Health Sciences, Hiroshima University kn-affil= affil-num=11 en-affil=Collaborative Research Centre of Okayama University for Infectious Diseases at ICMR-NICED kn-affil= affil-num=12 en-affil=Collaborative Research Centre of Okayama University for Infectious Diseases at ICMR-NICED kn-affil= affil-num=13 en-affil=Division of Bacteriology, ICMR - National Institute of Cholera and Enteric Diseases kn-affil= affil-num=14 en-affil=Department of Microbiology, Graduate School of Biomedical and Health Sciences, Hiroshima University kn-affil= en-keyword=Campylobacter jejuni/coli kn-keyword=Campylobacter jejuni/coli en-keyword=whole genome sequencing kn-keyword=whole genome sequencing en-keyword=phylogenetic analysis kn-keyword=phylogenetic analysis en-keyword=plasmid structure kn-keyword=plasmid structure END start-ver=1.4 cd-journal=joma no-vol=93 cd-vols= no-issue=1 article-no= start-page=e00346-2 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250131 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=A newly developed oral infection mouse model of shigellosis for immunogenicity and protective efficacy studies of a candidate vaccine en-subtitle= kn-subtitle= en-abstract= kn-abstract=Shigella infection poses a significant public health challenge in the developing world. However, lack of a widely available mouse model that replicates human shigellosis creates a major bottleneck to better understanding of disease pathogenesis and development of newer drugs and vaccines. BALB/c mice pre-treated with streptomycin and iron (FeCl3) plus desferrioxamine intraperitoneally followed by oral infection with virulent Shigella flexneri 2a resulted in diarrhea, loss of body weight, bacterial colonization and progressive colitis characterized by disruption of epithelial lining, loss of crypt architecture with goblet cell depletion, increased polymorphonuclear infiltration into the mucosa, submucosal swelling (edema), and raised proinflammatory cytokines and chemokines in the large intestine. To evaluate the usefulness of the model for vaccine efficacy studies, mice were immunized intranasally with a recombinant protein vaccine containing Shigella invasion protein invasion plasmid antigen B (IpaB). Vaccinated mice conferred protection against Shigella, indicating that the model is suitable for testing of vaccine candidates. To protect both Shigella and Salmonella, a chimeric recombinant vaccine (rIpaB?T2544) was developed by fusing IpaB with Salmonella outer membrane protein T2544. Vaccinated mice developed antigen-specific serum IgG and IgA antibodies and a balanced Th1/Th2 response and were protected against oral challenge with Shigella (S. flexneri 2a, Shigella dysenteriae, and Shigella sonnei) using our present mouse model and Salmonella (Salmonella Typhi and Paratyphi) using an iron overload mouse model. We describe here the development of an oral Shigella infection model in wild-type mouse. This model was successfully used to demonstrate the immunogenicity and protective efficacy of a candidate protein subunit vaccine against Shigella. en-copyright= kn-copyright= en-aut-name=HaldarRisha en-aut-sei=Haldar en-aut-mei=Risha kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HalderProlay en-aut-sei=Halder en-aut-mei=Prolay kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KoleyHemanta en-aut-sei=Koley en-aut-mei=Hemanta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=MiyoshiShin-ichi en-aut-sei=Miyoshi en-aut-mei=Shin-ichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=DasSantasabuj en-aut-sei=Das en-aut-mei=Santasabuj kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= affil-num=1 en-affil=Division of Clinical Medicine, ICMR-National Institute of Cholera and Enteric Diseases kn-affil= affil-num=2 en-affil=Division of Bacteriology, ICMR-National Institute of Cholera and Enteric Diseases kn-affil= affil-num=3 en-affil=Division of Bacteriology, ICMR-National Institute of Cholera and Enteric Diseases kn-affil= affil-num=4 en-affil=Division of Medicine, Dentistry and Pharmaceutical Sciences, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Division of Clinical Medicine, ICMR-National Institute of Cholera and Enteric Diseases kn-affil= en-keyword=oral route kn-keyword=oral route en-keyword=S. flexneri kn-keyword=S. flexneri en-keyword=shigellosis kn-keyword=shigellosis en-keyword=bivalent subunit vaccine (IpaB?T2544) kn-keyword=bivalent subunit vaccine (IpaB?T2544) en-keyword=mouse model kn-keyword=mouse model END start-ver=1.4 cd-journal=joma no-vol=87 cd-vols= no-issue=6 article-no= start-page=680 end-page=684 dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=2025 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Effects of heat stress on gene expression associated with antioxidant capacity of bovine early antral follicles en-subtitle= kn-subtitle= en-abstract= kn-abstract=Heat exposure at the physiological level of oocyte-cumulus-granulosa cell complexes (OCGCs) during in vitro growth (IVG) culture decreases the reduced glutathione (GSH) level of oocytes, an antioxidant, but its mechanism has been unclear. We subjected OCGCs to IVG for 4, 8, or 12 days and investigated the effects of heat exposure on the gene expression of cumulus-granulosa cells associated with antioxidant capacity. Heat exposure did not alter the expression of genes related to GSH synthesis or reuse. Conversely, heat exposure increased mRNA expression of superoxide dismutase 2 and decreased that of glutathione peroxidase 1, which are antioxidant enzymes. Ultimately, heat exposure alters the gene expression of antioxidant enzymes in growing follicles, which may indirectly decrease the GSH level of oocytes. en-copyright= kn-copyright= en-aut-name=KAWANOKohei en-aut-sei=KAWANO en-aut-mei=Kohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=SAKAGUCHIKenichiro en-aut-sei=SAKAGUCHI en-aut-mei=Kenichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=FURUKAWAEri en-aut-sei=FURUKAWA en-aut-mei=Eri kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NINPETCHNattapong en-aut-sei=NINPETCH en-aut-mei=Nattapong kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=YANAGAWAYojiro en-aut-sei=YANAGAWA en-aut-mei=Yojiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KATAGIRISeiji en-aut-sei=KATAGIRI en-aut-mei=Seiji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Laboratory of Reproductive Physiology, Faculty of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Laboratory of Veterinary Theriogenology, Joint Department of Veterinary Medicine, Faculty of Applied Biological Sciences, Gifu University kn-affil= affil-num=3 en-affil=National Institute of Animal Health, National Agriculture and Food Research Organization kn-affil= affil-num=4 en-affil=Department of Animal Science, Faculty of Agriculture at Kamphaeng Saen, Kasetsart University kn-affil= affil-num=5 en-affil=Laboratory of Theriogenology, Department of Clinical Sciences, Division of Veterinary Medicine, Faculty of Veterinary Medicine, Hokkaido University kn-affil= affil-num=6 en-affil=Laboratory of Theriogenology, Department of Clinical Sciences, Division of Veterinary Medicine, Faculty of Veterinary Medicine, Hokkaido University kn-affil= en-keyword=antioxidant capacity kn-keyword=antioxidant capacity en-keyword=bovine kn-keyword=bovine en-keyword=early antral follicle kn-keyword=early antral follicle en-keyword=in vitro growth kn-keyword=in vitro growth en-keyword=oxidative stress kn-keyword=oxidative stress END start-ver=1.4 cd-journal=joma no-vol=47 cd-vols= no-issue=12 article-no= start-page=2058 end-page=2064 dt-received= dt-revised= dt-accepted= dt-pub-year=2024 dt-pub=20241213 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Staphylococcus aureus ƒÂ-Toxin Induces Ca2+ Influx-Independent Degranulation of Murine Cultured Mast Cells en-subtitle= kn-subtitle= en-abstract= kn-abstract=Cutaneous colonization with Staphylococcus aureus (SA) is frequently observed in patients with atopic dermatitis. SA produces a wide variety of bacterial toxins, among which ƒÂ-toxin was found to induce degranulation of mast cells. Degranulation of mast cells could enhance bacterial clearance and protection from future SA infection but lead to exacerbation of atopic dermatitis. Because it remains to be determined how ƒÂ-toxin triggers degranulation, we investigated ƒÂ-toxin-induced changes in murine bone marrow-derived cultured mast cells in this study. We found that ƒÂ-toxin-induced degranulation could be classified into two phases, an early Ca2+-independent and a late Ca2+-dependent phase. Recent studies suggest that NOD-like receptor family, pyrin domain containing 3 is involved in the degranulation of mast cells, raising a possibility that leakage of K+ induced by ƒÂ-toxin is involved in the Ca2+-independent phase. However, Ca2+-independent degranulation remains unchanged although Ca2+-influx and degranulation induced by ƒÂ-toxin were significantly suppressed in the presence of high concentrations of K+. Because actin depolymerization was reported to induce degranulation in the absence of Ca2+ in the permeabilized rat peritoneal mast cells, a slow but steady decrease in the amount of filamentous actin observed here may be involved in Ca2+-independent degranulation induced by ƒÂ-toxin. Although Mas-related G protein-coupled receptor (MRGPR) X2 in humans and Mrgprb2 in mice are regarded as the receptors responsible for immunoglobulin E-independent degranulation, ƒÂ-toxin-induced degranulation remained unchanged in Mrgprb2?/? mast cells. Our findings pave the way for identification of the target receptors of ƒÂ-toxin. en-copyright= kn-copyright= en-aut-name=LiuKang en-aut-sei=Liu en-aut-mei=Kang kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KatayamaTomoaki en-aut-sei=Katayama en-aut-mei=Tomoaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=SatoHitomi en-aut-sei=Sato en-aut-mei=Hitomi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=Hamaoka-TamuraYuho en-aut-sei=Hamaoka-Tamura en-aut-mei=Yuho kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=SaitoMichiko en-aut-sei=Saito en-aut-mei=Michiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=FurutaKazuyuki en-aut-sei=Furuta en-aut-mei=Kazuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=TanakaSatoshi en-aut-sei=Tanaka en-aut-mei=Satoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= affil-num=1 en-affil=Laboratory of Pharmacology, Division of Pathological Sciences, Kyoto Pharmaceutical University kn-affil= affil-num=2 en-affil=Division of Pharmaceutical Sciences, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Division of Pharmaceutical Sciences, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Laboratory of Pharmacology, Division of Pathological Sciences, Kyoto Pharmaceutical University kn-affil= affil-num=5 en-affil=Bioscience Research Center, Kyoto Pharmaceutical University kn-affil= affil-num=6 en-affil=Division of Pharmaceutical Sciences, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Laboratory of Pharmacology, Division of Pathological Sciences, Kyoto Pharmaceutical University kn-affil= en-keyword=mast cell kn-keyword=mast cell en-keyword=ƒÂ-toxin kn-keyword=ƒÂ-toxin en-keyword=degranulation kn-keyword=degranulation en-keyword=inflammation kn-keyword=inflammation en-keyword=Mas-related G protein-coupled receptor kn-keyword=Mas-related G protein-coupled receptor END start-ver=1.4 cd-journal=joma no-vol=113 cd-vols= no-issue=5 article-no= start-page=055009 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260304 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Analytical study of birefringent cavities for axionlike dark matter search en-subtitle= kn-subtitle= en-abstract= kn-abstract=Light polarization plays a crucial role in optical-cavity experiments; however, mirror birefringence presents a significant challenge that must be addressed carefully. In this study, a rigorous, nonperturbative framework is developed to quantify birefringence effects by incorporating variations in reflectance and polarization misalignment. We analyze the impact of this framework on the sensitivity of axionlike particle (ALP) dark matter searches. The results show that both birefringence and misalignment contribute to sensitivity degradation in the low-mass regime; however, the adverse effects of misalignment can be mitigated by selecting a postselection angle greater than the misalignment angle. Furthermore, birefringence produces an additional resonance peak in the high-mass region, which remains largely unaffected by misalignment and postselection variations. This rigorous framework underscores the importance of considering birefringence in high-precision optical-cavity experiments for ALP detection. en-copyright= kn-copyright= en-aut-name=KuramotoTadashi en-aut-sei=Kuramoto en-aut-mei=Tadashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=ImaiYasutaka en-aut-sei=Imai en-aut-mei=Yasutaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MasudaTakahiko en-aut-sei=Masuda en-aut-mei=Takahiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=ShikanoYutaka en-aut-sei=Shikano en-aut-mei=Yutaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TakatoriSayuri en-aut-sei=Takatori en-aut-mei=Sayuri kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=UetakeSatoshi en-aut-sei=Uetake en-aut-mei=Satoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= affil-num=2 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= affil-num=3 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= affil-num=4 en-affil=Institute of Systems and Information Engineering, University of Tsukuba kn-affil= affil-num=5 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= affil-num=6 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= END start-ver=1.4 cd-journal=joma no-vol=69 cd-vols= no-issue=2 article-no= start-page=128 end-page=131 dt-received= dt-revised= dt-accepted= dt-pub-year=2024 dt-pub=202412 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=RpoB H481Y Rifampicin Resistance Mutation-Associated Oxidative Stress Sensitivity Reduces the Virulence of Staphylococcus aureus en-subtitle= kn-subtitle= en-abstract= kn-abstract=In this study, we have established a Staphylococcus aureus RpoB H481Y mutant strain and demonstrated that it is sensitive to menadione or hydrogen peroxide-induced oxidative stress and exhibits reduced virulence against a silkworm infection model. Furthermore, the reduced virulence of the RpoB H481Y mutant was abrogated in the presence of N-acetylcysteine, a reactive oxygen species scavenger. These results suggest that oxidative stress sensitivity caused by the RpoB H481Y rifampicin resistance mutation attenuates the virulence of S. aureus. en-copyright= kn-copyright= en-aut-name=KanoTomonori en-aut-sei=Kano en-aut-mei=Tomonori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=IshikawaKazuya en-aut-sei=Ishikawa en-aut-mei=Kazuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=ImaiLina en-aut-sei=Imai en-aut-mei=Lina kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=FurutaKazuyuki en-aut-sei=Furuta en-aut-mei=Kazuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KaitoChikara en-aut-sei=Kaito en-aut-mei=Chikara kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= affil-num=1 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=oxidative stress kn-keyword=oxidative stress en-keyword=RNA polymerase beta subunit kn-keyword=RNA polymerase beta subunit en-keyword=Staphylococcus aureus kn-keyword=Staphylococcus aureus en-keyword=virulence kn-keyword=virulence END start-ver=1.4 cd-journal=joma no-vol=206 cd-vols= no-issue=10 article-no= start-page=e00307-24 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2024 dt-pub=20241024 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Overexpression of diglucosyldiacylglycerol synthase leads to daptomycin resistance in Bacillus subtilis en-subtitle= kn-subtitle= en-abstract= kn-abstract=The lipopeptide antibiotic daptomycin exhibits bactericidal activity against Gram-positive bacteria by forming a complex with phosphatidylglycerol (PG) and lipid II in the cell membrane, causing membrane perforation. With the emergence of daptomycin-resistant bacteria, understanding the mechanisms of bacterial resistance to daptomycin has gained great importance. In this study, we aimed to identify the genetic factors contributing to daptomycin resistance in Bacillus subtilis, a model Gram-positive bacterium. Our findings demonstrated that overexpression of ugtP, which encodes diglucosyldiacylglycerol synthase, induces daptomycin resistance in B. subtilis. Specifically, overexpression of ugtP resulted in increased levels of diglucosyldiacylglycerol (Glc2DAG) and decreased levels of acidic phospholipids cardiolipin and PG, as well as the basic phospholipid lysylphosphatidylglycerol. However, ugtP overexpression did not alter the cell surface charge and the susceptibility to the cationic antimicrobial peptide nisin or the cationic surfactant hexadecyltrimethylammonium bromide. Furthermore, by serial passaging in the presence of daptomycin, we obtained daptomycin-resistant mutants carrying ugtP mutations. These mutants showed increased levels of Glc2DAG and a >4-fold increase in the minimum inhibitory concentration of daptomycin. These results suggest that increased Glc2DAG levels, driven by ugtP overexpression, modify the phospholipid composition and confer daptomycin resistance in B. subtilis without altering the cell surface charge of the bacteria. en-copyright= kn-copyright= en-aut-name=YamamotoRyogo en-aut-sei=Yamamoto en-aut-mei=Ryogo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=IshikawaKazuya en-aut-sei=Ishikawa en-aut-mei=Kazuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MiyoshiYusuke en-aut-sei=Miyoshi en-aut-mei=Yusuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=FurutaKazuyuki en-aut-sei=Furuta en-aut-mei=Kazuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MiyoshiShin-Ichi en-aut-sei=Miyoshi en-aut-mei=Shin-Ichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KaitoChikara en-aut-sei=Kaito en-aut-mei=Chikara kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=6 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=diglucosyldiacylglycerol kn-keyword=diglucosyldiacylglycerol en-keyword=daptomycin kn-keyword=daptomycin en-keyword=phospholipid kn-keyword=phospholipid END start-ver=1.4 cd-journal=joma no-vol=171 cd-vols= no-issue=1 article-no= start-page=18 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20251210 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Novel Escherichia coli phages representing a distinct genus within the subfamily Stephanstirmvirinae: genome and host range characteristics en-subtitle= kn-subtitle= en-abstract= kn-abstract=Bacteriophages play crucial roles in microbial ecosystems and have potential for biotechnological applications. However, our understanding of culturable phages remains limited. In this study, we characterized six novel Escherichia coli phages isolated from pig farm wastewater and urban sewage, using comprehensive genomic, morphological, and host-range analysis. Using multiple comparative approaches, including gene-sharing network analysis, average nucleotide identity (ANI), and nucleotide intergenomic similarity (NIS), we demonstrated that five of these phages form a distinct group within the subfamily Stephanstirmvirinae, potentially representing a novel genus, for which we propose the name "Wecvirush. We further propose that these phages, each of which exhibits a unique host range pattern, should be classified in two distinct species within the proposed genus. This host specificity is reflected in differences in the amino acid sequences of tail fibers, which are crucial for infection. The remaining phage, which was not classified as a wecvirus, exhibited characteristics that challenged the current classification criteria, highlighting the need for more-flexible taxonomic approaches. These findings expand our understanding of phage diversity within the subfamily Stephanstirmvirinae and contribute to the evolving phage taxonomy framework. en-copyright= kn-copyright= en-aut-name=KanekoTomoyoshi en-aut-sei=Kaneko en-aut-mei=Tomoyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=UchiyamaJumpei en-aut-sei=Uchiyama en-aut-mei=Jumpei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=OsakaToshifumi en-aut-sei=Osaka en-aut-mei=Toshifumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TsunedaSatoshi en-aut-sei=Tsuneda en-aut-mei=Satoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= affil-num=1 en-affil=Department of Life Science and Medical Bioscience, Waseda University kn-affil= affil-num=2 en-affil=Department of Bacteriology, Graduate School of Medicine Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Microbiology and Immunology, Tokyo Womenfs Medical University kn-affil= affil-num=4 en-affil=Department of Life Science and Medical Bioscience, Waseda University kn-affil= END start-ver=1.4 cd-journal=joma no-vol=520 cd-vols= no-issue= article-no= start-page=41 end-page=52 dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=202504 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Tunicate-specific protein Epi-1 is essential for conferring hydrophilicity to the larval tunic in the ascidian Ciona en-subtitle= kn-subtitle= en-abstract= kn-abstract=Animals must avoid adhesion to objects in the environment to maintain their mobility and independence. The marine invertebrate chordate ascidians are characterized by an acellular matrix tunic enveloping their entire body for protection and swimming. The tunic of ascidian larvae consists of a surface cuticle layer and inner matrix layer. Hydrophilic substances coat the cuticle; this modification is thought to be for preventing adhesion. However, the molecule responsible for regulating this modification has not been clarified. We here found that the tunicate-specific protein Epi-1 is responsible for preventing adhesiveness of the tunic in the ascidian Ciona intestinalis Type A. Ciona mutants with homozygous knockouts of Epi-1 exhibited adhesion to plastic plates and to other individuals. The cuticle of the Epi-1 mutants was fragile, and it lost the glycosaminoglycans supplied by test cells, the accessory cells that normally attach to the tunic surface. Although it has an apparent signal peptide for membrane trafficking, we showed that the Epi-1 protein is localized to the cytosol of the epidermal cells. Our study suggests that the emergence of the tunicate-specific protein Epi-1 made the tunic less adhesive, providing a selective advantage for the last common tunicate ancestor. en-copyright= kn-copyright= en-aut-name=KuroiwaKazu en-aut-sei=Kuroiwa en-aut-mei=Kazu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=Mita-YoshidaKaoru en-aut-sei=Mita-Yoshida en-aut-mei=Kaoru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=HamadaMayuko en-aut-sei=Hamada en-aut-mei=Mayuko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=HozumiAkiko en-aut-sei=Hozumi en-aut-mei=Akiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=NishinoAtsuo S. en-aut-sei=Nishino en-aut-mei=Atsuo S. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=SasakuraYasunori en-aut-sei=Sasakura en-aut-mei=Yasunori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Shimoda Marine Research Center, University of Tsukuba kn-affil= affil-num=2 en-affil=Shimoda Marine Research Center, University of Tsukuba kn-affil= affil-num=3 en-affil=Ushimado Marine Institute, Okayama University kn-affil= affil-num=4 en-affil=Shimoda Marine Research Center, University of Tsukuba kn-affil= affil-num=5 en-affil=Department of Biology, Faculty of Agriculture and Life Science, Hirosaki University kn-affil= affil-num=6 en-affil=Shimoda Marine Research Center, University of Tsukuba kn-affil= en-keyword=Ascidian kn-keyword=Ascidian en-keyword=Ciona kn-keyword=Ciona en-keyword=Tunic kn-keyword=Tunic en-keyword=Epidermis kn-keyword=Epidermis en-keyword=Cellulose kn-keyword=Cellulose en-keyword=Glycosaminoglycan kn-keyword=Glycosaminoglycan END start-ver=1.4 cd-journal=joma no-vol=40 cd-vols= no-issue=52 article-no= start-page=27314 end-page=27322 dt-received= dt-revised= dt-accepted= dt-pub-year=2024 dt-pub=20241219 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Formation of Nonspherical Cellulose Acetate Microparticles under Microflow en-subtitle= kn-subtitle= en-abstract= kn-abstract=Nonspherical particles have gained significant interest owing to their unique shapes and large specific surface areas, making them suitable for a wide range of applications, such as drug delivery, catalysis, and adsorption. However, conventional methods for preparing nonspherical particles face certain limitations. In this study, we propose a simple method for fabricating nonspherical cellulose acetate (CA) microparticles using a microfluidic device in which droplets undergo rapid diffusion in a continuous aqueous phase. The influence of variations in the flow rate ratio and continuous phase composition on the dimensionless P?clet number (Pe) within the droplet and shape of the resultant particles is investigated. Pe is critical, because it indicates the balance between polymer diffusion and droplet shrinkage dynamics. Our findings reveal that increasing the flow rate ratio and reducing the methyl acetate concentration in the continuous phase lead to faster droplet shrinkage and an increased Pe. A high Pe (>100) suggests that the reduction of the droplet interface predominates over polymer diffusion, resulting in the formation of a viscous layer near the droplet surface, which subsequently leads to nonspherical particle shapes (such as bowl-like or biconcave structures). In situ time-lapse observations of droplets from the top and side of a microchannel reveal that the formation of a viscous layer near the droplet surface and the deformation of the droplet, influenced by the z-axis location of the droplets during particle formation, ultimately determine the final particle shape. Based on these observations, a linear correlation between the initial conditions, i.e., the Pe and z-axis location at which the viscous layer formed, is established, enabling the prediction of the particle structure. In summary, the present study enhances the understanding of shape control in microfluidic particle formation and offers a novel guideline for the fabrication of spherical and nonspherical particles. en-copyright= kn-copyright= en-aut-name=MoriKurumi en-aut-sei=Mori en-aut-mei=Kurumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=WatanabeTakaichi en-aut-sei=Watanabe en-aut-mei=Takaichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=OnoTsutomu en-aut-sei=Ono en-aut-mei=Tsutomu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= affil-num=1 en-affil=Department of Applied Chemistry, Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Department of Applied Chemistry, Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=3 en-affil=Department of Applied Chemistry, Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= END start-ver=1.4 cd-journal=joma no-vol=88 cd-vols= no-issue=10 article-no= start-page=1199 end-page=1202 dt-received= dt-revised= dt-accepted= dt-pub-year=2024 dt-pub=20240711 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Evaluation of quercetin as a potential cytoprotector against acetaldehyde using the cultured hepatocyte model with aldehyde dehydrogenase isozyme deficiency en-subtitle= kn-subtitle= en-abstract= kn-abstract=Protective effect of quercetin against acetaldehyde was evaluated using the cultured hepatocyte models with aldehyde dehydrogenase (ALDH) isozyme deficiency (aldh2-kd and aldh1a1-kd). The quercetin-induced cytoprotection against acetaldehyde in the ALDH1A1-deficient mutant (aldh1a1-kd) was weaker than that in the wild type. Furthermore, quercetin did not enhance the ALDH activity in aldh1a1-kd cells, suggesting that ALDH1A1 is involved in quercetin-induced cytoprotection. en-copyright= kn-copyright= en-aut-name=XuYuhang en-aut-sei=Xu en-aut-mei=Yuhang kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=SawamotoTakeshi en-aut-sei=Sawamoto en-aut-mei=Takeshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=SunRuitong en-aut-sei=Sun en-aut-mei=Ruitong kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=IshikuraAki en-aut-sei=Ishikura en-aut-mei=Aki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MunemasaShintaro en-aut-sei=Munemasa en-aut-mei=Shintaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MurataYoshiyuki en-aut-sei=Murata en-aut-mei=Yoshiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=SatohAyano en-aut-sei=Satoh en-aut-mei=Ayano kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MatsumotoAkiko en-aut-sei=Matsumoto en-aut-mei=Akiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=NakamuraToshiyuki en-aut-sei=Nakamura en-aut-mei=Toshiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=NakamuraYoshimasa en-aut-sei=Nakamura en-aut-mei=Yoshimasa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=Graduate School of Environmental and Life Science, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Environmental and Life Science, Okayama University kn-affil= affil-num=4 en-affil=Graduate School of Environmental and Life Science, Okayama University kn-affil= affil-num=5 en-affil=Graduate School of Environmental and Life Science, Okayama University kn-affil= affil-num=6 en-affil=Graduate School of Environmental and Life Science, Okayama University kn-affil= affil-num=7 en-affil=Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University kn-affil= affil-num=8 en-affil=Department of Social and Environmental Medicine, Saga University kn-affil= affil-num=9 en-affil=Graduate School of Environmental and Life Science, Okayama University kn-affil= affil-num=10 en-affil=Graduate School of Environmental and Life Science, Okayama University kn-affil= en-keyword=quercetin kn-keyword=quercetin en-keyword=acetaldehyde kn-keyword=acetaldehyde en-keyword=aldehyde dehydrogenase kn-keyword=aldehyde dehydrogenase en-keyword=cytoprotection kn-keyword=cytoprotection END start-ver=1.4 cd-journal=joma no-vol=88 cd-vols= no-issue=8 article-no= start-page=918 end-page=922 dt-received= dt-revised= dt-accepted= dt-pub-year=2024 dt-pub=20240522 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Negative regulation of chitosan-induced stomatal closure by glutathione in Arabidopsis thaliana en-subtitle= kn-subtitle= en-abstract= kn-abstract=Chitosan (CHT) is a deacylated derivative of chitin and improves growth and yield performance, activates defensive genes, and also induces stomatal closure in plants. Glutathione (GSH) has significant functions in the growth, development, defense systems, signaling, and gene expression. GSH negatively regulates abscisic acid-, methyl jasmonate-, and salicylic acid-induced stomatal closure. However, the negative regulation by GSH of CHT-induced stomatal closure is still unknown. Regulation of CHT-induced stomatal closure by GSH in guard cells was investigated using two GSH-deficient mutants, cad2-1 and chlorina 1-1 (ch1-1), and a GSH-decreasing chemical, 1-chloro-2,4-dinitrobenzene (CDNB). The cad2-1 and ch1-1 mutations and CDNB treatment enhanced CHT-induced stomatal closure. Treatment with glutathione monoethyl ester restored the GSH level in the guard cells of cad2-1 and ch1-1 and complemented the stomatal phenotype of the mutants. These results indicate that GSH negatively regulates CHT-induced stomatal closure in Arabidopsis thaliana. en-copyright= kn-copyright= en-aut-name=JahanIsrat en-aut-sei=Jahan en-aut-mei=Israt kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MunemasaShintaro en-aut-sei=Munemasa en-aut-mei=Shintaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=NakamuraToshiyuki en-aut-sei=Nakamura en-aut-mei=Toshiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NakamuraYoshimasa en-aut-sei=Nakamura en-aut-mei=Yoshimasa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MurataYoshiyuki en-aut-sei=Murata en-aut-mei=Yoshiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= affil-num=1 en-affil=Graduate School of Environmental and Life Science, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Environmental and Life Science, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Environmental and Life Science, Okayama University kn-affil= affil-num=4 en-affil=Graduate School of Environmental and Life Science, Okayama University kn-affil= affil-num=5 en-affil=Graduate School of Environmental and Life Science, Okayama University kn-affil= en-keyword=Arabidopsis thaliana kn-keyword=Arabidopsis thaliana en-keyword=chitosan kn-keyword=chitosan en-keyword=glutathione kn-keyword=glutathione en-keyword=stomatal closure kn-keyword=stomatal closure END start-ver=1.4 cd-journal=joma no-vol=13 cd-vols= no-issue=11 article-no= start-page=8052 end-page=8058 dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=2025 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Enhanced capacity of aluminum-ion batteries by adjusting the average pore size of the porous carbon cathode en-subtitle= kn-subtitle= en-abstract= kn-abstract=Lithium-ion batteries (LIBs) are widely used but with the increasing scarcity and uneven distribution of global lithium resources, there is a need to explore alternative battery technologies. Due to its abundance, low cost, and high theoretical capacity, aluminum is a strong candidate for metal anodes, making aluminum-ion batteries (AIBs) an area of considerable interest. Current mainstream research focuses on ionic liquid electrolytes, which offer a wide electrochemical window and high ionic conductivity. Carbon materials are ideal cathode candidates due to their low cost, abundance, and high voltage platform. AIBs using carbon materials typically exhibit low discharge capacity. This study addressed the challenge of improving the discharge capacity of carbon-based cathodes in AIBs. By using porous carbon (PC) materials with varying specific surface areas, average pore sizes, and total pore volumes as cathodes, average pore size was found to impact capacity. This contradicts the contention that larger specific surface areas result in higher capacities. There is a key difference in ion behavior: whereas aluminum chloride ions intercalate into layered graphite structures, they do not intercalate into PC materials but are adsorbed to the surface. By adjusting the average pore size, it is possible to increase the discharge capacity of AIBs, challenging the traditional emphasis on specific surface area. This research does not fully solve the problem of low discharge capacity in carbon-based cathodes, but provides a new perspective on the role of pore size in enhancing battery performance, offering valuable insights for future electrode design. en-copyright= kn-copyright= en-aut-name=ChenYifeng en-aut-sei=Chen en-aut-mei=Yifeng kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=SuzukiHiroo en-aut-sei=Suzuki en-aut-mei=Hiroo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=FukumotoShu en-aut-sei=Fukumoto en-aut-mei=Shu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NakanoChiyu en-aut-sei=Nakano en-aut-mei=Chiyu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=NishikawaTakeshi en-aut-sei=Nishikawa en-aut-mei=Takeshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=UmezawaShigeyuki en-aut-sei=Umezawa en-aut-mei=Shigeyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=HayashiYasuhiko en-aut-sei=Hayashi en-aut-mei=Yasuhiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= affil-num=1 en-affil=Graduate School of Environmental, Life, Natural Science, and Technology, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Environmental, Life, Natural Science, and Technology, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Environmental, Life, Natural Science, and Technology, Okayama University kn-affil= affil-num=4 en-affil=Department of Comprehensive Technical Solutions, Okayama University kn-affil= affil-num=5 en-affil=Graduate School of Environmental, Life, Natural Science, and Technology, Okayama University kn-affil= affil-num=6 en-affil=Seiwa Electric Mfg. Co., Ltd kn-affil= affil-num=7 en-affil=Graduate School of Environmental, Life, Natural Science, and Technology, Okayama University kn-affil= END start-ver=1.4 cd-journal=joma no-vol=114 cd-vols= no-issue=2 article-no= start-page=303 end-page=309 dt-received= dt-revised= dt-accepted= dt-pub-year=2024 dt-pub=20241009 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Outdoor playing during preschool was associated with a reduced risk of school-age obesity in Japan en-subtitle= kn-subtitle= en-abstract= kn-abstract=Aim: This study investigated the association between outdoor play habits during preschool and school-age obesity.
Methods: We conducted a longitudinal cohort study of all children born in Japan during 2?weeks in January and July 2001. We defined outdoor play habits at age 2.5?years (third survey) as exposure, while parent-reported height and weight at age 7?years (seventh survey) were defined as overweight and obesity status using the WHO reference. Logistic regression models were used to estimate odds ratios (ORs) for associations between preschool outdoor play habits and school-age obesity, adjusting for parental and child factors.
Results: Of 53?575 children born, 42?812 had data on outdoor play habits at age 2.5?years, with 91% (38?970) having such habits. At age 7?years, 31?743/42?812 (74%) children had height and weight data, with 3249/31?743 (10%) classified as overweight or obesity (BMI SD score??1.0). Outdoor play habits were negatively associated with obesity (adjusted OR 0.85, 95% confidence interval (CI): 0.74?0.97).
Conclusion: Outdoor play habits in early preschool years are associated with a reduced risk of school-age obesity. Parents and caregivers may consider encouraging their children to outdoor play habits at an early age to help prevent obesity later in life. en-copyright= kn-copyright= en-aut-name=TsugeTakahiro en-aut-sei=Tsuge en-aut-mei=Takahiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MatsumotoNaomi en-aut-sei=Matsumoto en-aut-mei=Naomi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=TakaoSoshi en-aut-sei=Takao en-aut-mei=Soshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=YorifujiTakashi en-aut-sei=Yorifuji en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= affil-num=1 en-affil=Department of Epidemiology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Department of Epidemiology, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Epidemiology, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Department of Epidemiology, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=outdoor play habits kn-keyword=outdoor play habits en-keyword=physical activity kn-keyword=physical activity en-keyword=preschool kn-keyword=preschool en-keyword=school-aged obesity kn-keyword=school-aged obesity en-keyword=socioeconomic status kn-keyword=socioeconomic status END start-ver=1.4 cd-journal=joma no-vol=64 cd-vols= no-issue=11 article-no= start-page=e202420949 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250214 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Stereoselective Preparation and Palladium-Catalyzed Suzuki?Miyaura Cross-Coupling of Alkenyl Sulfoximines en-subtitle= kn-subtitle= en-abstract= kn-abstract=Although numerous transition-metal catalyzed cross-coupling reactions of alkenyl electrophiles with a sulfur(VI) leaving group, mainly alkenyl sulfones, have been developed, most rely heavily on highly nucleophilic Grignard reagents, and the use of organoboron reagents remains challenging. We report herein facile preparation and the following Pd-catalyzed Suzuki?Miyaura cross-coupling reaction of alkenyl sulfoximine, a monoaza analog of sulfone. The condensation of alkyl sulfoximine with aldehydes, developed in this study, makes alkenyl sulfoximines more readily available. The resulting alkenes undergo an unprecedented oxidative addition of the C?S bond to the Pd center. This cross-coupling proceeds with retention of its original stereochemistry and provided alkenes bearing three different functionalities in a stereoselective fashion. DFT calculations highlight the critical role of boronic acid and in situ-generated boroxines in facilitating this transformation. en-copyright= kn-copyright= en-aut-name=YasuiKosuke en-aut-sei=Yasui en-aut-mei=Kosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TomishimaYuichiro en-aut-sei=Tomishima en-aut-mei=Yuichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MiuraTomoya en-aut-sei=Miura en-aut-mei=Tomoya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=YamazakiKen en-aut-sei=Yamazaki en-aut-mei=Ken kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=HiranoKoji en-aut-sei=Hirano en-aut-mei=Koji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= affil-num=1 en-affil=Department of Applied Chemistry Graduate School of Engineering, Osaka University kn-affil= affil-num=2 en-affil=Department of Applied Chemistry Graduate School of Engineering, Osaka University kn-affil= affil-num=3 en-affil=Division of Applied Chemistry, Okayama University kn-affil= affil-num=4 en-affil=Division of Applied Chemistry, Okayama University kn-affil= affil-num=5 en-affil=Department of Applied Chemistry Graduate School of Engineering, Osaka University kn-affil= en-keyword=Sulfoximines kn-keyword=Sulfoximines en-keyword=Condensation kn-keyword=Condensation en-keyword=Cross-coupling kn-keyword=Cross-coupling en-keyword=Trisubstituted alkenes kn-keyword=Trisubstituted alkenes en-keyword=Stereoselectivity kn-keyword=Stereoselectivity END start-ver=1.4 cd-journal=joma no-vol=18 cd-vols= no-issue=7 article-no= start-page=e112232 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260707 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Reappraisal of the Entity of Pediatric Uveitis: Bilateral Iridocyclitis With Retinal Capillaritis (BIRC) in Juveniles in 18 Additional Cases en-subtitle= kn-subtitle= en-abstract= kn-abstract=Objectives: Bilateral iridocyclitis with retinal capillaritis (BIRC) in juveniles is a newly recognized ?????entity of juvenile chronic uveitis with no systemic involvement. In this study, 18 additional consecutive patients with BIRC were reported to show that the entity would be useful in the differential diagnosis.
Methods: Clinical features were retrospectively reviewed in 18 consecutive patients diagnosed with BIRC in juveniles at Okayama University Hospital, Okayama, Japan, between 1996 and 2025.
Results: The 18 patients comprised 6 males and 12 females, with an age at onset ranging from 9 to 16 years (median, 13 years). All patients presented with aqueous cells and mutton-fat keratic precipitates in both eyes, and fluorescein angiography revealed varying degrees of optic disc leakage and retinal capillary leakage in the midperipheral to peripheral fundus of both eyes. None had systemic symptoms, including skin rashes, joint pain, or fever, and no abnormalities were detected on blood examinations, urinalysis, or plain chest x-rays. Oral prednisolone, tapered from 30 mg daily, together with topical 0.1% betamethasone four times daily, was administered to five patients: two with optic disc edema and three with macular edema in both eyes or the unilateral eye. The remaining 13 patients were treated with topical 0.1% betamethasone eye drops alone. In patients who developed elevated intraocular pressure, often due to a steroid response, the instillation of topical 0.1% betamethasone was reduced to twice daily, or intraocular pressure-lowering eye drops were used in combination. In two patients who showed relapse of unilateral macular edema after oral prednisolone was tapered or discontinued, oral colchicine (1 mg daily) was introduced, resulting in the subsidence of macular edema. Bilateral uveitis in all 18 patients subsided within 6 months to a few years until 19 years of age, and all topical medications were discontinued, with relapse occurring in only one patient.
Conclusions: BIRC in juveniles should be included in the differential diagnosis for school-age children and young adolescents. BIRC follows a chronic course of a few years and subsides completely with a good prognosis. In cases of macular edema or optic disc edema that affects vision, oral corticosteroid treatment is recommended, whereas patients with no sight-threatening signs can be treated with topical corticosteroid eye drops alone. The entity of BIRC may be distinct from juvenile chronic iridocyclitis in young girls with onset at preschool age, which shares common features with juvenile idiopathic arthritis-associated uveitis. en-copyright= kn-copyright= en-aut-name=MatsuoToshihiko en-aut-sei=Matsuo en-aut-mei=Toshihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= affil-num=1 en-affil=Ophthalmology, Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University kn-affil= en-keyword=bilateral iridocyclitis with retinal capillaritis (birc) kn-keyword=bilateral iridocyclitis with retinal capillaritis (birc) en-keyword=colchicine kn-keyword=colchicine en-keyword=corticosteroid kn-keyword=corticosteroid en-keyword=fluorescein angiography kn-keyword=fluorescein angiography en-keyword=juvenile kn-keyword=juvenile en-keyword=juvenile chronic iridocyclitis (jci) kn-keyword=juvenile chronic iridocyclitis (jci) en-keyword=juvenile idiopathic arthritis (jia) kn-keyword=juvenile idiopathic arthritis (jia) en-keyword=macular edema kn-keyword=macular edema en-keyword=optical coherence tomography kn-keyword=optical coherence tomography en-keyword=optic disc edema kn-keyword=optic disc edema END start-ver=1.4 cd-journal=joma no-vol=57 cd-vols= no-issue=04 article-no= start-page=321 end-page=329 dt-received= dt-revised= dt-accepted= dt-pub-year=2024 dt-pub=20241025 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Efficacy and safety of endoscopic ultrasonography-guided ethanol injections of small pancreatic neuroendocrine neoplasms: a prospective multicenter study en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background Endoscopic ultrasonography (EUS)-guided ethanol injection (EI) has recently been introduced as one of the management strategies for pancreatic neuroendocrine neoplasms (PNENs); however, its role as a surgical alternative is unclear. We evaluated the efficacy and safety of EUS-EI in treating small PNENs through a prospective multicenter study.
Methods Patients with grade 1 tumors of ?15 mm confirmed by pathology were included. The primary end point assessed efficacy and safety, measuring complete ablation using computed tomography at 1 and 6 months, prevention of adverse events (AEs) within 1 month, severe pancreatic fistula at 1 month, and incidence/worsening of diabetes mellitus (DM) at 6 months. The composite end point of EUS-EI was compared with that of historical results of a study based on surgical treatment.
Results 25 patients with PNENs, with a median tumor size of 10.1 mm, were treated using EUS-EI. The composite primary end point was achieved by 76.0% of patients (19/25; 95%CI 54.9%?90.6%), a proportion significantly higher than that of surgical treatment (P = 0.008). Regarding efficacy, 88.0% (22/25) of patients achieved complete ablation at 1 and 6 months (95%CI 68.8%?97.5%). Regarding safety, 96.0% (24/25) of patients had no severe AEs within 1 month (95%CI 79.7%?99.9%). No patients had severe pancreatic fistulas at 1 month, and 84.0% (21/25) had no incidence or exacerbation, or both, of DM at 6 months (95%CI 63.9%?95.5%).
Conclusion EUS-EI is safe and could be a potent treatment option for patients with small PNENs. en-copyright= kn-copyright= en-aut-name=MatsumotoKazuyuki en-aut-sei=Matsumoto en-aut-mei=Kazuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KatoHironari en-aut-sei=Kato en-aut-mei=Hironari kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=ItoiTakao en-aut-sei=Itoi en-aut-mei=Takao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KitanoMasayuki en-aut-sei=Kitano en-aut-mei=Masayuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=HaraKazuo en-aut-sei=Hara en-aut-mei=Kazuo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KuwataniMasaki en-aut-sei=Kuwatani en-aut-mei=Masaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=TakenakaMamoru en-aut-sei=Takenaka en-aut-mei=Mamoru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=AshidaReiko en-aut-sei=Ashida en-aut-mei=Reiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=MukaiShuntaro en-aut-sei=Mukai en-aut-mei=Shuntaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=OkunoNozomi en-aut-sei=Okuno en-aut-mei=Nozomi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=KawakuboKazumichi en-aut-sei=Kawakubo en-aut-mei=Kazumichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=YamazakiTatsuhiro en-aut-sei=Yamazaki en-aut-mei=Tatsuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=SakuraiJun en-aut-sei=Sakurai en-aut-mei=Jun kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=NakatsukaYuki en-aut-sei=Nakatsuka en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=YoshidaMichihiro en-aut-sei=Yoshida en-aut-mei=Michihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=OtsukaMotoyuki en-aut-sei=Otsuka en-aut-mei=Motoyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= affil-num=1 en-affil=Gastroenterology and Hepatology, Okayama University Hospital kn-affil= affil-num=2 en-affil=Gastroenterology and Hepatology, Okayama University Hospital kn-affil= affil-num=3 en-affil=Gastroenterology and Hepatology, Tokyo Medical University kn-affil= affil-num=4 en-affil=Second Department of Internal Medicine, Wakayama Medical University kn-affil= affil-num=5 en-affil=Gastroenterology, Aichi Cancer Center Hospital kn-affil= affil-num=6 en-affil=Gastroenterology and Hepatology, Hokkaido University Hospital kn-affil= affil-num=7 en-affil=Gastroenterology and Hepatology, Kindai University Faculty of Medicine Graduate School of Medical Sciences kn-affil= affil-num=8 en-affil=Second Department of Internal Medicine, Wakayama Medical University kn-affil= affil-num=9 en-affil=Gastroenterology and Hepatology, Tokyo Medical University kn-affil= affil-num=10 en-affil=Gastroenterology, Aichi Cancer Center Hospital kn-affil= affil-num=11 en-affil=Gastroenterology and Hepatology, Hokkaido University Hospital kn-affil= affil-num=12 en-affil=Gastroenterology and Hepatology, Okayama University Hospital kn-affil= affil-num=13 en-affil=Center for Innovative Clinical Medicine, Okayama University Hospital kn-affil= affil-num=14 en-affil=Center for Innovative Clinical Medicine, Okayama University Hospital kn-affil= affil-num=15 en-affil=Center for Innovative Clinical Medicine, Okayama University Hospital kn-affil= affil-num=16 en-affil=Gastroenterology and Hepatology, Okayama University Hospital kn-affil= END start-ver=1.4 cd-journal=joma no-vol=43 cd-vols= no-issue=16 article-no= start-page=1886 end-page=1897 dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=202506 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Methotrexate, Doxorubicin, and Cisplatin Versus Methotrexate, Doxorubicin, and Cisplatin + Ifosfamide in Poor Responders to Preoperative Chemotherapy for Newly Diagnosed High-Grade Osteosarcoma (JCOG0905): A Multicenter, Open-Label, Randomized Trial en-subtitle= kn-subtitle= en-abstract= kn-abstract=Purpose Our previous NECO phase II studies on high-grade osteosarcoma suggested that administering ifosfamide (IF; 16 g/m2 [4g/m2 once on day 1, then 2g/m2 once on days 2-7] ~ six) to patients showing a poor response (PrRsp) to preoperative chemotherapy with methotrexate, doxorubicin, and cisplatin (MAP) improves their prognoses. In this Japan Clinical Oncology Group (JCOG) study, JCOG0905, we aimed to investigate the efficacy and safety of IF in patients with PrRsp.
Methods JCOG0905 is a multicenter, open-label, multi-institutional, randomized trial. Eligible patients (50 years and younger) had resectable, high-grade osteosarcoma (stage II or III, Union for International Cancer Control TNM) of the extremities, limb girdles, and thoracic wall. After two MAP cycles and tumor resection, patients with PrRsp were randomly assigned to either the MAP or MAP plus 15 g/m2 (3g/m2 once daily on days 1-5) ~ six IF (MAP + IF [MAPIF]) group. The primary end point was disease-free survival (DFS); secondary end points were overall survival (OS) and safety. The planned sample size was 100 patients with a one-sided ƒ¿ of .1 and a power of 0.7, assuming a 3-year DFS of 50% and 65% for MAP and MAPIF, respectively. This trial is registered with the Japan Registry of Clinical Trials (jRCT; jRCTs031180126).
Results Of the 287 patients registered between February 2010 and August 2020, 51 and 52 patients with PrRsp were assigned to the MAP and MAPIF groups, respectively. As of March 2022, DFS did not differ between groups (hazard ratio [HR], 1.05 [95% CI, 0.55 to 1.98]) and OS was numerically inferior in the MAPIF group (HR, 1.48 [95% CI, 0.68 to 3.22]). Nine and zero patients in the MAPIF and MAP groups discontinued treatment because of adverse events, respectively.
Conclusion Evidence from JCOG0905 does not support the addition of IF for patients with PrRsp. en-copyright= kn-copyright= en-aut-name=HiragaHiroaki en-aut-sei=Hiraga en-aut-mei=Hiroaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MachidaRyunosuke en-aut-sei=Machida en-aut-mei=Ryunosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KawaiAkira en-aut-sei=Kawai en-aut-mei=Akira kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KunisadaToshiyuki en-aut-sei=Kunisada en-aut-mei=Toshiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=YonemotoTsukasa en-aut-sei=Yonemoto en-aut-mei=Tsukasa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=EndoMakoto en-aut-sei=Endo en-aut-mei=Makoto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=NishidaYoshihiro en-aut-sei=Nishida en-aut-mei=Yoshihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=NaganoAkihito en-aut-sei=Nagano en-aut-mei=Akihito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=AeKeisuke en-aut-sei=Ae en-aut-mei=Keisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=YoshidaShinichirou en-aut-sei=Yoshida en-aut-mei=Shinichirou kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=AsanumaKunihiro en-aut-sei=Asanuma en-aut-mei=Kunihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=ToguchidaJunya en-aut-sei=Toguchida en-aut-mei=Junya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=FurutaTaisuke en-aut-sei=Furuta en-aut-mei=Taisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=NakayamaRobert en-aut-sei=Nakayama en-aut-mei=Robert kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=AkisueToshihiro en-aut-sei=Akisue en-aut-mei=Toshihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=HirumaToru en-aut-sei=Hiruma en-aut-mei=Toru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=MoriiTakeshi en-aut-sei=Morii en-aut-mei=Takeshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=NishimuraHideki en-aut-sei=Nishimura en-aut-mei=Hideki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= en-aut-name=HiraokaKoji en-aut-sei=Hiraoka en-aut-mei=Koji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=19 ORCID= en-aut-name=TakeyamaMasanobu en-aut-sei=Takeyama en-aut-mei=Masanobu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=20 ORCID= en-aut-name=EmoriMakoto en-aut-sei=Emori en-aut-mei=Makoto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=21 ORCID= en-aut-name=TsukushiSatoshi en-aut-sei=Tsukushi en-aut-mei=Satoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=22 ORCID= en-aut-name=HatanoHiroshi en-aut-sei=Hatano en-aut-mei=Hiroshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=23 ORCID= en-aut-name=KawashimaHiroyuki en-aut-sei=Kawashima en-aut-mei=Hiroyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=24 ORCID= en-aut-name=IsuKazuo en-aut-sei=Isu en-aut-mei=Kazuo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=25 ORCID= en-aut-name=TanakaKazuhiro en-aut-sei=Tanaka en-aut-mei=Kazuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=26 ORCID= en-aut-name=KataokaTomoko en-aut-sei=Kataoka en-aut-mei=Tomoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=27 ORCID= en-aut-name=FukudaHaruhiko en-aut-sei=Fukuda en-aut-mei=Haruhiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=28 ORCID= en-aut-name=IwamotoYukihide en-aut-sei=Iwamoto en-aut-mei=Yukihide kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=29 ORCID= en-aut-name=OzakiToshifumi en-aut-sei=Ozaki en-aut-mei=Toshifumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=30 ORCID= affil-num=1 en-affil=Musculoskeletal Oncology, NHO Hokkaido Cancer Center kn-affil= affil-num=2 en-affil=Japan Clinical Oncology Group Data Center/Operations Office, National Cancer Center Hospital kn-affil= affil-num=3 en-affil=Musculoskeletal Oncology, National Cancer Center Hospital kn-affil= affil-num=4 en-affil=Orthopaedic Surgery, Faculty of Medicine, Okayama University kn-affil= affil-num=5 en-affil=Orthopaedic Surgery, Chiba Cancer Center kn-affil= affil-num=6 en-affil=Orthopaedic Surgery, Graduate School of Medical Sciences, Kyushu University kn-affil= affil-num=7 en-affil=Department of Rehabilitation Medicine, Nagoya University Hospital kn-affil= affil-num=8 en-affil=Orthopaedic Surgery, Gifu University School of Medicine kn-affil= affil-num=9 en-affil=Orthopaedic Surgery, Cancer Institute Hospital kn-affil= affil-num=10 en-affil=Orthopaedic Surgery, Tohoku University Graduate School of Medicine kn-affil= affil-num=11 en-affil=Orthopaedic Surgery, Mie University kn-affil= affil-num=12 en-affil=Department of Tissue Regeneration, Center for Induced Pluripotent Stem Cell Research and Application, Institute for Frontier Medical Sciences, Kyoto University kn-affil= affil-num=13 en-affil=Orthopaedic Surgery, Hiroshima University kn-affil= affil-num=14 en-affil=Department of Orthopaedic Surgery, Keio University School of Medicine kn-affil= affil-num=15 en-affil=Orthopaedic Surgery, Kobe University kn-affil= affil-num=16 en-affil=Bone and Soft Tissue Tumour Surgery, Kanagawa Cancer Center kn-affil= affil-num=17 en-affil=Orthopaedic Surgery, Kyorin University kn-affil= affil-num=18 en-affil=Orthopaedic Surgery, Kagawa University Hospital kn-affil= affil-num=19 en-affil=Orthopaedic Surgery, Kurume University Hospital kn-affil= affil-num=20 en-affil=Orthopaedic Surgery, Yokohama City University Hospital kn-affil= affil-num=21 en-affil=Orthopaedic Surgery, Sapporo Medical University Hospital kn-affil= affil-num=22 en-affil=Orthopaedic Surgery, Aichi Cancer Center kn-affil= affil-num=23 en-affil=Musculoskeletal Oncology, Niigata Cancer Center Hospital kn-affil= affil-num=24 en-affil=Orthopaedic Surgery, Niigata University Medical & Dental Hospital kn-affil= affil-num=25 en-affil=Orthopaedic Surgery, Higashi Sapporo Hospital kn-affil= affil-num=26 en-affil=Advanced Medical Sciences, Oita University Faculty of Medicine kn-affil= affil-num=27 en-affil=Japan Clinical Oncology Group Data Center/Operations Office, National Cancer Center Hospital kn-affil= affil-num=28 en-affil=Japan Clinical Oncology Group Data Center/Operations Office, National Cancer Center Hospital kn-affil= affil-num=29 en-affil=Orthopaedic Surgery, Kyushu Rosai Hospital kn-affil= affil-num=30 en-affil=Orthopaedic Surgery, Faculty of Medicine, Okayama University kn-affil= END start-ver=1.4 cd-journal=joma no-vol=226 cd-vols= no-issue= article-no= start-page=105997 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=202505 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Costly subjective learning en-subtitle= kn-subtitle= en-abstract= kn-abstract=We examine the behavioral foundation of rational inattention within a menu-choice framework. Unlike previous studies, our approach enables the unique identification of nonadditive information costs. The nonadditivity of information costs makes the effective cost inherently dependent on benefits of information. In contrast to additive cost models, this feature may lead to a violation of the preference for early resolution of menu uncertainty. Early resolution is typically preferable as it allows the agent to fine-tune information for relevant menus. However, if the effective cost function is convex in benefits of information, late resolution may reduce the effective information costs. The violation occurs when this cost-reduction effect outweighs the benefits of early resolution. en-copyright= kn-copyright= en-aut-name=HigashiYouichiro en-aut-sei=Higashi en-aut-mei=Youichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HyogoKazuya en-aut-sei=Hyogo en-aut-mei=Kazuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=TakeokaNorio en-aut-sei=Takeoka en-aut-mei=Norio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= affil-num=1 en-affil=Faculty of Economics, Okayama University kn-affil= affil-num=2 en-affil=Faculty of Economics, Ryukoku University kn-affil= affil-num=3 en-affil=Department of Economics, Hitotsubashi University kn-affil= en-keyword=Information acquisition kn-keyword=Information acquisition en-keyword=Rational inattention kn-keyword=Rational inattention en-keyword=Preference for the timing of the resolution of uncertainty kn-keyword=Preference for the timing of the resolution of uncertainty en-keyword=Preference over menus kn-keyword=Preference over menus END start-ver=1.4 cd-journal=joma no-vol=392 cd-vols= no-issue=1 article-no= start-page=1051 end-page=1097 dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250228 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Global well-posedness and scattering in weighted space for nonlinear Schr?dinger equations below the Strauss exponent without gauge-invariance en-subtitle= kn-subtitle= en-abstract= kn-abstract=In this paper, we consider the nonlinear Schr?dinger equation (NLS) with a general homogeneous nonlinearity in dimensions up to three. We assume that the degree (i.e., power) of the nonlinearity is such that the equation is mass-subcritical and short-range. We establish global well-posedness (GWP) and scattering for small data in the standard weighted space for a class of homogeneous nonlinearities, including non-gauge-invariant ones. Additionally, we include the case where the degree is less than or equal to the Strauss exponent. When the nonlinearity is not gauge-invariant, the standard Duhamel formulation fails to work effectively in the weighted Sobolev space; for instance, the Duhamel term may not be well-defined as a Bochner integral. To address this issue, we introduce an alternative formulation that allows us to establish GWP and scattering, even in the presence of poor time continuity of the Duhamel term. en-copyright= kn-copyright= en-aut-name=KawamotoMasaki en-aut-sei=Kawamoto en-aut-mei=Masaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MasakiSatoshi en-aut-sei=Masaki en-aut-mei=Satoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MiyazakiHayato en-aut-sei=Miyazaki en-aut-mei=Hayato kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= affil-num=1 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= affil-num=2 en-affil=Department of Mathematics, Hokkaido University kn-affil= affil-num=3 en-affil=Teacher Training Courses, Faculty of Education, Kagawa University kn-affil= END start-ver=1.4 cd-journal=joma no-vol=40 cd-vols= no-issue=4 article-no= start-page=561 end-page=568 dt-received= dt-revised= dt-accepted= dt-pub-year=2024 dt-pub=20240705 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Central dentinogenic ghost cell tumor of the maxilla: a case report with new imaging findings and review of the literature en-subtitle= kn-subtitle= en-abstract= kn-abstract=A dentinogenic ghost cell tumor (DGCT) is a rare benign odontogenic tumor that commonly shows characteristics of solid proliferation and has a relatively high risk of recurrence after surgical treatment. We herein report a case of a central DGCT that occurred in the maxilla and resulted in bone expansion. This study highlights new imaging findings (particularly magnetic resonance imaging) along with histopathological observations. In addition, we conducted a review of the existing literature on this rare tumor. A 37-year-old man developed swelling around the right cheek. A benign odontogenic tumor such as ameloblastoma was suspected based on the imaging examination findings (including bone expansion and the internal characteristics of the tumor) on panoramic imaging, computed tomography, and magnetic resonance imaging. The lesion was surgically excised from the right maxilla. Postoperative histopathological examination led to a definitive diagnosis of central DGCT. The tumor comprised epithelial neoplastic islands, resembling ameloblastoma, inside tight fibroconnective tissue; masses of ghost cells and formation of dentin were also observed. We had suspected that the minute high-density region around the molars on the imaging examinations represented alveolar bone change; however, it represented dentin formation. This led to difficulty diagnosing the lesion. Although DGCT may present characteristic findings on imaging examinations, its occurrence is infrequent, and in some cases, the findings may include the presence or absence of an impacted tooth without obvious calcification. The present case suggests that we should consider the possibility of an odontogenic tumor with calcification when high-density structures are observed inside the lesion. en-copyright= kn-copyright= en-aut-name=YoshidaSuzuka en-aut-sei=Yoshida en-aut-mei=Suzuka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TakeshitaYohei en-aut-sei=Takeshita en-aut-mei=Yohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KawazuToshiyuki en-aut-sei=Kawazu en-aut-mei=Toshiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=HisatomiMiki en-aut-sei=Hisatomi en-aut-mei=Miki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=OkadaShunsuke en-aut-sei=Okada en-aut-mei=Shunsuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=FujikuraMamiko en-aut-sei=Fujikura en-aut-mei=Mamiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=ObataKyoichi en-aut-sei=Obata en-aut-mei=Kyoichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=TakabatakeKiyofumi en-aut-sei=Takabatake en-aut-mei=Kiyofumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=YoshidaSaori en-aut-sei=Yoshida en-aut-mei=Saori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=AsaumiJunichi en-aut-sei=Asaumi en-aut-mei=Junichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=Department of Oral and Maxillofacial Radiology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Oral and Maxillofacial Radiology, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Oral and Maxillofacial Radiology, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Department of Oral and Maxillofacial Radiology, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Department of Oral and Maxillofacial Radiology, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=6 en-affil=Department of Oral and Maxillofacial Radiology, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Department of Oral and Maxillofacial Surgery, Okayama University Hospital kn-affil= affil-num=8 en-affil=Department of Oral Pathology and Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=9 en-affil=Preliminary Examination Room, Okayama University Hospital kn-affil= affil-num=10 en-affil=Department of Oral and Maxillofacial Radiology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=Dentinogenic ghost cell tumor kn-keyword=Dentinogenic ghost cell tumor en-keyword=Benign odontogenic tumor kn-keyword=Benign odontogenic tumor en-keyword=Maxilla kn-keyword=Maxilla en-keyword=Calcification kn-keyword=Calcification en-keyword=Computed tomography kn-keyword=Computed tomography en-keyword=Magnetic resonance imaging kn-keyword=Magnetic resonance imaging END start-ver=1.4 cd-journal=joma no-vol=46 cd-vols= no-issue=10 article-no= start-page=1643 end-page=1652 dt-received= dt-revised= dt-accepted= dt-pub-year=2024 dt-pub=20240809 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Radiological assessment of the dissection area in supraomohyoid neck dissection en-subtitle= kn-subtitle= en-abstract= kn-abstract=Purpose The current supraomohyoid neck dissection (SOHND) is performed above the omohyoid muscle to dissect levels I, II, and III in the levels of cervical lymph nodes. However, the anatomical boundary between levels III and IV is the inferior border of the cricoid cartilage. We investigated the anatomical relationship between the omohyoid muscle and cricoid cartilage using contrast-enhanced CT (CE-CT) images to assess the validity of the current SOHND.
Methods CE-CT images of the head and neck regions in patients were reviewed. The patients were divided into two groups: gmalignant tumorsh and gothersh. The vertebral levels corresponding to the positions of anatomical structures such as the intersection of the omohyoid muscle and internal jugular vein (OM-IJ), and the inferior border of the cricoid cartilage (CC), were recorded.
Results The OM-IJ was located around the seventh cervical to the first thoracic vertebra. There was a significant difference between the malignant tumor and others groups in females (p?=?0.036). The CC was located around the sixth to seventh cervical vertebrae. There was a significant sex difference in each group (malignant tumor: p? Conclusion This study provides clear anatomical evidence showing the difference between the SOHND dissection area and levels I, II, and III. It could be considered that in most cases SOHND invades level IV, not just levels I, II, and III, especially in female patients. en-copyright= kn-copyright= en-aut-name=TakeshitaYohei en-aut-sei=Takeshita en-aut-mei=Yohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=IwanagaJoe en-aut-sei=Iwanaga en-aut-mei=Joe kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=OhyamaYoshio en-aut-sei=Ohyama en-aut-mei=Yoshio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=IbaragiSoichiro en-aut-sei=Ibaragi en-aut-mei=Soichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MatsushitaYuki en-aut-sei=Matsushita en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=TubbsR. Shane en-aut-sei=Tubbs en-aut-mei=R. Shane kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KitagawaNorio en-aut-sei=Kitagawa en-aut-mei=Norio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=KawazuToshiyuki en-aut-sei=Kawazu en-aut-mei=Toshiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=HisatomiMiki en-aut-sei=Hisatomi en-aut-mei=Miki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=OkadaShunsuke en-aut-sei=Okada en-aut-mei=Shunsuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=FujikuraMamiko en-aut-sei=Fujikura en-aut-mei=Mamiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=AsaumiJunichi en-aut-sei=Asaumi en-aut-mei=Junichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= affil-num=1 en-affil=Department of Oral and Maxillofacial Radiology, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Clinical Anatomy Research Association in Oral and Maxillofacial Surgery kn-affil= affil-num=3 en-affil=Clinical Anatomy Research Association in Oral and Maxillofacial Surgery kn-affil= affil-num=4 en-affil=Department of Oral and Maxillofacial Surgery, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Clinical Anatomy Research Association in Oral and Maxillofacial Surgery kn-affil= affil-num=6 en-affil=Clinical Anatomy Research Association in Oral and Maxillofacial Surgery kn-affil= affil-num=7 en-affil=Clinical Anatomy Research Association in Oral and Maxillofacial Surgery kn-affil= affil-num=8 en-affil= kn-affil= affil-num=9 en-affil=Department of Oral and Maxillofacial Radiology, Okayama University Hospital kn-affil= affil-num=10 en-affil=Department of Oral and Maxillofacial Radiology, Okayama University Hospital kn-affil= affil-num=11 en-affil=Department of Oral and Maxillofacial Radiology, Okayama University Hospital kn-affil= affil-num=12 en-affil=Department of Oral and Maxillofacial Radiology, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=Anatomy kn-keyword=Anatomy en-keyword=Omohyoid muscle kn-keyword=Omohyoid muscle en-keyword=Computed tomography kn-keyword=Computed tomography en-keyword=Neck dissection kn-keyword=Neck dissection en-keyword=Vertebra kn-keyword=Vertebra en-keyword=Cancer kn-keyword=Cancer END start-ver=1.4 cd-journal=joma no-vol=54 cd-vols= no-issue=5 article-no= start-page=upaf091 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=202505 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Highly emissive and robust diarylethene fluorophore incorporating imide-fused phenanthryl moieties en-subtitle= kn-subtitle= en-abstract= kn-abstract=The fluorescence properties and photostabilities of (E)-diarylethenes (DPEs), featuring two 3-phenanthryl moieties, were investigated. Pristine (E)-di-1,2-(3-phenanthryl)ethene and its ester derivative, respectively referred to as DPE-H and DPE-E, exhibited blue fluorescence. However, they underwent a two-step photoreaction sequence that yielded [7]helicenes, resulting in a gradual reduction of the fluorescence intensity. In contrast, the imide-fused derivative DPE-I displayed intense green fluorescence and it was unexpectedly photostable in solution, maintaining its highly efficient fluorescent nature even after prolonged light exposure. DPE-I, thus, provides a new type of highly efficient and robust diarylethene fluorophore. en-copyright= kn-copyright= en-aut-name=NoseKeito en-aut-sei=Nose en-aut-mei=Keito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=YamajiMinoru en-aut-sei=Yamaji en-aut-mei=Minoru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MoriTadashi en-aut-sei=Mori en-aut-mei=Tadashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TaniFumito en-aut-sei=Tani en-aut-mei=Fumito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=GotoKenta en-aut-sei=Goto en-aut-mei=Kenta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=OkamotoHideki en-aut-sei=Okamoto en-aut-mei=Hideki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Department of Chemistry, Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Program of Applied Chemistry, Cluster of Materials and Environment, Gunma University kn-affil= affil-num=3 en-affil=Research Center for Environmental Preservation and Graduate School of Engineering, The University of Osaka kn-affil= affil-num=4 en-affil=Institute for Materials Chemistry and Engineering, Kyushu University kn-affil= affil-num=5 en-affil=Institute for Materials Chemistry and Engineering, Kyushu University kn-affil= affil-num=6 en-affil=Department of Chemistry, Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= en-keyword=diarylethene kn-keyword=diarylethene en-keyword=fluorescence kn-keyword=fluorescence en-keyword=phenanthreneimide kn-keyword=phenanthreneimide END start-ver=1.4 cd-journal=joma no-vol=22 cd-vols= no-issue=46 article-no= start-page=9032 end-page=9035 dt-received= dt-revised= dt-accepted= dt-pub-year=2024 dt-pub=2024 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=A direct oxidative esterification of aldehydes with alcohols mediated by photochemical C?H bromination en-subtitle= kn-subtitle= en-abstract= kn-abstract=The photochemical direct esterification of aldehydes with alcohols via in situ-generated acyl-bromides presented in this report is an attractive complementary addition to hitherto reported methods, as these are usually carried out in a two-step, one-pot procedure in order to avoid side reactions such as the oxidation of alcohols by halogen sources. en-copyright= kn-copyright= en-aut-name=AndoHaru en-aut-sei=Ando en-aut-mei=Haru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KodakiSakura en-aut-sei=Kodaki en-aut-mei=Sakura kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=TakamuraHiroyoshi en-aut-sei=Takamura en-aut-mei=Hiroyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KadotaIsao en-aut-sei=Kadota en-aut-mei=Isao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TanakaKenta en-aut-sei=Tanaka en-aut-mei=Kenta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= affil-num=1 en-affil=Department of Chemistry, Graduate School of Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Department of Chemistry, Graduate School of Natural Science and Technology, Okayama University kn-affil= affil-num=3 en-affil=Department of Chemistry, Graduate School of Natural Science and Technology, Okayama University kn-affil= affil-num=4 en-affil=Department of Chemistry, Graduate School of Natural Science and Technology, Okayama University kn-affil= affil-num=5 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= END start-ver=1.4 cd-journal=joma no-vol=100 cd-vols= no-issue=1 article-no= start-page=66 end-page=77 dt-received= dt-revised= dt-accepted= dt-pub-year=2024 dt-pub=20241120 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Different impacts of granulocyte colony]stimulating factor administration on allogeneic hematopoietic cell transplant outcomes for adult acute myeloid leukemia according to graft type en-subtitle= kn-subtitle= en-abstract= kn-abstract=We retrospectively evaluated the impacts of using granulocyte colony-stimulating factor (G-CSF) and its timing on posttransplant outcomes for 9766 adults with acute myeloid leukemia (AML) between 2013 and 2022 using a Japanese database. We separately evaluated three distinct cohorts based on graft type: 3248 received bone marrow transplantation (BMT), 3066 received peripheral blood stem cell transplantation (PBSCT), and 3452 received single-unit cord blood transplantation (CBT). Multivariate analysis showed that G-CSF administration significantly accelerated neutrophil recovery after BMT, PBSCT, and CBT. However, it was associated with a higher risk of grades II?IV acute graft-versus-host disease (GVHD) across all graft types. Moreover, an increased incidence of overall chronic GVHD was observed with G-CSF administration in BMT and CBT patients, but not in PBSCT patients. G-CSF administration significantly improved overall survival (OS) and leukemia-free survival (LFS) only following CBT. Regarding the timing of G-CSF, in comparison with late initiation of G-CSF (Days 5?10), early initiation (Days 0?4) did not provide benefits for hematopoietic recovery regardless of graft type. In contrast, late initiation was significantly associated with a lower risk of grades II?IV acute GVHD and better OS and LFS in CBT patients. These data demonstrated that G-CSF administration accelerated neutrophil recovery and increased the risk of grades II?IV acute GVHD across all graft types, but significantly improved survival outcomes but only following CBT. Therefore, routine use of G-CSF should be considered for CBT in adult patients with AML. en-copyright= kn-copyright= en-aut-name=KonumaTakaaki en-aut-sei=Konuma en-aut-mei=Takaaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KamedaKazuaki en-aut-sei=Kameda en-aut-mei=Kazuaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MoritaKaoru en-aut-sei=Morita en-aut-mei=Kaoru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KondoTadakazu en-aut-sei=Kondo en-aut-mei=Tadakazu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KimuraFumihiko en-aut-sei=Kimura en-aut-mei=Fumihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=NakasoneHideki en-aut-sei=Nakasone en-aut-mei=Hideki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=OuchiFumihiko en-aut-sei=Ouchi en-aut-mei=Fumihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=UchidaNaoyuki en-aut-sei=Uchida en-aut-mei=Naoyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=TanakaMasatsugu en-aut-sei=Tanaka en-aut-mei=Masatsugu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=NishidaTetsuya en-aut-sei=Nishida en-aut-mei=Tetsuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=FukudaTakahiro en-aut-sei=Fukuda en-aut-mei=Takahiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=HasegawaYuta en-aut-sei=Hasegawa en-aut-mei=Yuta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=Sakata]YanagimotoMamiko en-aut-sei=Sakata]Yanagimoto en-aut-mei=Mamiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=OnizukaMakoto en-aut-sei=Onizuka en-aut-mei=Makoto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=SawaMasashi en-aut-sei=Sawa en-aut-mei=Masashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=OtaShuichi en-aut-sei=Ota en-aut-mei=Shuichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=AsadaNoboru en-aut-sei=Asada en-aut-mei=Noboru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=FujiwaraShin]Ichiro en-aut-sei=Fujiwara en-aut-mei=Shin]Ichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= en-aut-name=YoshiharaSatoshi en-aut-sei=Yoshihara en-aut-mei=Satoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=19 ORCID= en-aut-name=IshimaruFumihiko en-aut-sei=Ishimaru en-aut-mei=Fumihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=20 ORCID= en-aut-name=YoshimitsuMakoto en-aut-sei=Yoshimitsu en-aut-mei=Makoto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=21 ORCID= en-aut-name=KandaYoshinobu en-aut-sei=Kanda en-aut-mei=Yoshinobu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=22 ORCID= en-aut-name=OhbikiMarie en-aut-sei=Ohbiki en-aut-mei=Marie kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=23 ORCID= en-aut-name=AtsutaYoshiko en-aut-sei=Atsuta en-aut-mei=Yoshiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=24 ORCID= en-aut-name=YanadaMasamitsu en-aut-sei=Yanada en-aut-mei=Masamitsu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=25 ORCID= affil-num=1 en-affil=Department of Hematology/Oncology, The Institute of Medical Science, The University of Tokyo kn-affil= affil-num=2 en-affil=Division of Hematology, Jichi Medical University Saitama Medical Center kn-affil= affil-num=3 en-affil=Division of Hematology, Jichi Medical University kn-affil= affil-num=4 en-affil=Department of Hematology, Kobe City Medical Center General Hospital kn-affil= affil-num=5 en-affil=Division of Hematology, Department of Internal Medicine, National Defense Medical College kn-affil= affil-num=6 en-affil=Division of Hematology, Jichi Medical University Saitama Medical Center kn-affil= affil-num=7 en-affil=Hematology Division, Tokyo Metropolitan Cancer and Infectious Diseases Center, Komagome Hospital kn-affil= affil-num=8 en-affil=Department of Hematology, Toranomon Hospital kn-affil= affil-num=9 en-affil=Department of Hematology, Kanagawa Cancer Center kn-affil= affil-num=10 en-affil=Department of Hematology, Japanese Red Cross Aichi Medical Center Nagoya Daiichi Hospital kn-affil= affil-num=11 en-affil=Department of Hematopoietic Stem Cell Transplantation, National Cancer Center Hospital kn-affil= affil-num=12 en-affil=Department of Hematology, Hokkaido University Hospital kn-affil= affil-num=13 en-affil=Department of Hematology, University of Tsukuba Hospital kn-affil= affil-num=14 en-affil=Department of Hematology and Oncology, Tokai University School of Medicine kn-affil= affil-num=15 en-affil=Department of Hematology and Oncology, Anjo Kosei Hospital kn-affil= affil-num=16 en-affil=Department of Hematology, Sapporo Hokuyu Hospital kn-affil= affil-num=17 en-affil=Department of Hematology and Oncology, Okayama University Hospital kn-affil= affil-num=18 en-affil=Division of Hematology, Jichi Medical University kn-affil= affil-num=19 en-affil=Department of Hematology, Hyogo Medical University Hospital kn-affil= affil-num=20 en-affil=Technical Department, Japanese Red Cross Society Blood Service Headquarters kn-affil= affil-num=21 en-affil=Department of Hematology and Rheumatology, Kagoshima University Hospital kn-affil= affil-num=22 en-affil=Division of Hematology, Jichi Medical University kn-affil= affil-num=23 en-affil=Japanese Data Center for Hematopoietic Cell Transplantation kn-affil= affil-num=24 en-affil=Japanese Data Center for Hematopoietic Cell Transplantation kn-affil= affil-num=25 en-affil=Department of Hematology and Oncology, Nagoya City University East Medical Center kn-affil= END start-ver=1.4 cd-journal=joma no-vol=52 cd-vols= no-issue=2 article-no= start-page=18 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250418 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=The effect of Fe incorporation on the single-crystal elasticity of ƒÂ-AlOOH en-subtitle= kn-subtitle= en-abstract= kn-abstract=The seismic mapping of hydrous materials in the Earthfs deep interior requires experimental constraints on the elastic anisotropy of hydrous minerals and phases. Oxyhydroxides like ƒÂ-(Al,Fe)OOH are arguably the main hosts of water in the lower mantle. Therefore, constraints on the single-crystal elastic tensor of ƒÂ-(Al,Fe)OOH solid solutions are crucial to quantify the elastic anisotropy of this material, and advance the current understanding of the recycling of water into the lower mantle. Yet, experimental data for intermediate compositions are scarce, limiting the understanding of how Fe incorporation affects the single-crystal elastic properties of ƒÂ-AlOOH. In this study, we provide experimental constraints on the single-crystal elasticity of two ƒÂ-(Al,Fe)OOH solid solutions, with Fe/(Al?+?Fe) of 0.06(1) and 0.133(3). Large single-crystal samples of ƒÂ-(Al,Fe)OOH were synthetized at high pressures and temperatures using a multi-anvil press, and the full elastic stiffness tensors were determined at ambient conditions by combining X-ray diffraction and Brillouin scattering measurements. We show that replacing Al3+ with Fe3+ in ƒÂ-(Al,Fe)OOH lowers the magnitude of most coefficients of the elastic stiffness tensor (cij), which translates into a substantial reduction of aggregate moduli and acoustic wave velocities. We further show that, at ambient conditions, the acoustic anisotropy of ƒÂ-(Al,Fe)OOH displays no sensitivity to Fe?Al substitution. en-copyright= kn-copyright= en-aut-name=SattaNiccol? en-aut-sei=Satta en-aut-mei=Niccol? kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=CrinitiGiacomo en-aut-sei=Criniti en-aut-mei=Giacomo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=Boffa BallaranTiziana en-aut-sei=Boffa Ballaran en-aut-mei=Tiziana kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KurnosovAlexander en-aut-sei=Kurnosov en-aut-mei=Alexander kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=IshiiTakayuki en-aut-sei=Ishii en-aut-mei=Takayuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=BuchenJohannes en-aut-sei=Buchen en-aut-mei=Johannes kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=MarquardtHauke en-aut-sei=Marquardt en-aut-mei=Hauke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= affil-num=1 en-affil=Institut f?r Mineralogie, Universit?t M?nster kn-affil= affil-num=2 en-affil=Bayerisches Geoinstitut, Universit?t Bayreuth kn-affil= affil-num=3 en-affil=Bayerisches Geoinstitut, Universit?t Bayreuth kn-affil= affil-num=4 en-affil=Bayerisches Geoinstitut, Universit?t Bayreuth kn-affil= affil-num=5 en-affil=Institute for Planetary Materials, Okayama University kn-affil= affil-num=6 en-affil=Bayerisches Geoinstitut, Universit?t Bayreuth kn-affil= affil-num=7 en-affil=Department of Earth Sciences, University of Oxford kn-affil= en-keyword=Elasticity kn-keyword=Elasticity en-keyword=ƒÂ-AlOOH kn-keyword=ƒÂ-AlOOH en-keyword=Water kn-keyword=Water en-keyword=Anisotropy kn-keyword=Anisotropy en-keyword=Solid solutions kn-keyword=Solid solutions en-keyword=Brillouin scattering kn-keyword=Brillouin scattering END start-ver=1.4 cd-journal=joma no-vol=361 cd-vols= no-issue= article-no= start-page=107331 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=202504 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Effect of chemistry on the compressibility and high-pressure structural evolution of the CaFe2O4-type aluminous silicate phase en-subtitle= kn-subtitle= en-abstract= kn-abstract=Approximately 22?26 vol% of a basaltic phase assemblage at lower mantle conditions is comprised of a (Na,Mg,Fe2+)(Al,Si,Fe3+)2O4 phase with CaFe2O4-type (CF-type) structure. Previous experimental studies attempted to determine the equation of state of the CF-type phase but reported contrasting compressibility values, even for samples with the same composition. Therefore, the elastic properties of the CF-type phase remain, to date, largely unconstrained. Here, we conducted single-crystal X-ray diffraction (SCXRD) measurements in the diamond anvil cell (DAC) at high pressure and room temperature on three samples of CF-type phase with compositions Na0.90(1)Al1.03(2)Si1.00(2)O4 (NaCF), Na0.66(4)Mg0.28(4)Al1.22(3)Si0.78(3)O4 (MgCF) and Na0.62(2)Mg0.19(1)Fe2+0.17(1)Fe3+0.080(4)Al1.20(3)Si0.70(1)O4 (FeCF). A multi-sample loading approach was employed for most DAC runs, where two samples were loaded in the same sample chamber to reduce possible systematic deviations between datasets, thus enhancing internal consistency and corroborating data reproducibility. Experiments on the NaCF and MgCF samples were conducted up to ?50 GPa, while the FeCF sample was compressed to ?72 GPa to better characterize the effect of the spin crossover of octahedrally coordinated Fe3+. We found the isothermal bulk modulus (KT0) to increase with decreasing NaAlSiO4 content, accompanied by only a slight decrease in its pressure derivative (K'T0). Analysis of the crystal structures of the three samples at high pressure allowed compositional trends to be determined also for the interatomic bonds and polyhedral compressibility, as well as the distortion indices. These suggest an overall stiffening of the A site with increasing Mg2+ and Fe2+ content, as well of the two B sites with increasing Al3+ and Fe3+ content. Enhanced compressibility of the unit cell and octahedral B sites was observed between ?26?42 GPa in the FeCF sample, suggesting a pressure-induced spin crossover of Fe3+, in agreement with some previous observations. Finally, trends in the elastic properties from experimental studies conducted along the NaAlSiO4-MgAl2O4 join are discussed and used as a proxy to evaluate the reliability of end-member properties for the CF-type phase employed in most recent mineral physical and thermodynamic databases. Our analysis suggests current mineral physical models might underestimate densities and overestimate bulk sound velocities of NaAlSiO4-rich CF-type phases with basaltic composition. en-copyright= kn-copyright= en-aut-name=CrinitiGiacomo en-aut-sei=Criniti en-aut-mei=Giacomo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=Boffa BallaranTiziana en-aut-sei=Boffa Ballaran en-aut-mei=Tiziana kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KurnosovAlexander en-aut-sei=Kurnosov en-aut-mei=Alexander kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=IshiiTakayuki en-aut-sei=Ishii en-aut-mei=Takayuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=RogmannElena-Marie en-aut-sei=Rogmann en-aut-mei=Elena-Marie kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=GlazyrinKonstantin en-aut-sei=Glazyrin en-aut-mei=Konstantin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=FedotenkoTimofey en-aut-sei=Fedotenko en-aut-mei=Timofey kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=FrostDaniel J. en-aut-sei=Frost en-aut-mei=Daniel J. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= affil-num=1 en-affil=Bayerisches Geoinstitut, University of Bayreuth kn-affil= affil-num=2 en-affil=Bayerisches Geoinstitut, University of Bayreuth kn-affil= affil-num=3 en-affil=Bayerisches Geoinstitut, University of Bayreuth kn-affil= affil-num=4 en-affil=Institute for Planetary Materials, Okayama University kn-affil= affil-num=5 en-affil=Bayerisches Geoinstitut, University of Bayreuth kn-affil= affil-num=6 en-affil=Deutsches Elektronen-Synchrotron DESY kn-affil= affil-num=7 en-affil=Deutsches Elektronen-Synchrotron DESY kn-affil= affil-num=8 en-affil=Bayerisches Geoinstitut, University of Bayreuth kn-affil= en-keyword=CaFe2O4-type phase kn-keyword=CaFe2O4-type phase en-keyword=Lower mantle kn-keyword=Lower mantle en-keyword=Equations of state kn-keyword=Equations of state en-keyword=Structural refinements kn-keyword=Structural refinements en-keyword=Crystal chemistry kn-keyword=Crystal chemistry en-keyword=Fe3+ spin-crossover kn-keyword=Fe3+ spin-crossover END start-ver=1.4 cd-journal=joma no-vol=59 cd-vols= no-issue=12 article-no= start-page=3282 end-page=3304 dt-received= dt-revised= dt-accepted= dt-pub-year=2024 dt-pub=20241027 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Radial transport and nebular thermal processing of millimeter]sized solids in the Solar protoplanetary disk inferred from Cr]Ti]O isotope systematics of chondrules en-subtitle= kn-subtitle= en-abstract= kn-abstract=Understanding the material transport and mixing processes in the Solar protoplanetary disk provides important constraints on the origin of chemical and isotopic diversities of our planets. The limited extent of radial transport and mixing between the inner and outer Solar System has been suggested based on a fundamental isotopic dichotomy between non-carbonaceous (NC) and carbonaceous (CC) meteorite groups. The limited transport and mixing could be further tested by tracing the formation regions of individual meteoritic components, such as Ca-Al-rich inclusions (CAIs) and chondrules. Here, we show further evidence for the outward transport of CAIs and chondrules from the inner and subsequent thermal processing in the outer region of the protoplanetary disk based on the petrography and combined Cr-Ti-O isotope systematics of chondrules from the Vigarano-like (CV) carbonaceous chondrite Allende. One chondrule studied consists of an olivine core that exhibits NC-like Ti and O, but CC-like Cr isotopic signatures, which is enclosed by a pyroxene igneous rim with CC-like O isotope ratios. These observations indicate that the olivine core formed in the inner Solar System. The olivine core then migrated into the outer Solar System and experienced nebular thermal processing that generated the pyroxene igneous rim. The nebular thermal processing would result in Cr isotope exchange between the olivine core and CC-like materials, but secondary alteration effects on the parent body are also responsible for the CC-like Cr isotope signature. By combining previously reported Cr-Ti-O isotope systematics of CV chondrules, we show that some CV chondrules larger than ~1?mm would have formed in the inner Solar System. The accretion of the millimeter-sized, inner Solar System solids onto the CV carbonaceous chondrite parent body would require their very early migration into the outer Solar System within the first 1 million years after the Solar System formation. en-copyright= kn-copyright= en-aut-name=FukudaKohei en-aut-sei=Fukuda en-aut-mei=Kohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HibiyaYuki en-aut-sei=Hibiya en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KastelleCraig R. en-aut-sei=Kastelle en-aut-mei=Craig R. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=SuzukiKatsuhiko en-aut-sei=Suzuki en-aut-mei=Katsuhiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=IizukaTsuyoshi en-aut-sei=Iizuka en-aut-mei=Tsuyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=YamashitaKatsuyuki en-aut-sei=Yamashita en-aut-mei=Katsuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=HelserThomas E. en-aut-sei=Helser en-aut-mei=Thomas E. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=KitaNoriko T. en-aut-sei=Kita en-aut-mei=Noriko T. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= affil-num=1 en-affil=WiscSIMS, Department of Geoscience, University of Wisconsin-Madison kn-affil= affil-num=2 en-affil=Research Center for Advanced Science and Technology, Graduate School of Science, The University of Tokyo kn-affil= affil-num=3 en-affil=National Oceanic and Atmospheric Administration kn-affil= affil-num=4 en-affil=Submarine Resources Research Center, Japan Agency for Marine-Earth Science Technology kn-affil= affil-num=5 en-affil=Department of Earth and Planetary Science, Graduate School of Science, The University of Tokyo kn-affil= affil-num=6 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=7 en-affil=National Oceanic and Atmospheric Administration kn-affil= affil-num=8 en-affil=WiscSIMS, Department of Geoscience, University of Wisconsin-Madison kn-affil= END start-ver=1.4 cd-journal=joma no-vol=30 cd-vols= no-issue=3 article-no= start-page=497 end-page=503 dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250205 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Five-year outcomes with gefitinib induction and chemoradiotherapy in EGFR-mutant stage III non-small-cell lung cancer: LOGIK0902/OLCSG0905 phase II study en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background We previously showed the 2-year OS rate, the primary endpoint, of 90% in a phase II trial of gefitinib induction followed by chemoradiotherapy (CRT) in unresectable, stage III, EGFR-mutant, non-small-cell lung cancer (NSCLC). However, neither long-term survival data nor late-phase adverse event profiles have been presented.
Patients and methods Patients with unresectable, EGFR-mutant, stage III NSCLC were administered gefitinib monotherapy for 8 weeks. After confirming no disease progression during induction therapy, cisplatin and docetaxel on days 1, 8, 29, and 36 with concurrent radiotherapy at a total dose of 60 Gy were subsequently administered.
Results In the enrolled twenty patients, the 5-year OS rate and median survival time were 70.0% [95% confidence interval: 45.1?85.3] and 5.5 years [4.91-NE], respectively, whereas 5-year PFS rate and median PFS time were 15.0% (3.7?33.5) and 1.4 years [0.69?2.29], respectively. Efficacy did not seem influenced even if radiation field was re-planed in response to the effect of gefitinib induction. As for late adverse events, pulmonary fibrosis occurred in 7 patients (35%). The median time from completion of CRT to the occurrence of the event was 245 days. All were grade 1, and there was no evidence of cavitation of the lesions or chronic infections such as Aspergillus infection during the course of the disease. One case of small cell lung cancer occurred during the period.
Conclusions With longer follow-up time, we demonstrated favorable efficacy with tolerable toxicity profiles in the EGFR-TKI induction followed by standard CRT in EGFR-mutant, stage III, NSCLC.
Trial registration numbers UMIN00005086. https://upload.umin.ac.jp/cgi-open-bin/ctr/ctr.cgi?function=brows&action=brows&recptno=R000006047&type=summary&language=EjRCTs071180036. https://jrct.niph.go.jp/latest-detail/jRCTs071180036 en-copyright= kn-copyright= en-aut-name=HottaKatsuyuki en-aut-sei=Hotta en-aut-mei=Katsuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=SaekiSho en-aut-sei=Saeki en-aut-mei=Sho kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=SakataShinya en-aut-sei=Sakata en-aut-mei=Shinya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=YamaguchiMasafumi en-aut-sei=Yamaguchi en-aut-mei=Masafumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=HaradaDaijiro en-aut-sei=Harada en-aut-mei=Daijiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=BesshoAkihiro en-aut-sei=Bessho en-aut-mei=Akihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=TanakaKentaro en-aut-sei=Tanaka en-aut-mei=Kentaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=InoueKoji en-aut-sei=Inoue en-aut-mei=Koji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=InoueKoji en-aut-sei=Inoue en-aut-mei=Koji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=GembaKenichi en-aut-sei=Gemba en-aut-mei=Kenichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=KuboToshio en-aut-sei=Kubo en-aut-mei=Toshio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=SatoAkiko en-aut-sei=Sato en-aut-mei=Akiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=IchiharaEiki en-aut-sei=Ichihara en-aut-mei=Eiki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=WatanabeHiromi en-aut-sei=Watanabe en-aut-mei=Hiromi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=KishimotoJunji en-aut-sei=Kishimoto en-aut-mei=Junji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=ShioyamaYoshiyuki en-aut-sei=Shioyama en-aut-mei=Yoshiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=KatsuiKuniaki en-aut-sei=Katsui en-aut-mei=Kuniaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=SugioKenji en-aut-sei=Sugio en-aut-mei=Kenji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= en-aut-name=KiuraKatsuyuki en-aut-sei=Kiura en-aut-mei=Katsuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=19 ORCID= affil-num=1 en-affil=Center for Innovative Clinical Medicine, Okayama University Hospital kn-affil= affil-num=2 en-affil=Department of Respiratory Medicine, Kumamoto University Hospital kn-affil= affil-num=3 en-affil=Department of Respiratory Medicine, Kumamoto University Hospital kn-affil= affil-num=4 en-affil=Department of Thoracic Oncology, NHO Kyushu Cancer Center kn-affil= affil-num=5 en-affil=Department of Thoracic Oncology, National Hospital Organization Shikoku Cancer Center kn-affil= affil-num=6 en-affil=Department of Respiratory Medicine, Japanese Red Cross Okayama Hospital kn-affil= affil-num=7 en-affil=Department of Respiratory Medicine, Kyushu University Hospital kn-affil= affil-num=8 en-affil=Department of Respiratory Medicine, Kitakyushu Municipal Medical Center kn-affil= affil-num=9 en-affil=Department of Respiratory Medicine, Ehime Prefectural Central Hospital kn-affil= affil-num=10 en-affil=Department of Respiratory Medicine, Chugoku Central Hospital kn-affil= affil-num=11 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=12 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=13 en-affil=Center for Clinical Oncology, Okayama University Hospital kn-affil= affil-num=14 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=15 en-affil=Department of Research and Development of Next Generation Medicine, Faculty of Medical Sciences, Kyushu University kn-affil= affil-num=16 en-affil=Radiation Oncology, Ion Beam Therapy Center, SAGA HIMAT Foundation kn-affil= affil-num=17 en-affil=Department of Radiology, Kawasaki Medical School kn-affil= affil-num=18 en-affil=Division of Radiation Oncology, Department of Thoracic and Breast Surgery, Oita University kn-affil= affil-num=19 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= en-keyword=Non-small-cell lung cancer kn-keyword=Non-small-cell lung cancer en-keyword=Locally advanced setting kn-keyword=Locally advanced setting en-keyword=Chemoradiation kn-keyword=Chemoradiation en-keyword=Epidermal growth factor receptor kn-keyword=Epidermal growth factor receptor END start-ver=1.4 cd-journal=joma no-vol=25 cd-vols= no-issue=8 article-no= start-page=1152 end-page=1153 dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250625 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Efficacy of human?robot interaction on local residents en-subtitle= kn-subtitle= en-abstract= kn-abstract= en-copyright= kn-copyright= en-aut-name=KuroishiHiroshi en-aut-sei=Kuroishi en-aut-mei=Hiroshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KikuchiSakura en-aut-sei=Kikuchi en-aut-mei=Sakura kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KazawaKana en-aut-sei=Kazawa en-aut-mei=Kana kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= affil-num=1 en-affil=Graduate School of Health, Okayama University kn-affil= affil-num=2 en-affil=BizDev, CMIC Trust kn-affil= affil-num=3 en-affil=Department of Nursing Faculty of Health Sciences, Okayama University kn-affil= en-keyword=interaction kn-keyword=interaction en-keyword=resident kn-keyword=resident en-keyword=robot kn-keyword=robot END start-ver=1.4 cd-journal=joma no-vol=16 cd-vols= no-issue=23 article-no= start-page=5732 end-page=5738 dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250602 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Ultrafast Protein Dynamics Prior to Retinal Photoisomerization in Microbial Rhodopsins en-subtitle= kn-subtitle= en-abstract= kn-abstract=Rhodopsins, an important group of photoreceptor proteins, possess a retinal chromophore. It has long been believed that the photoisomerization of the chromophore is the initial event triggering its photocycle. However, we recently reported that protein structural changes around the chromophore precede photoisomerization in bacteriorhodopsin (BR). In this study, we performed deep-ultraviolet femtosecond stimulated Raman measurements for H+-pump rhodopsin (RxR) and photosensor rhodopsin (NpSRII) to investigate whether these ultrafast protein dynamics are common among rhodopsins. We observed that the protein structural changes occur within 0.2 ps after photoexcitation and precede the chromophore photoisomerization, similar to the case for BR. This strongly indicates that the protein structural change precedes the photoisomerization in rhodopsins, regardless of the difference in their origins and functions. Furthermore, we found that only limited protein changes occur on the time scale of the photoisomerization, suggesting that the protein environment is already optimized for the structural change of the chromophore. These observations raise the possibility that the ultrafast protein change arranges the environment around the chromophore to facilitate the photoisomerization. en-copyright= kn-copyright= en-aut-name=TaharaShinya en-aut-sei=Tahara en-aut-mei=Shinya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KuriharaRika en-aut-sei=Kurihara en-aut-mei=Rika kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KojimaKeiichi en-aut-sei=Kojima en-aut-mei=Keiichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KuramochiHikaru en-aut-sei=Kuramochi en-aut-mei=Hikaru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TakeuchiSatoshi en-aut-sei=Takeuchi en-aut-mei=Satoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=SudoYuki en-aut-sei=Sudo en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=TaharaTahei en-aut-sei=Tahara en-aut-mei=Tahei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= affil-num=1 en-affil=Molecular Spectroscopy Laboratory, RIKEN kn-affil= affil-num=2 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Molecular Spectroscopy Laboratory, RIKEN kn-affil= affil-num=5 en-affil=Molecular Spectroscopy Laboratory, RIKEN kn-affil= affil-num=6 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Molecular Spectroscopy Laboratory, RIKEN kn-affil= END start-ver=1.4 cd-journal=joma no-vol=53 cd-vols= no-issue=11 article-no= start-page=945 end-page=950 dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250902 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Long-term and multi-stage ice accumulation in the martian mid-latitudes during the Amazonian en-subtitle= kn-subtitle= en-abstract= kn-abstract=Subsurface ice in the mid-latitudes of Mars represents one of the largest present-day water ice reservoirs. While atmospheric models predict Late Amazonian (during the past hundreds of millions of years) obliquity-driven ice accumulation, its long-term variations, and the factors influencing accumulation remain unclear. Using geomorphological evidence and numerical modeling, we reveal a southwestern depositional trend within northern mid-latitudinal crater walls and floors. Detailed crater-fill deposit analyses indicate multiple glaciation stages, including an earlier, high-intensity stage followed by a later, lower-intensity stage, both exhibiting this southwestern trend (ca. 640?98 Ma). We conclude that persistent multiple-stage Amazonian glaciations were governed by atmospheric water availability and obliquity-driven climate cycles. en-copyright= kn-copyright= en-aut-name=RujTrishit en-aut-sei=Ruj en-aut-mei=Trishit kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=OkudaHanaya en-aut-sei=Okuda en-aut-mei=Hanaya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KomatsuGoro en-aut-sei=Komatsu en-aut-mei=Goro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=HasegawaHitoshi en-aut-sei=Hasegawa en-aut-mei=Hitoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=HeadJames W. en-aut-sei=Head en-aut-mei=James W. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=UsuiTomohiro en-aut-sei=Usui en-aut-mei=Tomohiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=MihiraShun en-aut-sei=Mihira en-aut-mei=Shun kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=KobayashiMakito en-aut-sei=Kobayashi en-aut-mei=Makito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= affil-num=1 en-affil=Institute for Planetary Materials, Okayama University kn-affil= affil-num=2 en-affil=Kochi Institute for Core Sample Research (X-star), JAMSTEC kn-affil= affil-num=3 en-affil=International Research School of Planetary Sciences, Universit? dfAnnunzio kn-affil= affil-num=4 en-affil=Department of Global Environment and Disaster Prevention, Faculty of Science and Technology, Kochi University kn-affil= affil-num=5 en-affil=Department of Earth, Environmental and Planetary Sciences, Brown University kn-affil= affil-num=6 en-affil=Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency kn-affil= affil-num=7 en-affil=Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency kn-affil= affil-num=8 en-affil=Department of Systems Innovation, School of Engineering, University of Tokyo kn-affil= END start-ver=1.4 cd-journal=joma no-vol=134 cd-vols= no-issue=24 article-no= start-page=245001 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250616 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Acceleration of Positive Muons by a Radio-Frequency Cavity en-subtitle= kn-subtitle= en-abstract= kn-abstract=Acceleration of positive muons from thermal energy to 100 keV has been demonstrated. Thermal muons were generated by resonant multiphoton ionization of muonium atoms emitted from a sheet of laser-ablated aerogel. The thermal muons were first electrostatically accelerated to 5.7 keV, followed by further acceleration to 100 keV using a radio-frequency quadrupole with an intensity of 2~10?3???+/pulse. The transverse normalized rms emittance of the accelerated muons in the horizontal and vertical planes were 0.85}0.25?(s?t?a?t)+0.22?0.13?(syst)??????mm?mrad and 0.32}0.03?(stat)+0.05?0.02?(syst)?????mm?mrad, respectively. The measured emittance values demonstrated phase-space reduction by a factor of 2.0 ~102 (horizontal) and 4.1 ~102 (vertical) allowing good acceleration efficiency. These results pave the way to realize the first-ever muon accelerator for a variety of applications in particle physics, material science, and other fields. en-copyright= kn-copyright= en-aut-name=AritomeS. en-aut-sei=Aritome en-aut-mei=S. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FutatsukawaK. en-aut-sei=Futatsukawa en-aut-mei=K. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=HaraH. en-aut-sei=Hara en-aut-mei=H. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=HayasakaK. en-aut-sei=Hayasaka en-aut-mei=K. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=IbarakiY. en-aut-sei=Ibaraki en-aut-mei=Y. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=IchikawaT. en-aut-sei=Ichikawa en-aut-mei=T. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=IijimaT. en-aut-sei=Iijima en-aut-mei=T. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=IinumaH. en-aut-sei=Iinuma en-aut-mei=H. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=IkedoY. en-aut-sei=Ikedo en-aut-mei=Y. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=ImaiY. en-aut-sei=Imai en-aut-mei=Y. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=InamiK. en-aut-sei=Inami en-aut-mei=K. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=IshidaK. en-aut-sei=Ishida en-aut-mei=K. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=KamalS. en-aut-sei=Kamal en-aut-mei=S. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=KamiokaS. en-aut-sei=Kamioka en-aut-mei=S. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=KawamuraN. en-aut-sei=Kawamura en-aut-mei=N. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=KimuraM. en-aut-sei=Kimura en-aut-mei=M. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=KodaA. en-aut-sei=Koda en-aut-mei=A. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=KojiS. en-aut-sei=Koji en-aut-mei=S. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= en-aut-name=KojimaK. en-aut-sei=Kojima en-aut-mei=K. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=19 ORCID= en-aut-name=KondoA. en-aut-sei=Kondo en-aut-mei=A. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=20 ORCID= en-aut-name=KondoY. en-aut-sei=Kondo en-aut-mei=Y. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=21 ORCID= en-aut-name=KuzubaM. en-aut-sei=Kuzuba en-aut-mei=M. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=22 ORCID= en-aut-name=MatsushitaR. en-aut-sei=Matsushita en-aut-mei=R. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=23 ORCID= en-aut-name=MibeT. en-aut-sei=Mibe en-aut-mei=T. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=24 ORCID= en-aut-name=MiyamotoY. en-aut-sei=Miyamoto en-aut-mei=Y. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=25 ORCID= en-aut-name=NakamuraJ.?G. en-aut-sei=Nakamura en-aut-mei=J.?G. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=26 ORCID= en-aut-name=NakazawaY. en-aut-sei=Nakazawa en-aut-mei=Y. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=27 ORCID= en-aut-name=OgawaS. en-aut-sei=Ogawa en-aut-mei=S. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=28 ORCID= en-aut-name=OkazakiY. en-aut-sei=Okazaki en-aut-mei=Y. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=29 ORCID= en-aut-name=OlinA. en-aut-sei=Olin en-aut-mei=A. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=30 ORCID= en-aut-name=OtaniM. en-aut-sei=Otani en-aut-mei=M. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=31 ORCID= en-aut-name=OyamaS. en-aut-sei=Oyama en-aut-mei=S. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=32 ORCID= en-aut-name=SaitoN. en-aut-sei=Saito en-aut-mei=N. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=33 ORCID= en-aut-name=SatoH. en-aut-sei=Sato en-aut-mei=H. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=34 ORCID= en-aut-name=SatoT. en-aut-sei=Sato en-aut-mei=T. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=35 ORCID= en-aut-name=SatoY. en-aut-sei=Sato en-aut-mei=Y. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=36 ORCID= en-aut-name=ShimomuraK. en-aut-sei=Shimomura en-aut-mei=K. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=37 ORCID= en-aut-name=ShioyaZ. en-aut-sei=Shioya en-aut-mei=Z. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=38 ORCID= en-aut-name=StrasserP. en-aut-sei=Strasser en-aut-mei=P. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=39 ORCID= en-aut-name=SugiyamaS. en-aut-sei=Sugiyama en-aut-mei=S. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=40 ORCID= en-aut-name=SumiK. en-aut-sei=Sumi en-aut-mei=K. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=41 ORCID= en-aut-name=SuzukiK. en-aut-sei=Suzuki en-aut-mei=K. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=42 ORCID= en-aut-name=TakeuchiY. en-aut-sei=Takeuchi en-aut-mei=Y. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=43 ORCID= en-aut-name=TanidaM. en-aut-sei=Tanida en-aut-mei=M. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=44 ORCID= en-aut-name=TojoJ. en-aut-sei=Tojo en-aut-mei=J. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=45 ORCID= en-aut-name=UedaK. en-aut-sei=Ueda en-aut-mei=K. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=46 ORCID= en-aut-name=UetakeS. en-aut-sei=Uetake en-aut-mei=S. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=47 ORCID= en-aut-name=XieX.?H. en-aut-sei=Xie en-aut-mei=X.?H. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=48 ORCID= en-aut-name=YamadaM. en-aut-sei=Yamada en-aut-mei=M. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=49 ORCID= en-aut-name=YamamotoS. en-aut-sei=Yamamoto en-aut-mei=S. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=50 ORCID= en-aut-name=YamazakiT. en-aut-sei=Yamazaki en-aut-mei=T. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=51 ORCID= en-aut-name=YamuraK. en-aut-sei=Yamura en-aut-mei=K. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=52 ORCID= en-aut-name=YoshidaM. en-aut-sei=Yoshida en-aut-mei=M. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=53 ORCID= en-aut-name=YoshiokaT. en-aut-sei=Yoshioka en-aut-mei=T. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=54 ORCID= en-aut-name=YotsuzukaM. en-aut-sei=Yotsuzuka en-aut-mei=M. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=55 ORCID= affil-num=1 en-affil=Graduate School of Science, University of Tokyo kn-affil= affil-num=2 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=3 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= affil-num=4 en-affil=Institute of Science and Technology, Niigata University kn-affil= affil-num=5 en-affil=Graduate School of Science, Nagoya University kn-affil= affil-num=6 en-affil=Graduate School of Science, Nagoya University kn-affil= affil-num=7 en-affil=Graduate School of Science, Nagoya University kn-affil= affil-num=8 en-affil=Graduate School of Science and Engineering, Ibaraki University kn-affil= affil-num=9 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=10 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= affil-num=11 en-affil=Graduate School of Science, Nagoya University kn-affil= affil-num=12 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=13 en-affil=Department of Chemistry, Laboratory for Advanced Spectroscopy and Imaging Research (LASIR), University of British Columbia kn-affil= affil-num=14 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=15 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=16 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=17 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=18 en-affil=Graduate School of Science, Nagoya University kn-affil= affil-num=19 en-affil=Kobayashi-Maskawa Institute for the Origin of Particles and the Universe, Nagoya University kn-affil= affil-num=20 en-affil=Graduate School of Science, Nagoya University kn-affil= affil-num=21 en-affil=Japan Atomic Energy Agency (JAEA) kn-affil= affil-num=22 en-affil=Graduate School of Science and Engineering, Ibaraki University kn-affil= affil-num=23 en-affil=Graduate School of Science, University of Tokyo kn-affil= affil-num=24 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=25 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= affil-num=26 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=27 en-affil=Graduate School of Science and Engineering, Ibaraki University kn-affil= affil-num=28 en-affil=Research Center of Advanced Particle Physics, Kyushu University kn-affil= affil-num=29 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=30 en-affil=Department of Physics and Astronomy, University of Victoria kn-affil= affil-num=31 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=32 en-affil=Graduate School of Science, University of Tokyo kn-affil= affil-num=33 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=34 en-affil=Graduate School of Science and Engineering, Ibaraki University kn-affil= affil-num=35 en-affil=Graduate School of Science, University of Tokyo kn-affil= affil-num=36 en-affil=Institute of Science and Technology, Niigata University kn-affil= affil-num=37 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=38 en-affil=Faculty of Science, Kyushu University kn-affil= affil-num=39 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=40 en-affil=Graduate School of Science, Nagoya University kn-affil= affil-num=41 en-affil=Graduate School of Science, Nagoya University kn-affil= affil-num=42 en-affil=Kobayashi-Maskawa Institute for the Origin of Particles and the Universe, Nagoya University kn-affil= affil-num=43 en-affil=Faculty of Science, Kyushu University kn-affil= affil-num=44 en-affil=Faculty of Science, Kyushu University kn-affil= affil-num=45 en-affil=Faculty of Science, Kyushu University kn-affil= affil-num=46 en-affil=Graduate School of Science, Nagoya University, Nagoya kn-affil= affil-num=47 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= affil-num=48 en-affil=School of Physics, Peking University kn-affil= affil-num=49 en-affil=Faculty of Science, Kyushu University kn-affil= affil-num=50 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= affil-num=51 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=52 en-affil=Institute of Science and Technology, Niigata University kn-affil= affil-num=53 en-affil=High Energy Accelerator Research Organization kn-affil= affil-num=54 en-affil=Research Center of Advanced Particle Physics, Kyushu University kn-affil= affil-num=55 en-affil=Graduate School of Science, Nagoya University kn-affil= END start-ver=1.4 cd-journal=joma no-vol=68 cd-vols= no-issue=1 article-no= start-page=183 end-page=204 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=On the stratification of combinatorial spectra en-subtitle= kn-subtitle= en-abstract= kn-abstract=In this note, we investigate a mixture of combinatorial spectra and stratified simplicial sets, which would be thought of as a model of the spectrum objects of (‡,‡)-categories. en-copyright= kn-copyright= en-aut-name=HoriuchiRyo en-aut-sei=Horiuchi en-aut-mei=Ryo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= affil-num=1 en-affil= kn-affil= END start-ver=1.4 cd-journal=joma no-vol=68 cd-vols= no-issue=1 article-no= start-page=175 end-page=181 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Local cohomology of ideals and the Rn condition of Serre en-subtitle= kn-subtitle= en-abstract= kn-abstract=Let R be a regular ring of dimension d containing a field K of characteristic zero. If E is an R-module let Assi E = {Q ¸ AssE | heightQ = i}. Let P be a prime ideal in R of height g. We show that if R/P satisfies Serrefs condition Ri then Assg+i+1 Hg+1P(R) is a finite set. As an application of our techniques we prove that if P is a prime ideal in R such that (R/P)q is regular for any non-maximal prime ideal q then HiP(R) has finitely many associate primes for all i. en-copyright= kn-copyright= en-aut-name=PuthenpurakalTony J. en-aut-sei=Puthenpurakal en-aut-mei=Tony J. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= affil-num=1 en-affil=Department of Mathematics, IIT Bombay kn-affil= en-keyword=local cohomology kn-keyword=local cohomology en-keyword=regular rings kn-keyword=regular rings en-keyword=Rn condition kn-keyword=Rn condition END start-ver=1.4 cd-journal=joma no-vol=68 cd-vols= no-issue=1 article-no= start-page=147 end-page=174 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Wronskian theory revisited from a linear algebraic and null space viewpoint en-subtitle= kn-subtitle= en-abstract= kn-abstract=This paper aims at providing a new fundamental framework for the Wronskian theory by paying attention to the null space of the Wronski matrix. It is first shown that identical vanishing of the Wronskian leads to two different representations of vector-valued functions that lie in the null space of the Wronski matrix. It is further shown that they are algebraically linearly dependent, by which we are immediately led to a key identity in the Wronskian theory, derived only through very simple linear algebraic arguments. Most fundamental results on the Wronskian theory available in the literature can thus be obtained in a quite straightforward fashion with a very clear perspective, and hence the relevant arguments are believed to be of pedagogical value, too. Some further issues relevant to the null space viewpoint are also discussed, where some other results available in the literature are derived through the null space viewpoint in a somewhat strengthened form. en-copyright= kn-copyright= en-aut-name=HagiwaraTomomichi en-aut-sei=Hagiwara en-aut-mei=Tomomichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= affil-num=1 en-affil=Department of Electrical Engineering Graduate School of Engineering Kyoto University kn-affil= en-keyword=linear independence of functions kn-keyword=linear independence of functions en-keyword=Wronski matrix kn-keyword=Wronski matrix en-keyword=eigenspace kn-keyword=eigenspace en-keyword=determinants kn-keyword=determinants en-keyword=minors kn-keyword=minors END start-ver=1.4 cd-journal=joma no-vol=68 cd-vols= no-issue=1 article-no= start-page=139 end-page=146 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Matijevic-Roberts type theorems, Rees rings and associated graded rings en-subtitle= kn-subtitle= en-abstract= kn-abstract=The aim of this article is to investigate interrelated structures lying among three notable problems in commutative algebra. These are Lifting problem, Ascent/descent along associated graded rings, and Matijevic-Roberts type problem. en-copyright= kn-copyright= en-aut-name=HoriuchiJun en-aut-sei=Horiuchi en-aut-mei=Jun kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=ShimomotoKazuma en-aut-sei=Shimomoto en-aut-mei=Kazuma kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= affil-num=1 en-affil=Department of Mathematics, Nippon Institute of Technology kn-affil= affil-num=2 en-affil=Department of Mathematics, Institute of Science Tokyo kn-affil= en-keyword=Associated graded ring kn-keyword=Associated graded ring en-keyword=integral closure kn-keyword=integral closure en-keyword=Rees ring kn-keyword=Rees ring en-keyword=seminormality kn-keyword=seminormality en-keyword=weak normality kn-keyword=weak normality END start-ver=1.4 cd-journal=joma no-vol=68 cd-vols= no-issue=1 article-no= start-page=113 end-page=137 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Resolution theorem of the algebraic K-theory and its applications en-subtitle= kn-subtitle= en-abstract= kn-abstract=The main objective is showing a variant of resolution theorem of connective Waldhausen K-theory in suitable situations. We construct two sequences of subcategories, one is consisting of finitely generated symmetric module spectra which satisfy the condition of the resolution theorem and the other is consisting of the corresponding ‡-subcategories of certain finitely generated module spectra. As an application, we construct a sequence of subcategories consisting of certain DG-modules satisfying the condition of a resolution theorem. en-copyright= kn-copyright= en-aut-name=OharaMariko en-aut-sei=Ohara en-aut-mei=Mariko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= affil-num=1 en-affil=Center for Liberal Arts and Sciences Faculty of Engineering Toyama Prefectural University kn-affil= en-keyword=K-theory kn-keyword=K-theory en-keyword=projective modules kn-keyword=projective modules en-keyword=E‡-rings kn-keyword=E‡-rings en-keyword=infinity category kn-keyword=infinity category END start-ver=1.4 cd-journal=joma no-vol=68 cd-vols= no-issue=1 article-no= start-page=89 end-page=111 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Retract problem and a subset admitting complete Boolean algebra structure of monoidally distributive posets en-subtitle= kn-subtitle= en-abstract= kn-abstract=In [3], Hovey and Palmieri proved many interesing results around the Bousfield lattice of the stable homotopy caregory of spectra. In [4], the author, Shimomura and Tatehara defined monoidally distributive posets as a generalization of the Bousfield lattice. In this paper, we consider the retract problem and a subset admitting complete Boolean algebra structure of monoidally distributive posets. In the last section, we see that some results in [3] are given by our results in this paper. en-copyright= kn-copyright= en-aut-name=KatoRyo en-aut-sei=Kato en-aut-mei=Ryo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= affil-num=1 en-affil=Department of Core Studies, Kochi University of Technology kn-affil= en-keyword=Bousfield lattice kn-keyword=Bousfield lattice en-keyword=Monoidal poset kn-keyword=Monoidal poset en-keyword=Retract problem kn-keyword=Retract problem END start-ver=1.4 cd-journal=joma no-vol=68 cd-vols= no-issue=1 article-no= start-page=77 end-page=87 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=On groups of units of commutative finite rings en-subtitle= kn-subtitle= en-abstract= kn-abstract=Let R be a commutative completely primary finite ring with unique maximal ideal J such that J3 = {0} and J2 ?= {0}. In this paper, we investigate and determine the structure of the group of units U(R) of the ring R of characteristic p3 without giving any conditions on the generators for the maximal ideal J or on the invariants of the ring R. en-copyright= kn-copyright= en-aut-name=ChikunjiChitengfa John en-aut-sei=Chikunji en-aut-mei=Chitengfa John kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= affil-num=1 en-affil=Department of Biometry and Mathematics, Botswana University of Agriculture and Natural Resources kn-affil= en-keyword=commutative finite rings kn-keyword=commutative finite rings en-keyword=unit groups kn-keyword=unit groups END start-ver=1.4 cd-journal=joma no-vol=68 cd-vols= no-issue=1 article-no= start-page=63 end-page=75 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=The Dijkgraaf-Witten invariants from second Chern classes en-subtitle= kn-subtitle= en-abstract= kn-abstract=Given a 3-cocycle ƒÕ in the cohomology of a finite group G, we can define the Dijkgraaf-Witten invariant of closed 3-manifolds. In this paper, we focus on the case where ƒÕ is a 3-cocycle systematically transferred from the second Chern class of a complex representation of G, and show some procedures for computing the invariant, and clarify its topological interpretation under some conditions. en-copyright= kn-copyright= en-aut-name=NosakaTakefumi en-aut-sei=Nosaka en-aut-mei=Takefumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= affil-num=1 en-affil=Department of Mathematics, Tokyo Institute of Technology kn-affil= en-keyword=Group cohomology kn-keyword=Group cohomology en-keyword=3-manifold kn-keyword=3-manifold en-keyword=Chern classes kn-keyword=Chern classes en-keyword=splitting principle kn-keyword=splitting principle END start-ver=1.4 cd-journal=joma no-vol=68 cd-vols= no-issue=1 article-no= start-page=13 end-page=62 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Natural homotopy of multipointed d-spaces en-subtitle= kn-subtitle= en-abstract= kn-abstract=We identify Grandisf directed spaces as a full reflective subcategory of the category of multipointed d-spaces. When the multipointed d-space realizes a precubical set, its reflection coincides with the standard realization of the precubical set as a directed space. The reflection enables us to extend the construction of the natural system of topological spaces in Baues-Wirschingfs sense from directed spaces to multipointed d-spaces. In the case of a cellular multipointed d-space, there is a discrete version of this natural system which is proved to be bisimilar up to homotopy. We also prove that these constructions are invariant up to homotopy under globular subdivision. These results are the globular analogue of Dubutfs results. Finally, we point the apparent incompatibility between the notion of bisimilar natural systems and the q-model structure of multipointed d-spaces and we give some suggestions for future works. en-copyright= kn-copyright= en-aut-name=GaucherPhilippe en-aut-sei=Gaucher en-aut-mei=Philippe kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= affil-num=1 en-affil=Universit? Paris Cit?, CNRS, IRIF kn-affil= en-keyword=multipointed d-space kn-keyword=multipointed d-space en-keyword=globular subdivision kn-keyword=globular subdivision en-keyword=directed path kn-keyword=directed path en-keyword=natural system kn-keyword=natural system en-keyword=bisimulation kn-keyword=bisimulation en-keyword=open map kn-keyword=open map END start-ver=1.4 cd-journal=joma no-vol=68 cd-vols= no-issue=1 article-no= start-page=1 end-page=12 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Generator of the quadratic subextension of an odd dihedral extension en-subtitle= kn-subtitle= en-abstract= kn-abstract=In this paper we present an algorithm to make a generator of the quadratic subextension of an odd dihedral extension. As an application we solve the Galois group problem for the quintic polynomials given by Kishi and Yamada. en-copyright= kn-copyright= en-aut-name=KomatsuToru en-aut-sei=Komatsu en-aut-mei=Toru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= affil-num=1 en-affil=Department of Mathematics Faculty of Science and Technology Tokyo University of Science kn-affil= en-keyword=Dihedral extension kn-keyword=Dihedral extension en-keyword=quadratic subextension kn-keyword=quadratic subextension en-keyword=Galois theory kn-keyword=Galois theory END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page=1 end-page=4 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=2026 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Indicators for Monitoring Recovery From Surgery to Discharge Using Accelerometer in Patients With Esophageal Cancer en-subtitle= kn-subtitle= en-abstract= kn-abstract=Esophageal cancer is a highly invasive malignancy necessitating esophagectomy, which is associated with considerable postoperative morbidity and prolonged hospitalization. Enhanced Recovery After Surgery (ERAS) protocols recommend early mobilization to facilitate recovery; however, objectively assessing physical activity during hospitalization remains challenging. Traditional methods, such as the 6-min walk test or patient-reported questionnaires can be burdensome, or may not accurately reflect recovery. Accelerometer-based measurement provides a low-burden, objective approach, but previous studies focused on the immediate postoperative period or long after discharge, leaving the recovery trajectory from surgery to discharge underexplored. en-copyright= kn-copyright= en-aut-name=YamaneTakahiro en-aut-sei=Yamane en-aut-mei=Takahiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KimuraYoshikazu en-aut-sei=Kimura en-aut-mei=Yoshikazu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=TetsutaniManami en-aut-sei=Tetsutani en-aut-mei=Manami kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=YamamuraShota en-aut-sei=Yamamura en-aut-mei=Shota kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=ItoAiru en-aut-sei=Ito en-aut-mei=Airu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=TanumaMoe en-aut-sei=Tanuma en-aut-mei=Moe kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=HonjohMina en-aut-sei=Honjoh en-aut-mei=Mina kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MoriwakiYoshiko en-aut-sei=Moriwaki en-aut-mei=Yoshiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=NomaKazuhiro en-aut-sei=Noma en-aut-mei=Kazuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=TanabeShunsuke en-aut-sei=Tanabe en-aut-mei=Shunsuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=MaedaNaoaki en-aut-sei=Maeda en-aut-mei=Naoaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=MatsuokaYoshikazu en-aut-sei=Matsuoka en-aut-mei=Yoshikazu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=MoritaMizuki en-aut-sei=Morita en-aut-mei=Mizuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=MorimatsuHiroshi en-aut-sei=Morimatsu en-aut-mei=Hiroshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= affil-num=1 en-affil=Department of Biomedical Informatics, Okayama University Graduate School of Interdisciplinary Science and Engineering in Health Systems kn-affil= affil-num=2 en-affil=Department of Anesthesiology and Resuscitology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Faculty of Health Sciences, Okayama University Medical School kn-affil= affil-num=4 en-affil=Faculty of Health Sciences, Okayama University Medical School kn-affil= affil-num=5 en-affil=Faculty of Health Sciences, Okayama University Medical School kn-affil= affil-num=6 en-affil=Faculty of Health Sciences, Okayama University Medical School kn-affil= affil-num=7 en-affil=Faculty of Health Sciences, Okayama University Medical School kn-affil= affil-num=8 en-affil=Department of Anesthesiology and Resuscitology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=9 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=10 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=11 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=12 en-affil=Department of Anesthesiology and Resuscitology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=13 en-affil=Department of Biomedical Informatics, Okayama University Graduate School of Interdisciplinary Science and Engineering in Health Systems kn-affil= affil-num=14 en-affil=Department of Anesthesiology and Resuscitology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= en-keyword=actigraphy kn-keyword=actigraphy en-keyword=esophageal cancer kn-keyword=esophageal cancer en-keyword=monitoring indicator kn-keyword=monitoring indicator en-keyword=physical activity kn-keyword=physical activity en-keyword=postoperative recovery kn-keyword=postoperative recovery en-keyword=surgery]to]discharge kn-keyword=surgery]to]discharge END start-ver=1.4 cd-journal=joma no-vol=65 cd-vols= no-issue=10 article-no= start-page=1421 end-page=1430 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260515 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Mycobacterium intracellulare Infection in a Japanese Patient with Signal Transducer and Activator of Transcription-3 Gain-of-function Syndrome en-subtitle= kn-subtitle= en-abstract= kn-abstract=Signal transducer and activator of transcription-3 (STAT3) gain-of-function (GOF) syndrome predisposes patients to autoimmunity diseases. Yet, nontuberculous mycobacterial (NTM) infections have rarely been described. We herein report a teenage Japanese patient with genetically confirmed STAT3-GOF syndrome who developed Mycobacterium intracellulare disease. Combination antimycobacterial chemotherapy reduced the bacterial burden; however, the refractory NTM infection relapsed after initiation of adjunctive tofacitinib therapy. The present case demonstrates that host-directed therapy must be combined with prolonged antimycobacterial regimens to control drug-resistant NTM in patients with inborn errors of immunity. en-copyright= kn-copyright= en-aut-name=HagiyaHideharu en-aut-sei=Hagiya en-aut-mei=Hideharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=SoejimaYoshiaki en-aut-sei=Soejima en-aut-mei=Yoshiaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=TokumasuKazuki en-aut-sei=Tokumasu en-aut-mei=Kazuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=HiraiYoji en-aut-sei=Hirai en-aut-mei=Yoji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=OtsukaYuki en-aut-sei=Otsuka en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KawaguchiMarina en-aut-sei=Kawaguchi en-aut-mei=Marina kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=FukushimaShinnosuke en-aut-sei=Fukushima en-aut-mei=Shinnosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=NakamotoKenta en-aut-sei=Nakamoto en-aut-mei=Kenta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=OguniKohei en-aut-sei=Oguni en-aut-mei=Kohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=ShiodeYusuke en-aut-sei=Shiode en-aut-mei=Yusuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=UdaKazuhiro en-aut-sei=Uda en-aut-mei=Kazuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=YashiroMasato en-aut-sei=Yashiro en-aut-mei=Masato kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=HasegawaKousei en-aut-sei=Hasegawa en-aut-mei=Kousei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=IioKoji en-aut-sei=Iio en-aut-mei=Koji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=OtsukaFumio en-aut-sei=Otsuka en-aut-mei=Fumio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= affil-num=1 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= affil-num=2 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of Dermatology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= affil-num=8 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= affil-num=9 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= affil-num=10 en-affil=Department of Ophthalmology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=11 en-affil=Department of Pediatrics, Okayama University Hospital kn-affil= affil-num=12 en-affil=Department of Pediatrics, Okayama University Hospital kn-affil= affil-num=13 en-affil=Department of Pediatrics, Okayama University Hospital kn-affil= affil-num=14 en-affil=Microbiology Division, Clinical Laboratory, Okayama University Hospital kn-affil= affil-num=15 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=inborn errors of immunity kn-keyword=inborn errors of immunity en-keyword=Mycobacterium avium complex kn-keyword=Mycobacterium avium complex en-keyword=nontuberculous mycobacteria kn-keyword=nontuberculous mycobacteria en-keyword=primary immunodeficiency syndrome kn-keyword=primary immunodeficiency syndrome en-keyword=signal transducer and activator of transcription-3 kn-keyword=signal transducer and activator of transcription-3 END start-ver=1.4 cd-journal=joma no-vol=65 cd-vols= no-issue=5 article-no= start-page=762 end-page=763 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260301 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Cervical Clue in Spontaneous Pneumomediastinum en-subtitle= kn-subtitle= en-abstract= kn-abstract= en-copyright= kn-copyright= en-aut-name=NojimaTsuyoshi en-aut-sei=Nojima en-aut-mei=Tsuyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=ObaraTakafumi en-aut-sei=Obara en-aut-mei=Takafumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=HongoTakashi en-aut-sei=Hongo en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NakaoAtsunori en-aut-sei=Nakao en-aut-mei=Atsunori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= affil-num=1 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences Okayama University kn-affil= affil-num=2 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences Okayama University kn-affil= affil-num=3 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences Okayama University kn-affil= affil-num=4 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences Okayama University kn-affil= en-keyword=spontaneous pneumomediastinum kn-keyword=spontaneous pneumomediastinum en-keyword=throat tightness kn-keyword=throat tightness en-keyword=cervical imaging kn-keyword=cervical imaging en-keyword=chest radiography kn-keyword=chest radiography END start-ver=1.4 cd-journal=joma no-vol=36 cd-vols= no-issue=5 article-no= start-page=1142 end-page=1155.e6 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202603 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Compound starch granule formation in grass seeds is associated with distinct temporal patterns of gene expression en-subtitle= kn-subtitle= en-abstract= kn-abstract=There is extensive interspecies variation in starch granule morphology in the endosperm of grass species, but the factors underpinning this variation are poorly understood. The two major granule morphology types among species are simple and compound granules, where simple granules arise from a single initiation per amyloplast, and compound granules form from multiple granule initiations. Here, we carried out an extensive survey of seed starch morphology, examining specimens from 105 species within the Pooideae using electron microscopy. This not only expanded our current knowledge of the diversity of starch granule types but also confirmed the homoplasy of simple and compound starch granules. We then selected species representing independent origins of simple (Brachyelytrum japonicum, Phaenosperma globosa, and Brachypodium distachyon) and compound granules (Nardus stricta, Melica altissima, and Calamagrostis brachytricha) for analysis of starch structure and gene expression. There were no clear patterns in starch content, amylopectin structure, or amylose content that could distinguish the two granule types. However, comparative transcriptomics over seed development revealed gene expression patterns associated with granule type, most notably increasing expression of STARCH SYNTHASE 3a (SS3a), STARCH BRANCHING ENZYME 1 (SBE1), and limit dextrinases (LDAs) between 3 and 9 days post anthesis in species with compound granules. Mutation of these genes in rice, which natively produces compound granules, resulted in altered granule shape and/or size. Our work highlights differences in gene expression that could contribute to natural variation in granule morphology within the Pooideae while providing important new starch phenotype and gene expression datasets that can be widely used to study endosperm development. en-copyright= kn-copyright= en-aut-name=Watson-LazowskiAlexander en-aut-sei=Watson-Lazowski en-aut-mei=Alexander kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FeikeDoreen en-aut-sei=Feike en-aut-mei=Doreen kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=NgaiQi Yang en-aut-sei=Ngai en-aut-mei=Qi Yang kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=EschLara en-aut-sei=Esch en-aut-mei=Lara kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=FujitaNaoko en-aut-sei=Fujita en-aut-mei=Naoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MatsushimaRyo en-aut-sei=Matsushima en-aut-mei=Ryo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=SmithAlison M. en-aut-sei=Smith en-aut-mei=Alison M. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=SeungDavid en-aut-sei=Seung en-aut-mei=David kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= affil-num=1 en-affil=John Innes Centre, Norwich Research Park kn-affil= affil-num=2 en-affil=John Innes Centre, Norwich Research Park kn-affil= affil-num=3 en-affil=John Innes Centre, Norwich Research Park kn-affil= affil-num=4 en-affil=John Innes Centre, Norwich Research Park kn-affil= affil-num=5 en-affil=Department of Biological Production, Akita Prefectural University kn-affil= affil-num=6 en-affil=Institute of Plant Science and Resources, Okayama University kn-affil= affil-num=7 en-affil=John Innes Centre, Norwich Research Park kn-affil= affil-num=8 en-affil=John Innes Centre, Norwich Research Park kn-affil= en-keyword=amylopectin kn-keyword=amylopectin en-keyword=amylose kn-keyword=amylose en-keyword=endosperm kn-keyword=endosperm en-keyword=grasses kn-keyword=grasses en-keyword=starch kn-keyword=starch en-keyword=starch granule kn-keyword=starch granule en-keyword=transcriptomics kn-keyword=transcriptomics END start-ver=1.4 cd-journal=joma no-vol=208 cd-vols= no-issue=5 article-no= start-page=e00103-26 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260521 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Knockout of tusA confers cationic antimicrobial resistance via fur and omp genes in Escherichia coli en-subtitle= kn-subtitle= en-abstract= kn-abstract=tRNA 2-thiouridine synthesizing protein A (TusA), a sulfur-carrier protein, plays a crucial role in tRNA sulfur modification. Several studies have reported that tusA deficiency affects iron?sulfur (Fe?S) homeostasis in addition to tRNA sulfur modification, resulting in pleiotropic phenotypes. In this study, we analyzed the phenotype of tusA-deficient Escherichia coli and its underlying mechanisms. Although the Keio tusA knockout strain showed increased swimming motility and flagellar biosynthesis, these phenotypes were not restored by tusA complementation. Genome resequencing of the original Keio tusA knockout strain identified an unintended secondary mutation in lrhA, a transcriptional regulator of flagellar and chemotaxis genes. This secondary mutation impaired lrhA function, contributing to enhanced flagellar synthesis and swimming motility, as well as altered global gene expression. A tusA knockout strain in which the secondary mutation was corrected (ƒ¢tusA) exhibited reduced swimming motility compared with the wild-type strain, despite showing no abnormalities in flagellar formation. Furthermore, ƒ¢tusA displayed increased resistance to cationic antibacterial agents, including cetyltrimethylammonium bromide, cetylpyridinium chloride, and protamine sulfate. The reduced motility caused by tusA deletion was observed independently of Fur, a global regulator of iron homeostasis, whereas resistance to cationic antibacterial agents was abolished in the fur knockout background. In addition, altered expression of outer membrane protein (omp) genes was observed in ƒ¢tusA, and deletion of these omp genes abolished resistance to cationic antibacterial agents. Together, these results indicate that, by disentangling the phenotypic effects of tusA deletion from those of the unintended secondary mutation, loss of tusA confers resistance to cationic antibacterial agents through a Fur-dependent and Omp-dependent mechanism. en-copyright= kn-copyright= en-aut-name=IshikawaKazuya en-aut-sei=Ishikawa en-aut-mei=Kazuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=NakataKiho en-aut-sei=Nakata en-aut-mei=Kiho kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YamadaKoichiro en-aut-sei=Yamada en-aut-mei=Koichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=UnemeMio en-aut-sei=Uneme en-aut-mei=Mio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=FurutaKazuyuki en-aut-sei=Furuta en-aut-mei=Kazuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KaitoChikara en-aut-sei=Kaito en-aut-mei=Chikara kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=6 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=tusA kn-keyword=tusA en-keyword=fur kn-keyword=fur en-keyword=Escherichia coli kn-keyword=Escherichia coli en-keyword=cationic antimicrobial agents kn-keyword=cationic antimicrobial agents END start-ver=1.4 cd-journal=joma no-vol=8 cd-vols= no-issue=11 article-no= start-page=8183 end-page=8197 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260530 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Solution Structure and Counterion Condensation of Carboxymethyl Cellulose in Organic Solvents en-subtitle= kn-subtitle= en-abstract= kn-abstract=We report scattering (SANS and SAXS) and electrical conductivity data for aqueous and organic solutions of carboxymethyl cellulose with tetrabutylammonium counterions. For SANS in deuterated solvents, the contrast is heavily dominated by the hydrogen-rich counterions, while for SAXS the polymer backbone has a more significant contribution to the scattering signal. The correlation length calculated from the SAXS measurements follows a scaling law of ƒÌ å c?1/2, while that measured by SANS displays a weaker exponent at higher concentrations for solvents of high dielectric constants. These results indicate a decoupling in the characteristic length scales of fluctuations of the polymer backbone and counterions at high polyelectrolyte concentrations. The stretching parameter calculated from the correlation length indicates a highly stretched local conformation for TBACMC in water and several high dielectric constant solvents, consistent with the semiflexible nature of the cellulose backbone. In solvents of lower dielectric permittivity, the chains display a higher degree of local coiling. Combining electrical conductivity and scattering data, we find that the fraction of monomers bearing a dissociated charge is nearly independent of concentration and approximately proportional to the reciprocal of the Bjerrum length of the solvent, as expected by the Oosawa-Manning model. en-copyright= kn-copyright= en-aut-name=GulatiAnish en-aut-sei=Gulati en-aut-mei=Anish kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MengLingzi en-aut-sei=Meng en-aut-mei=Lingzi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=HouCan en-aut-sei=Hou en-aut-mei=Can kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=WatanabeTakaichi en-aut-sei=Watanabe en-aut-mei=Takaichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=LopezCarlos G. en-aut-sei=Lopez en-aut-mei=Carlos G. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= affil-num=1 en-affil=Institute of Physical Chemistry, RWTH Aachen University kn-affil= affil-num=2 en-affil=Materials Science and Engineering Department, The Pennsylvania State University kn-affil= affil-num=3 en-affil=Institute of Physical Chemistry, RWTH Aachen University kn-affil= affil-num=4 en-affil=Department of Applied Chemistry, Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=5 en-affil=Materials Science and Engineering Department, The Pennsylvania State University kn-affil= en-keyword=polyelectrolyte kn-keyword=polyelectrolyte en-keyword=scattering kn-keyword=scattering en-keyword=conductivity kn-keyword=conductivity en-keyword=cellulose kn-keyword=cellulose en-keyword=condensation kn-keyword=condensation END start-ver=1.4 cd-journal=joma no-vol=24 cd-vols= no-issue=1 article-no= start-page=69 end-page=77 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=2026 dt-online= en-article= kn-article= en-subject= kn-subject= en-title=‰Á—î‚ÉŒW‚é•ω»ˆÓޝCŽåŠÏ“IK•ŸŠ´CS—“IƒXƒgƒŒƒX‚ÌŠÖ˜A kn-title=Relationships between awareness of age-related change, subjective well-being, and psychological stress en-subtitle= kn-subtitle= en-abstract= kn-abstract=–{Œ¤‹†‚ÍA‰Á—î‚É”º‚¤•ω»‚Ì”FޝiAwareness of Age-Related Change: AARCjAŽåŠÏ“IK•ŸŠ´iSubjective Well-Being:SWBjA‚¨‚æ‚ÑS—“IƒXƒgƒŒƒX‚Ìc’f“IŠÖŒW‚ÌŒŸ“¢‚ðs‚Á‚½BAARC ‚ÍAƒ‰ƒCƒtƒXƒpƒ“”­’B—˜_‚ÉŠî‚«AS—“I“K‰ž‚Éd—v‚È–ðŠ„‚ð‰Ê‚½‚·‚Æ‚³‚ê‚éBæsŒ¤‹†‚Å‚ÍAARC ‚ÆK•ŸŠ´‚ÌŠÖ˜A‚ª•ñ‚³‚ê‚Ä‚¢‚邪A‘½‚­‚͉¡’fŒ¤‹†‚Å‚ ‚èAŽžŠÔ“I•ûŒü«‚ðl—¶‚µ‚½ŒŸ“¢‚Í•s\•ª‚Å‚ ‚éB‚»‚±‚Å–{Œ¤‹†‚Å‚ÍA“ú–{‚Ì40 ΈÈã‚̬l585 –¼‚ð‘ÎÛ‚ÉAAARC ’Zk”ÅiAARC-10 SFjAl¶–ž‘«“xŽÚ“xiSWLSjAS—“IƒXƒgƒŒƒXŽÚ“xiK6j‚ð—p‚¢‚ÄA2 Žž“_i2022 ”N7 ŒŽA2023 ”N10 ŒŽj‚ŃIƒ“ƒ‰ƒCƒ“’²¸‚ðŽÀŽ{‚µ‚½BŒð·’x‰„Œø‰Êƒ‚ƒfƒ‹‚Ì•ªÍ‚ÌŒ‹‰ÊAAARC-gains ‚ÆSWLS ‚ÌŠÔ‚É‘o•ûŒü‚ÌŠÖ˜A‚ª”F‚ß‚ç‚êAAARC-gains ‚ª‚‚¢l‚Ù‚ÇŒã‚ÌŽåŠÏ“IK•ŸŠ´‚ª‚‚­A‚»‚Ì‹t‚ଗ§‚·‚邱‚Æ‚ªŽ¦‚³‚ꂽBˆê•ûAS—“IƒXƒgƒŒƒX‚ÍAARC-losses ‚ɑ΂µ‚Ĉê•ûŒü‚ÌŠÖ˜A‚ªŠm”F‚³‚êAƒXƒgƒŒƒX‚ª‚‚¢l‚Ù‚ÇŒã‚ÌAARC-losses ‚ª‚‚¢‚±‚Æ‚ªŽ¦‚³‚ꂽB‚±‚ê‚ç‚ÌŒ‹‰Ê‚ÍAƒ‰ƒCƒtƒXƒpƒ“”­’B—˜_‚̘g‘g‚݂Ʈ‡‚µA‰Á—î‚É”º‚¤“K‰ž‰ß’ö‚Ì—‰ð‚ð[‚ß‚é‚à‚̂ł ‚éB‰î“ü‚É‚¨‚¢‚Ä‚ÍAAARC-gains ‚ð‘£i‚µK•ŸŠ´‚ð‚‚߂邱‚Æ‚ª‚—îŽÒ‚̃TƒNƒZƒXƒtƒ‹EƒGƒCƒWƒ“ƒO‚ÉŠñ—^‚·‚é‰Â”\«‚ª‚ ‚éB en-copyright= kn-copyright= en-aut-name=ShiraishiNatsue en-aut-sei=Shiraishi en-aut-mei=Natsue kn-aut-name=”’Î “ޒÉh kn-aut-sei=”’Î kn-aut-mei=“ޒÉh aut-affil-num=1 ORCID= en-aut-name=BrothersAllyson en-aut-sei=Brothers en-aut-mei=Allyson kn-aut-name=ƒuƒ‰ƒU[ƒY ƒAƒŠƒ\ƒ“ kn-aut-sei=ƒuƒ‰ƒU[ƒY kn-aut-mei=ƒAƒŠƒ\ƒ“ aut-affil-num=2 ORCID= en-aut-name=YamamotoYasuhiro en-aut-sei=Yamamoto en-aut-mei=Yasuhiro kn-aut-name=ŽR–{ N—T kn-aut-sei=ŽR–{ kn-aut-mei=N—T aut-affil-num=3 ORCID= en-aut-name=NakagawaTakeshi en-aut-sei=Nakagawa en-aut-mei=Takeshi kn-aut-name=’†ì ˆÐ kn-aut-sei=’†ì kn-aut-mei=ˆÐ aut-affil-num=4 ORCID= en-aut-name=HoriuchiTakashi en-aut-sei=Horiuchi en-aut-mei=Takashi kn-aut-name=–x“à F kn-aut-sei=–x“à kn-aut-mei=F aut-affil-num=5 ORCID= affil-num=1 en-affil=Graduate School of Social and Cultural Sciences, Okayama University kn-affil=‰ªŽR‘åŠw ‘åŠw‰@ŽÐ‰ï•¶‰»‰ÈŠwŒ¤‹†‰È affil-num=2 en-affil=Human Development and Family Studies, Colorado State University kn-affil=ƒRƒƒ‰ƒhB—§‘åŠw lŠÔ”­’BE‰Æ‘°Šw‰È affil-num=3 en-affil=Faculty of Education, Okayama University kn-affil=‰ªŽR‘åŠw ŠwpŒ¤‹†‰@‹³ˆçŠwˆæ affil-num=4 en-affil=Graduate School of Human Sciences, University of Osaka kn-affil=‘åã‘åŠw ‘åŠw‰@lŠÔ‰ÈŠwŒ¤‹†‰È affil-num=5 en-affil=Faculty of Humanities and Social Sciences, Okayama University kn-affil=‰ªŽR‘åŠw ŠwpŒ¤‹†‰@ŽÐ‰ï•¶‰»‰ÈŠwŠwˆæ en-keyword=subjective well-being kn-keyword=subjective well-being en-keyword=psychological stress kn-keyword=psychological stress en-keyword=subjective agings kn-keyword=subjective agings en-keyword=awareness of age-related change kn-keyword=awareness of age-related change en-keyword=life satisfaction kn-keyword=life satisfaction END start-ver=1.4 cd-journal=joma no-vol=15 cd-vols= no-issue=2 article-no= start-page=215 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250218 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=A Review on the Magnetovolume Effect of the Full Heusler Alloys Ni2MnZ (Z = In, Sn, Sb) en-subtitle= kn-subtitle= en-abstract= kn-abstract=The full Heusler alloys Ni2MnZ (Z = In, Sn, Sb) exhibit ferromagnetic properties with a Curie temperature (TC) above room temperature. The magnetic properties of Ni2MnZ (Z = In, Sn, Sb) were studied through a combination of experiments and band calculations under ambient and elevated pressures. The main results of this study open up further prospects for controlling the magnetic properties of the multifunctional Heusler alloys Ni2Mn1+xZ1?x (Z = In, Sn, Sb) and their practical application. en-copyright= kn-copyright= en-aut-name=KanomataTakeshi en-aut-sei=Kanomata en-aut-mei=Takeshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=XuXiao en-aut-sei=Xu en-aut-mei=Xiao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=SakonTakuo en-aut-sei=Sakon en-aut-mei=Takuo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NagataYuki en-aut-sei=Nagata en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=ImadaShin en-aut-sei=Imada en-aut-mei=Shin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=OmoriToshihiro en-aut-sei=Omori en-aut-mei=Toshihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KainumaRyosuke en-aut-sei=Kainuma en-aut-mei=Ryosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=EtoTetsujiro en-aut-sei=Eto en-aut-mei=Tetsujiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=AdachiYoshiya en-aut-sei=Adachi en-aut-mei=Yoshiya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=KiharaTakumi en-aut-sei=Kihara en-aut-mei=Takumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=AmakoYasushi en-aut-sei=Amako en-aut-mei=Yasushi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=DoiMasaaki en-aut-sei=Doi en-aut-mei=Masaaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=UwatokoYoshiya en-aut-sei=Uwatoko en-aut-mei=Yoshiya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= affil-num=1 en-affil=Research Institute for Engineering and Technology, Tohoku Gakuin University kn-affil= affil-num=2 en-affil=Department of Materials Science, Graduate School of Engineering, Tohoku University kn-affil= affil-num=3 en-affil=Faculty of Advanced Science and Technology, Ryukoku University kn-affil= affil-num=4 en-affil=Faculty of Advanced Science and Technology, Ryukoku University kn-affil= affil-num=5 en-affil=College of Science and Engineering, Ritsumeikan University kn-affil= affil-num=6 en-affil=Department of Materials Science, Graduate School of Engineering, Tohoku University kn-affil= affil-num=7 en-affil=Department of Materials Science, Graduate School of Engineering, Tohoku University kn-affil= affil-num=8 en-affil=Kurume Institute of Technology kn-affil= affil-num=9 en-affil=Graduate School of Science and Technology, Yamagata University kn-affil= affil-num=10 en-affil=Research Institute for Interdisciplinary Science, Okayama University kn-affil= affil-num=11 en-affil=Faculty of Science, Shinshu University kn-affil= affil-num=12 en-affil=Research Institute for Engineering and Technology, Tohoku Gakuin University kn-affil= affil-num=13 en-affil=Institute for Solid State Physics, The University of Tokyo kn-affil= en-keyword=magnetovolume effect kn-keyword=magnetovolume effect en-keyword=magnetic properties kn-keyword=magnetic properties en-keyword=pressure effect kn-keyword=pressure effect en-keyword=itinerant electron magnets kn-keyword=itinerant electron magnets en-keyword=Heusler alloys kn-keyword=Heusler alloys END start-ver=1.4 cd-journal=joma no-vol=16 cd-vols= no-issue=1 article-no= start-page=1866 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250221 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Grain boundary diffusion cannot explain the W isotope heterogeneities of the deep mantle en-subtitle= kn-subtitle= en-abstract= kn-abstract=The low 182W/184W and high 3He/4He in some ocean island basalts compared to the bulk mantle values may derive from the Earthfs core through long-term core-mantle interactions. It has been proposed that the grain boundary diffusion of siderophile elements is an efficient mechanism for core-mantle interaction and may effectively modify the W isotopic compositions of the plume-source mantle. In this study, we perform large-scale molecular dynamics simulations driven by machine learning potentials of ab initio quality to investigate the diffusion of W along ferropericlase grain boundaries and in (Mg,Fe)O liquid. Here we show that the diffusion of W is sluggish under core-mantle boundary conditions, and thus is unlikely to have observable impacts on the W isotopic compositions of terrestrial igneous rocks. en-copyright= kn-copyright= en-aut-name=PengYihang en-aut-sei=Peng en-aut-mei=Yihang kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=YoshinoTakashi en-aut-sei=Yoshino en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=DengJie en-aut-sei=Deng en-aut-mei=Jie kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= affil-num=1 en-affil=Department of Geosciences, Princeton University kn-affil= affil-num=2 en-affil=Institute for Planetary Materials, Okayama University kn-affil= affil-num=3 en-affil=Department of Geosciences, Princeton University kn-affil= END start-ver=1.4 cd-journal=joma no-vol=12 cd-vols= no-issue= article-no= start-page=rbae144 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=2025 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Optimizing ƒÀ-TCP with E-rhBMP-2-infused fibrin for vertical bone regeneration in a mouse calvarium model en-subtitle= kn-subtitle= en-abstract= kn-abstract=Effective reconstruction of large bone defects, particularly in thickness, remains one of the major challenges in orthopedic and dental fields. We previously produced an Escherichia coli-based industrial-scale GMP-grade recombinant human bone morphogenetic protein-2 (E-rhBMP-2) and showed that the combination of E-rhBMP-2 with beta-tricalcium phosphate (ƒÀ-TCP/E-rhBMP-2) can effectively promote bone reconstruction. However, the limited mechanical strength and poor morphology retention of ƒÀ-TCP granules are key points that need optimization to obtain more effective grafts and further expand its clinical applications. Therefore, we combined ƒÀ-TCP/E-rhBMP-2 with fibrin gel to enhance its mechanical properties and usability for vertical bone regeneration. We investigated the mechanical properties and vertical bone regeneration effects of the materials applied, with or without fibrin containing E-rhBMP-2, in a calvarial defect model in mice. Compression tests were conducted to assess the initial stability of the materials. Scanning electron microscopy and Fourier transform infrared spectroscopy were conducted to characterize the presence of fibrin on the scaffold. After 4 and 12?weeks of implantation, micro-computed tomography and histological and immunofluorescent analyses were performed to assess the morphology and volume of the newly formed bone. The fibrin-containing groups had significantly higher initial mechanical strength and higher ability to maintain their morphology in vivo compared to the counterparts without fibrin. However, fibrin gel alone suppressed the bone formation ability of ƒÀ-TCP/E-rhBMP-2 whereas the presence of high doses of E-rhBMP-2 in fibrin gel resulted in material resorption and enhanced new bone formation. In conclusion, fibrin gel significantly improved the mechanical strength and surgical manageability of the ƒÀ-TCP/E-rhBMP-2 scaffold, and the addition of E-rhBMP-2 to the fibrin gel further enhanced the vertical bone regeneration and initial structural integrity of the scaffold. en-copyright= kn-copyright= en-aut-name=ZhaoKun en-aut-sei=Zhao en-aut-mei=Kun kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=OnoMitsuaki en-aut-sei=Ono en-aut-mei=Mitsuaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MuXindi en-aut-sei=Mu en-aut-mei=Xindi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=WangZiyi en-aut-sei=Wang en-aut-mei=Ziyi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=XieShichao en-aut-sei=Xie en-aut-mei=Shichao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=YonezawaTomoko en-aut-sei=Yonezawa en-aut-mei=Tomoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=OkadaMasahiro en-aut-sei=Okada en-aut-mei=Masahiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MatsumotoTakuya en-aut-sei=Matsumoto en-aut-mei=Takuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=KubokiTakuo en-aut-sei=Kuboki en-aut-mei=Takuo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=OohashiToshitaka en-aut-sei=Oohashi en-aut-mei=Toshitaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=Department of Molecular Biology and Biochemistry, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Oral Rehabilitation and Regenerative Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Molecular Biology and Biochemistry, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of Molecular Biology and Biochemistry, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of Biomaterials, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Molecular Biology and Biochemistry, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Division of Dental Biomaterials, Tohoku University Graduate School of Dentistry kn-affil= affil-num=8 en-affil=Department of Biomaterials, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=9 en-affil=Department of Oral Rehabilitation and Regenerative Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=10 en-affil=Department of Molecular Biology and Biochemistry, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=BMP-2 kn-keyword=BMP-2 en-keyword=fibrin kn-keyword=fibrin en-keyword=vertical bone regeneration kn-keyword=vertical bone regeneration en-keyword=biocompatible materials kn-keyword=biocompatible materials END start-ver=1.4 cd-journal=joma no-vol=5 cd-vols= no-issue=1 article-no= start-page=12 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250320 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=The Early Response After Radiation Therapy on Three-Dimensional Oral Cancer Model Using Patient-Derived Cancer-Associated Fibroblasts en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background/Objectives: Cancer-associated fibroblasts (CAFs), which are an important component of the tumor microenvironment, have been reported to have an adverse effect on conventional radiotherapy. This study aims to elucidate the effects of CAFs in boron neutron capture therapy (BNCT) using a three-dimensional (3D) oral cancer model. Methods: Three-dimensional cancer models were fabricated using patient-derived CAFs or patient-derived normal oral fibroblasts (NOFs) and a human oral squamous cell carcinoma cell line. Each 3D cancer model was performed with either a conventional X-ray treatment or BNCT and additionally analyzed histomorphologically. Results: The 3D oral cancer-CAFs model demonstrated a greater depth of cancer cell invasion than the 3D oral cancer-NOFs model. Radiation therapy for the 3D oral cancer models indicated a trend for decreasing cancer cell invasion and cell number with dose dependence in both X-ray and BNCT. In comparison with X-rays, BNCT showed a consistent increase in the number of NOFs and a significant reduction in the number of CAFs. Conclusions: BNCT for the 3D oral cancer model was shown to be effective against cancer cells and CAFs but not against NOFs, indicating its usefulness as a minimally invasive treatment for advanced cancer. Furthermore, it is indicated that the 3D oral cancer-CAFs model is a valuable tool to evaluate cancer treatment and research, particularly in high-grade malignant tumors with invasion. en-copyright= kn-copyright= en-aut-name=YamamotoIzumi en-aut-sei=Yamamoto en-aut-mei=Izumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=IgawaKazuyo en-aut-sei=Igawa en-aut-mei=Kazuyo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KondoNatsuko en-aut-sei=Kondo en-aut-mei=Natsuko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=SakuraiYoshinori en-aut-sei=Sakurai en-aut-mei=Yoshinori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=FujimuraAtsushi en-aut-sei=Fujimura en-aut-mei=Atsushi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=TakabatakeKiyofumi en-aut-sei=Takabatake en-aut-mei=Kiyofumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=HuangPeng en-aut-sei=Huang en-aut-mei=Peng kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MichiueHiroyuki en-aut-sei=Michiue en-aut-mei=Hiroyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=IbaragiSoichiro en-aut-sei=Ibaragi en-aut-mei=Soichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=IzumiKenji en-aut-sei=Izumi en-aut-mei=Kenji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=Neutron Therapy Research Center, Okayama University kn-affil= affil-num=2 en-affil=Neutron Therapy Research Center, Okayama University kn-affil= affil-num=3 en-affil=Particle Radiation Oncology Center, Institute for Integrated Radiation and Nuclear Science, Kyoto University kn-affil= affil-num=4 en-affil=Particle Radiation Oncology Center, Institute for Integrated Radiation and Nuclear Science, Kyoto University kn-affil= affil-num=5 en-affil=Department of Physiology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=6 en-affil=Department of Oral Pathology and Medicine, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Neutron Therapy Research Center, Okayama University kn-affil= affil-num=8 en-affil=Neutron Therapy Research Center, Okayama University kn-affil= affil-num=9 en-affil=Department of Oral and Maxillofacial Surgery, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=10 en-affil=Division of Biomimetics, Faculty of Dentistry & Graduate School of Medical and Dental Sciences, Niigata University kn-affil= en-keyword=3D model kn-keyword=3D model en-keyword=oral cancer kn-keyword=oral cancer en-keyword=patient-derived cells kn-keyword=patient-derived cells en-keyword=cancer-associated fibroblasts kn-keyword=cancer-associated fibroblasts en-keyword=radiation treatment kn-keyword=radiation treatment en-keyword=boron neutron capture therapy kn-keyword=boron neutron capture therapy en-keyword=malignant tumors kn-keyword=malignant tumors END start-ver=1.4 cd-journal=joma no-vol=16 cd-vols= no-issue=1 article-no= start-page=3239 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250404 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Low melt viscosity enables melt doublets above the 410-km discontinuity en-subtitle= kn-subtitle= en-abstract= kn-abstract=Seismic and magnetotelluric studies suggest hydrous silicate melts atop the 410?km discontinuity form 30?100?km thick layers. Importantly, in some regions, two layers are observed. These stagnant layers are related to their comparable density to the surrounding mantle, but their formation mechanisms and detailed structures remain unclear. Here we report a large decrease of silicate melt viscosity at ~14?GPa, from 96(5) to 11.7(6) mPa?s, as water content increases from 15.5 to 31.8?mol% H?O. Such low viscosities facilitate rapid segregation of melt, which would typically prevent thick layer accumulation. Our 1D finite element simulations show that continuous dehydration melting of upwelling mantle material produces a primary melt layer above 410?km and a secondary layer at the depth of equal mantle-melt densities. These layers can merge into a single thick layer under low density contrasts or high upwelling rates, explaining both melt doublets and thick single layers. en-copyright= kn-copyright= en-aut-name=XieLongjian en-aut-sei=Xie en-aut-mei=Longjian kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=AndraultDenis en-aut-sei=Andrault en-aut-mei=Denis kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YoshinoTakashi en-aut-sei=Yoshino en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=HanCunrui en-aut-sei=Han en-aut-mei=Cunrui kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=HammondJames O. S. en-aut-sei=Hammond en-aut-mei=James O. S. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=XuFang en-aut-sei=Xu en-aut-mei=Fang kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=ZhaoBin en-aut-sei=Zhao en-aut-mei=Bin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=LordOliver T. en-aut-sei=Lord en-aut-mei=Oliver T. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=FeiYingwei en-aut-sei=Fei en-aut-mei=Yingwei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=FalvardSimon en-aut-sei=Falvard en-aut-mei=Simon kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=KakizawaSho en-aut-sei=Kakizawa en-aut-mei=Sho kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=TsujinoNoriyoshi en-aut-sei=Tsujino en-aut-mei=Noriyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=HigoYuji en-aut-sei=Higo en-aut-mei=Yuji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=HenryLaura en-aut-sei=Henry en-aut-mei=Laura kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=GuignotNicolas en-aut-sei=Guignot en-aut-mei=Nicolas kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=DobsonDavid P. en-aut-sei=Dobson en-aut-mei=David P. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= affil-num=1 en-affil=Center for High Pressure Science & Technology Advanced Research kn-affil= affil-num=2 en-affil=Universit? Clermont Auvergne, CNRS, IRD, OPGC, Laboratoire Magmas et Volcans kn-affil= affil-num=3 en-affil=Institute for Planetary Materials, Okayama University kn-affil= affil-num=4 en-affil=School of Natural Sciences, Birkbeck, University of London kn-affil= affil-num=5 en-affil=School of Natural Sciences, Birkbeck, University of London kn-affil= affil-num=6 en-affil=School of Earth Sciences, Zhejiang University kn-affil= affil-num=7 en-affil=Institute for Planetary Materials, Okayama University kn-affil= affil-num=8 en-affil=School of Earth Sciences, University of Bristol kn-affil= affil-num=9 en-affil=Earth & Planets Laboratory, Carnegie Institution for Science kn-affil= affil-num=10 en-affil=Universit? Clermont Auvergne, CNRS, IRD, OPGC, Laboratoire Magmas et Volcans kn-affil= affil-num=11 en-affil=Japan Synchrotron Radiation Research Institute kn-affil= affil-num=12 en-affil=Japan Synchrotron Radiation Research Institute kn-affil= affil-num=13 en-affil=Japan Synchrotron Radiation Research Institute kn-affil= affil-num=14 en-affil=Synchrotron SOLEIL kn-affil= affil-num=15 en-affil=Synchrotron SOLEIL kn-affil= affil-num=16 en-affil=Department of Earth Sciences, University College London kn-affil= END start-ver=1.4 cd-journal=joma no-vol=25 cd-vols= no-issue=1 article-no= start-page=524 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250322 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Long-term outcomes of salvage high-dose-rate brachytherapy for localized recurrence of prostate cancer following definitive radiation therapy: a retrospective analysis en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background Salvage high-dose-rate brachytherapy (HDR-BT) is a potential treatment for localized recurrence of prostate cancer following definitive radiation therapy. This study aimed to evaluate the long-term safety and efficacy of HDR-BT alone, without androgen deprivation therapy (ADT), in this patient population.
Methods We conducted a retrospective analysis of patients with prostate cancer who developed pathologically confirmed local recurrence after definitive radiation therapy and were treated with salvage HDR-BT alone at Kawasaki Medical School Hospital between 2007 and 2021. The prescribed HDR-BT dose was 22 Gy in 2 fractions. Biochemical relapse-free survival (bRFS), cause-specific survival (CSS), and overall survival (OS) were assessed using the Kaplan?Meier method. Adverse events were evaluated based on the Common Terminology Criteria for Adverse Events.
Results Thirty-five patients were included, with a median follow-up of 66.0 months (range, 8.1?169.1). The 5-year bRFS, CSS, and OS rates were 29.7%, 100%, and 89.3%, respectively. Biochemical recurrence occurred in 21 patients (60.0%). Grade 2 adverse events were reported in eight patients (22.9%), while two (5.7%) experienced grade 3 adverse events. All grade 3 adverse events occurred in patients who had HDR-BT as their initial definitive radiation therapy.
Conclusions Salvage HDR-BT without ADT is a safe and effective treatment option for localized prostate cancer recurrence after definitive radiation therapy. It provides excellent CSS rates with acceptable toxicity while potentially reducing the need for ADT. Further prospective studies are warranted to confirm these findings. en-copyright= kn-copyright= en-aut-name=WatanabeKenta en-aut-sei=Watanabe en-aut-mei=Kenta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KamitaniNobuhiko en-aut-sei=Kamitani en-aut-mei=Nobuhiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=IkedaNaoki en-aut-sei=Ikeda en-aut-mei=Naoki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KawataYujiro en-aut-sei=Kawata en-aut-mei=Yujiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TokiyaRyoji en-aut-sei=Tokiya en-aut-mei=Ryoji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=HayashiTakafumi en-aut-sei=Hayashi en-aut-mei=Takafumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=MiyajiYoshiyuki en-aut-sei=Miyaji en-aut-mei=Yoshiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=TamadaTsutomu en-aut-sei=Tamada en-aut-mei=Tsutomu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=KatsuiKuniaki en-aut-sei=Katsui en-aut-mei=Kuniaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil=Department of Radiology, Okayama University Hospital kn-affil= affil-num=2 en-affil=Department of Radiology, Kawasaki Medical School kn-affil= affil-num=3 en-affil=Department of Radiology, Kawasaki Medical School kn-affil= affil-num=4 en-affil=Department of Radiology, Kawasaki Medical School kn-affil= affil-num=5 en-affil=Department of Radiology, Kawasaki Medical School kn-affil= affil-num=6 en-affil=Department of Radiology, Kawasaki Medical School kn-affil= affil-num=7 en-affil=Department of Urology, Kawasaki Medical School kn-affil= affil-num=8 en-affil=Department of Radiology, Kawasaki Medical School kn-affil= affil-num=9 en-affil=Department of Radiology, Kawasaki Medical School kn-affil= en-keyword=Prostate cancer kn-keyword=Prostate cancer en-keyword=Radiation therapy kn-keyword=Radiation therapy en-keyword=High kn-keyword=High en-keyword=Dose kn-keyword=Dose en-keyword=Rate brachytherapy kn-keyword=Rate brachytherapy en-keyword=Salvage therapy kn-keyword=Salvage therapy en-keyword=Biochemical recurrence kn-keyword=Biochemical recurrence en-keyword=Local recurrence kn-keyword=Local recurrence en-keyword=Androgen deprivation therapy kn-keyword=Androgen deprivation therapy en-keyword=Long kn-keyword=Long en-keyword=Term outcomes kn-keyword=Term outcomes en-keyword=Toxicity kn-keyword=Toxicity en-keyword=Cause kn-keyword=Cause en-keyword=Specific survival kn-keyword=Specific survival END start-ver=1.4 cd-journal=joma no-vol=32 cd-vols= no-issue=6 article-no= start-page=324 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250531 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Global Incidence Trend of Early-Onset Obesity-Related and Non-Obesity-Related Cancers en-subtitle= kn-subtitle= en-abstract= kn-abstract=The global rise in obesity prevalence and the incidence of early-onset cancer (diagnosed between 20 and 49 years of age) is a serious public health concern. We, therefore, evaluated the recent global trends in the incidence of early-onset obesity-related cancers and compared them to those of non-obesity-related cancers. We obtained age-standardized incidence rates of early-onset cancers diagnosed between 2000 and 2012 in 44 countries from the Cancer Incidence in Five Continents database. Using joinpoint regression models, we calculated the average annual percentage changes (AAPCs) and their corresponding 95% confidence intervals (95% CIs) for combined and individual categories of obesity-related cancers (11 and 9 cancer types in females and males, respectively) and non-obesity-related cancers (12 cancer types in both females and males). Differences in the AAPC were assessed by comparing 95% CIs, where nonoverlapping 95% CIs were considered statistically significantly different. We observed statistically significant positive AAPCs for early-onset obesity-related cancers in all available countries combined among females (global AAPC, 4.3%; 95% CI, 4.1?4.6%) and males (global AAPC, 1.4%; 95% CI, 1.2?1.7%). When analyzed by countries, we observed statistically significant positive AAPCs in 26 countries among females and 11 countries among males. AAPCs for early-onset obesity-related cancers were statistically significantly higher than those of non-obesity-related cancers in several regions, especially North America and Oceania. In conclusion, this study indicates that the incidence of early-onset obesity-related cancers exhibited a more pronounced increasing trend than non-obesity-related cancers among both sexes in many countries and regions. en-copyright= kn-copyright= en-aut-name=TerashimaMiyu en-aut-sei=Terashima en-aut-mei=Miyu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=NakayamaKota en-aut-sei=Nakayama en-aut-mei=Kota kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=UgaiSatoko en-aut-sei=Ugai en-aut-mei=Satoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=LeeHwa-Young en-aut-sei=Lee en-aut-mei=Hwa-Young kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TsukumoYuta en-aut-sei=Tsukumo en-aut-mei=Yuta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=SuzukiEtsuji en-aut-sei=Suzuki en-aut-mei=Etsuji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=MizunoHiroki en-aut-sei=Mizuno en-aut-mei=Hiroki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=SongMinkyo en-aut-sei=Song en-aut-mei=Minkyo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=SasamotoNaoko en-aut-sei=Sasamoto en-aut-mei=Naoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=KawachiIchiro en-aut-sei=Kawachi en-aut-mei=Ichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=UgaiTomotaka en-aut-sei=Ugai en-aut-mei=Tomotaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= affil-num=1 en-affil=Okayama University Medical School kn-affil= affil-num=2 en-affil=Okayama University Medical School kn-affil= affil-num=3 en-affil=Department of Epidemiology, Harvard T.H. Chan School of Public Health, Boston, MA 02215, USA kn-affil= affil-num=4 en-affil=Graduate School of Public Health and Healthcare Management, The Catholic University of Korea kn-affil= affil-num=5 en-affil=Department of Epidemiology, Harvard T.H. Chan School of Public Health kn-affil= affil-num=6 en-affil=Department of Epidemiology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Department of Epidemiology, Harvard T.H. Chan School of Public Health kn-affil= affil-num=8 en-affil=Laboratory of Epidemiology and Population Sciences, National Institute on Aging, National Institutes of Health kn-affil= affil-num=9 en-affil=Public Health Sciences Division, Fred Hutchinson Cancer Center kn-affil= affil-num=10 en-affil=Department of Social and Behavioral Sciences, Harvard T.H. Chan School of Public Health kn-affil= affil-num=11 en-affil=Department of Epidemiology, Harvard T.H. Chan School of Public Health kn-affil= en-keyword=neoplasms kn-keyword=neoplasms en-keyword=etiology kn-keyword=etiology en-keyword=risk factors kn-keyword=risk factors en-keyword=global health kn-keyword=global health en-keyword=young adults kn-keyword=young adults END start-ver=1.4 cd-journal=joma no-vol=11 cd-vols= no-issue=4 article-no= start-page=001363 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250408 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Whole-genome-based characterization of Escherichia albertii strains isolated from paediatric diarrhoeal cases in Kolkata, India en-subtitle= kn-subtitle= en-abstract= kn-abstract=Escherichia albertii is a Gram-negative facultative anaerobic bacterium that causes diarrhoea in humans. This study shows the isolation of E. albertii from hospitalized paediatric diarrhoeal cases and genome-based characteristics with putative virulence factors and antimicrobial resistance. E. albertii isolates were identified by species-specific PCR, targeting the gene encoding cytolethal distending toxin (Ea-cdt). The genome of E. albertii was sequenced to identify (i) genes encoding virulence factors (ii) antibiotic resistance-encoding genes, including the mobile genetic elements and (iii) core gene-based phylogenetic relationships and pan-genome features. A total of 10 (1.2%) E. albertii isolates were isolated from 854 faecal samples, of which 6 (60%) were found as the sole pathogen and the remaining 4 (40%) were identified along with other pathogens, such as enteroaggregative Escherichia coli, rotavirus and adenovirus. Patients from whom E. albertii was isolated presented cholera-like diarrhoea, i.e. with watery stool (60%) with moderate dehydration (100%), fever (20%) and abdominal pain (20%). The antimicrobial susceptibility testing of E. albertii showed that most of the isolates were susceptible or reduced susceptible to most of the antibiotics except resistance to erythromycin (80%), tetracycline (50%), nalidixic acid (40%), ampicillin (40%), doxycycline (30%) and ceftriaxone (20%). In the whole-genome sequence, E. albertii isolates revealed several virulence-encoding genes, namely the intimin (eae, E. coli attaching and effacing), the cytolethal distending toxin type II subunit A (cdt-IIA), adhesion (paa, porcine attaching- and effacing-associated), non-LEE (locus of enterocyte effacement) encoded effector A (nleA) and antimicrobial resistance genes (ARGs) conferring resistance to tetracycline (tetA, tetR), sulphonamides (sul2), fluoroquinolones (qnrS) and beta-lactamases (blaCTX-M, blaTEM). The SNP-based phylogenetic analysis of 647 whole genomes of E. albertii isolates from the National Center for Biotechnology Information databases did not reveal any comparable clustering pattern based on the biological source and place of isolation. The genome of some of the E. albertii was closely related to those of the isolates from China and the United Kingdom. The PFGE patterns revealed that most of the E. albertii isolates were distinct clones. This study reports on the extensive genome analysis of diarrhoea-associated E. albertii harbouring multiple virulence and ARGs. en-copyright= kn-copyright= en-aut-name=ChowdhuryGoutam en-aut-sei=Chowdhury en-aut-mei=Goutam kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HoshikoYuki en-aut-sei=Hoshiko en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=OkunoMiki en-aut-sei=Okuno en-aut-mei=Miki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KitaharaKei en-aut-sei=Kitahara en-aut-mei=Kei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=AlbertM John en-aut-sei=Albert en-aut-mei=M John kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MiyoshiShin-ichi en-aut-sei=Miyoshi en-aut-mei=Shin-ichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=OguraYoshitoshi en-aut-sei=Ogura en-aut-mei=Yoshitoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=DuttaShanta en-aut-sei=Dutta en-aut-mei=Shanta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=RamamurthyThandavarayan en-aut-sei=Ramamurthy en-aut-mei=Thandavarayan kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=MukhopadhyayAsish K. en-aut-sei=Mukhopadhyay en-aut-mei=Asish K. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=Collaborative Research Centre of Okayama University for Infectious Diseases, ICMR-National Institute of Cholera and Enteric Diseases kn-affil= affil-num=2 en-affil=Division of Microbiology, Department of Infectious Medicine, School of Medicine, Kurume University kn-affil= affil-num=3 en-affil=Division of Microbiology, Department of Infectious Medicine, School of Medicine, Kurume University kn-affil= affil-num=4 en-affil=Collaborative Research Centre of Okayama University for Infectious Diseases, ICMR-National Institute of Cholera and Enteric Diseases kn-affil= affil-num=5 en-affil=Department of Microbiology, College of Medicine, Kuwait University kn-affil= affil-num=6 en-affil=Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Division of Microbiology, Department of Infectious Medicine, School of Medicine, Kurume University kn-affil= affil-num=8 en-affil=Division of Bacteriology, ICMR-National Institute of Cholera and Enteric Diseases kn-affil= affil-num=9 en-affil=Division of Bacteriology, ICMR-National Institute of Cholera and Enteric Diseases kn-affil= affil-num=10 en-affil=Division of Bacteriology, ICMR-National Institute of Cholera and Enteric Diseases kn-affil= en-keyword=antimicrobial resistance kn-keyword=antimicrobial resistance en-keyword=diarrhoea kn-keyword=diarrhoea en-keyword=E. albertii kn-keyword=E. albertii en-keyword=virulence kn-keyword=virulence en-keyword=whole-genome sequence kn-keyword=whole-genome sequence END start-ver=1.4 cd-journal=joma no-vol=78 cd-vols= no-issue=1 article-no= start-page=57 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260216 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Electrical conductivity measurements of rhyolitic glass at high pressure and high temperature en-subtitle= kn-subtitle= en-abstract= kn-abstract=We performed electrical conductivity measurements of rhyolite glasses across the glass transition temperature at 1 GPa. Our experimental data show that, in the Arrhenius plot, the conductivity of rhyolite with 0.2 wt% H2O has an inflection point between around 760 K, while for rhyolite with 4.9 wt% H2O the gradient changes between 685 and 825 K. These inflection points correlate with the glass transition temperature, and are compared with results of previous experiments. The degree of welding of clastic and hydrous rock can be constrained by estimating glass transition temperatures of volcanic rocks combined with measurements of electrical conductivity structures obtained from electromagnetic soundings beneath volcanic bodies. This, in turn, can be used to aid predictions of volcanic eruption. en-copyright= kn-copyright= en-aut-name=HaraguchiYusuke en-aut-sei=Haraguchi en-aut-mei=Yusuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=Fuji-TaKiyoshi en-aut-sei=Fuji-Ta en-aut-mei=Kiyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YoshinoTakashi en-aut-sei=Yoshino en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NakamotoMasashi en-aut-sei=Nakamoto en-aut-mei=Masashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=SuzukiMasanori en-aut-sei=Suzuki en-aut-mei=Masanori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=TanakaToshihiro en-aut-sei=Tanaka en-aut-mei=Toshihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Graduate School of Engineering, The University of Osaka kn-affil= affil-num=2 en-affil=Graduate School of Engineering, The University of Osaka kn-affil= affil-num=3 en-affil=Institute for Planetary Materials, Okayama University kn-affil= affil-num=4 en-affil=Graduate School of Engineering, The University of Osaka kn-affil= affil-num=5 en-affil=Graduate School of Engineering, The University of Osaka kn-affil= affil-num=6 en-affil=Graduate School of Engineering, The University of Osaka kn-affil= en-keyword=Electrical conductivity kn-keyword=Electrical conductivity en-keyword=Glass transition temperature kn-keyword=Glass transition temperature en-keyword=melt kn-keyword=melt en-keyword=clastics kn-keyword=clastics END start-ver=1.4 cd-journal=joma no-vol=301 cd-vols= no-issue=3 article-no= start-page=108273 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=202503 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Taste receptor type 1 member 3 in osteoclasts regulates osteoclastogenesis via detection of glucose en-subtitle= kn-subtitle= en-abstract= kn-abstract=The taste system extends beyond the oral cavity, with various taste receptors found in extraoral organs. Mice deficient in the taste receptor type 1 (TAS1R) family member, TAS1R3, and fed a high-fat, high-sugar diet showed high bone mass without altering food consumption. However, the underlying mechanisms, including the cell types responsible for TAS1R3 expression, remain unclear. Here, we demonstrate the expression and function of TAS1R3 in osteoclasts, which are responsible for bone resorption. The expression of Tas1r3, but not Tas1r1 or Tas1r2, is evoked during osteoclast differentiation. Osteoclastogenesis-related genes were downregulated in TAS1R3-deficient mice, whereas the opposite phenotypes were elicited by TAS1R3 overexpression. Contrary to the common heterodimerization with TAS1R1 or TAS1R2, TAS1R3 formed a homodimer that functioned to detect glucose, enhance p38 phosphorylation, and induce osteoclastogenesis. These results provide novel insights into the role of TAS1R3 in bone metabolism and suggest that TAS1R3 may be a viable target for therapeutic agents in bone metabolic diseases. en-copyright= kn-copyright= en-aut-name=YoshimuraAnna en-aut-sei=Yoshimura en-aut-mei=Anna kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MatsubaraTakuma en-aut-sei=Matsubara en-aut-mei=Takuma kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KodamaNao en-aut-sei=Kodama en-aut-mei=Nao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KakutaYoshimitsu en-aut-sei=Kakuta en-aut-mei=Yoshimitsu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=YasudaKazuma en-aut-sei=Yasuda en-aut-mei=Kazuma kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=YoshidaRyusuke en-aut-sei=Yoshida en-aut-mei=Ryusuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KaminumaOsamu en-aut-sei=Kaminuma en-aut-mei=Osamu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=HosomiShuhei en-aut-sei=Hosomi en-aut-mei=Shuhei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=ShinkawaHiroji en-aut-sei=Shinkawa en-aut-mei=Hiroji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=YuanQuan en-aut-sei=Yuan en-aut-mei=Quan kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=KawamotoTatsuo en-aut-sei=Kawamoto en-aut-mei=Tatsuo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=KokabuShoichiro en-aut-sei=Kokabu en-aut-mei=Shoichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= affil-num=1 en-affil=Division of Molecular Signaling and Biochemistry, Kyushu Dental University kn-affil= affil-num=2 en-affil=Division of Molecular Signaling and Biochemistry, Kyushu Dental University kn-affil= affil-num=3 en-affil=Division of Molecular Signaling and Biochemistry, Kyushu Dental University kn-affil= affil-num=4 en-affil=Laboratory of Structural Biology, Graduate School of Systems Life Sciences, Kyushu University kn-affil= affil-num=5 en-affil=Division of Molecular Signaling and Biochemistry, Kyushu Dental University kn-affil= affil-num=6 en-affil=Department of Oral Physiology, Graduate School of Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Department of Disease Model, Research Institute of Radiation Biology and Medicine, Hiroshima University kn-affil= affil-num=8 en-affil=Department of Gastroenterology, Graduate School of Medicine, Osaka Metropolitan University kn-affil= affil-num=9 en-affil=Department of Hepatobiliary-Pancreatic Surgery, Graduate School of Medicine, Osaka Metropolitan University kn-affil= affil-num=10 en-affil=State Key Laboratory of Oral Diseases & National Center for Stomatology & National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University kn-affil= affil-num=11 en-affil=Division of Orofacial Functions and Orthodontics, Kyushu Dental University kn-affil= affil-num=12 en-affil=Division of Molecular Signaling and Biochemistry, Kyushu Dental University kn-affil= en-keyword=glucose kn-keyword=glucose en-keyword=osteoclasts kn-keyword=osteoclasts en-keyword=p38 kn-keyword=p38 en-keyword=TAS1R3 kn-keyword=TAS1R3 en-keyword=taste receptor kn-keyword=taste receptor END start-ver=1.4 cd-journal=joma no-vol=126 cd-vols= no-issue= article-no= start-page=106710 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=202503 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Proteome analysis reveals the molecular mechanisms of fucoxanthin-induced apoptosis in glial cells PC12 after nanoencapsulation en-subtitle= kn-subtitle= en-abstract= kn-abstract=Fucoxanthin (FX) is a natural pigment belonging to the xanthophyll carotenoid, which has been proven to have inhibitory effects on glioblastoma. In our previous study, nano-FX was fabricated through whey protein and flaxseed gum co-encapsulated for improved stability and glial cell (PC12) inhibitory activity of FX. To investigate the molecular mechanisms of FX-induced apoptosis in PC12 after nanoencapsulation, proteomics analysis based on TMT technology was performed. Protein profiles in PC12 were determined after 0 (Control), 8 (L_Treat), and 24 (H_Treat) ƒÊg/mL nano-FX intervention. Results indicated 78 differential abundant proteins (DAPs) linked to the cytotoxicity of nano-FX could be potential biomarkers. GO and KEGG analysis revealed altered proteasome and NF-kappa B/MAPK/TNF. Proteins involved in cell proliferation were downregulated, while proteins response to autophagy and apoptosis were upregulated. The multiple mechanisms involved in the anti-tumor activity of nano-FX will provide a reference for the development of FX high value-added functional foods. en-copyright= kn-copyright= en-aut-name=WangChunyan en-aut-sei=Wang en-aut-mei=Chunyan kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MaXinxin en-aut-sei=Ma en-aut-mei=Xinxin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=NakamuraYoshimasa en-aut-sei=Nakamura en-aut-mei=Yoshimasa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=QiHang en-aut-sei=Qi en-aut-mei=Hang kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= affil-num=1 en-affil=School of Food Science, Henan Institute of Science and Technology kn-affil= affil-num=2 en-affil=School of Food Science, Henan Institute of Science and Technology kn-affil= affil-num=3 en-affil=Graduate School of Environmental and Life Science, Okayama University kn-affil= affil-num=4 en-affil=SKL of Marine Food Processing & Safety Control, National Engineering Research Center of Seafood, Collaborative Innovation Center of Seafood Deep Processing, School of Food Science and Technology, Dalian Polytechnic University kn-affil= en-keyword=Fucoxanthin kn-keyword=Fucoxanthin en-keyword=Nanoencapsulation kn-keyword=Nanoencapsulation en-keyword=Apoptosis kn-keyword=Apoptosis en-keyword=Proteome analysis kn-keyword=Proteome analysis en-keyword=Molecular mechanisms kn-keyword=Molecular mechanisms END start-ver=1.4 cd-journal=joma no-vol=111 cd-vols= no-issue=5 article-no= start-page=1705 end-page=1715 dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250911 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Distinct interleukin-6 production in IPL and TAFRO subtypes of idiopathic multicentric Castleman disease en-subtitle= kn-subtitle= en-abstract= kn-abstract=Idiopathic multicentric Castleman disease (iMCD) is a rare lymphoproliferative disorder characterized by systemic inflammation and lymphadenopathy. Two major clinical subtypes, idiopathic plasmacytic lymphadenopathy (iMCD-IPL) and iMCD with thrombocytopenia, anasarca, fever, renal dysfunction/reticulin fibrosis, and organomegaly (iMCD-TAFRO), have distinct pathophysiological mechanisms. While interleukin-6 (IL-6) is known to be elevated in iMCD, differences in the sources of IL-6 production between subtypes remain unclear. We examined the source of IL-6 production and its transcriptional regulation across iMCD subtypes using immunohistochemistry, in situ hybridization, and gene expression profiling. Immunohistochemistry and in situ hybridization revealed that plasma cells were the predominant IL-6-expressing cells in iMCD-IPL, whereas vascular endothelial cells expressed IL-6 in iMCD-TAFRO. Plasma cells exhibited stronger IL-6 protein expression in iMCD-IPL than in iMCD-TAFRO. Gene expression analysis revealed upregulation of XBP1, MZB1, DERL3, SSR4, FKBP11, FKBP2, PIM2, RABAC1, and SDF2L1 in iMCD-IPL, implicating endoplasmic reticulum stress and plasma cell differentiation in IL-6 dysregulation. Our findings suggest that XBP1-mediated IL-6 production may contribute to the pathogenesis of iMCD-IPL, potentially explaining its favorable responses to IL-6 blockade therapy. In contrast, IL-6 production in iMCD-TAFRO may be predominantly from vascular endothelial cells, suggesting that elevated serum IL-6 is a secondary phenomenon of the cytokine storm in this subtype. Future studies should clarify how proteomics and gene expression profiling could inform subtype-specific therapeutic strategies in iMCD. en-copyright= kn-copyright= en-aut-name=NishikoriAsami en-aut-sei=Nishikori en-aut-mei=Asami kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=NishimuraMidori Filiz en-aut-sei=Nishimura en-aut-mei=Midori Filiz kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=NishimuraYoshito en-aut-sei=Nishimura en-aut-mei=Yoshito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=YamadaRio en-aut-sei=Yamada en-aut-mei=Rio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=HaratakeTomoka en-aut-sei=Haratake en-aut-mei=Tomoka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=EnnishiDaisuke en-aut-sei=Ennishi en-aut-mei=Daisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=ChijimatsuRyota en-aut-sei=Chijimatsu en-aut-mei=Ryota kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=ItoToshihiro en-aut-sei=Ito en-aut-mei=Toshihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=KogaTomohiro en-aut-sei=Koga en-aut-mei=Tomohiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=OchiSayaka en-aut-sei=Ochi en-aut-mei=Sayaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=KawaharaYuri en-aut-sei=Kawahara en-aut-mei=Yuri kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=UetaHimawari en-aut-sei=Ueta en-aut-mei=Himawari kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=TakedaYudai en-aut-sei=Takeda en-aut-mei=Yudai kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=GonzalezMichael V. en-aut-sei=Gonzalez en-aut-mei=Michael V. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=FajgenbaumDavid C. en-aut-sei=Fajgenbaum en-aut-mei=David C. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=Van RheeFrits en-aut-sei=Van Rhee en-aut-mei=Frits kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=MomoseShuji en-aut-sei=Momose en-aut-mei=Shuji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=SatoYasuharu en-aut-sei=Sato en-aut-mei=Yasuharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= affil-num=1 en-affil=Department of Molecular Hematopathology, Okayama University Graduate School of Health Sciences kn-affil= affil-num=2 en-affil=Department of Molecular Hematopathology, Okayama University Graduate School of Health Sciences kn-affil= affil-num=3 en-affil=Division of Hematology/Oncology, Mayo Clinic kn-affil= affil-num=4 en-affil=Department of Molecular Hematopathology, Okayama University Graduate School of Health Sciences kn-affil= affil-num=5 en-affil=Department of Molecular Hematopathology, Okayama University Graduate School of Health Sciences kn-affil= affil-num=6 en-affil=Center for Comprehensive Genomic Medicine, Okayama University Hospital, Okayama, Japan; Department of Hematology and Oncology, Okayama University Hospital kn-affil= affil-num=7 en-affil=Center for Comprehensive Genomic Medicine, Okayama University Hospital, Okayama, Japan; Department of Hematology and Oncology, Okayama University Hospital kn-affil= affil-num=8 en-affil=Department of Immunology, Nara Medical University kn-affil= affil-num=9 en-affil=Department of Immunology and Rheumatology, Nagasaki University Graduate School of Biomedical Sciences kn-affil= affil-num=10 en-affil=Department of Molecular Hematopathology, Okayama University Graduate School of Health Sciences kn-affil= affil-num=11 en-affil=Department of Molecular Hematopathology, Okayama University Graduate School of Health Sciences kn-affil= affil-num=12 en-affil=Department of Molecular Hematopathology, Okayama University Graduate School of Health Sciences kn-affil= affil-num=13 en-affil=Department of Molecular Hematopathology, Okayama University Graduate School of Health Sciences kn-affil= affil-num=14 en-affil=Center for Cytokine Storm Treatment and Laboratory, Department of Medicine, Perelman School of Medicine, University of Pennsylvania kn-affil= affil-num=15 en-affil=Center for Cytokine Storm Treatment and Laboratory, Department of Medicine, Perelman School of Medicine, University of Pennsylvania kn-affil= affil-num=16 en-affil=University of Arkansas for Medical Sciences kn-affil= affil-num=17 en-affil=Department of Pathology, Saitama Medical Center, Saitama Medical University kn-affil= affil-num=18 en-affil=Department of Molecular Hematopathology, Okayama University Graduate School of Health Sciences kn-affil= END start-ver=1.4 cd-journal=joma no-vol=16 cd-vols= no-issue=1 article-no= start-page=14404 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260217 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Boulder populations and orientation trends on asteroid Ryugu: implications for rubble-pile surface processes en-subtitle= kn-subtitle= en-abstract= kn-abstract=Asteroid (162173) Ryugu is a spinning-top shaped, rubble-pile C-type asteroid with a surface dominated by boulders spanning a broad size-range. Using Hayabusa2 ONC-T mosaics for mapping, we present the most extensive global boulder dataset to date, representing an eleven-fold increase over the earliest survey and greater completeness than later AI-based estimates. Crucially, this work provides the first global boulder orientation dataset. The cumulative size-frequency distribution follows a power-law slope of ??2.665?}?0.066 (boulders???3 m), indicating its fragmented nature. Boulder density is lower along the equatorial ridge, consistent with regolith accumulation during earlier YORP-driven spin-up and poleward migration of blocks during the present spin-down phase. Orientation analyses reveal systematic hemispheric trends in what we define as slope-breaker zones (i.e., regions of high slope differentials), with NW?SE alignment in the northern hemisphere and NE?SW in the southern hemisphere, but absent at the equatorial ridge and poles. We interpret these as reorientations that developed during downslope boulder migration, as despite ongoing spin-down, the current spin rate remains high enough to drive such motion. In addition, fresh craters exhibit locally heightened boulder densities, recording ongoing resurfacing by impact events that exhume buried subsurface boulders and segregate them from finer regolith via seismic shaking induced granular convection. Together, these results yield new insights into rubble-pile surface evolution, rotational dynamics, and impact-driven resurfacing, with boulder orientations providing critical evidence of spin-related downslope transport and establish a framework for comparative asteroid studies. en-copyright= kn-copyright= en-aut-name=RayAditya en-aut-sei=Ray en-aut-mei=Aditya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=RujTrishit en-aut-sei=Ruj en-aut-mei=Trishit kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KomatsuGoro en-aut-sei=Komatsu en-aut-mei=Goro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=VincentLisa M. en-aut-sei=Vincent en-aut-mei=Lisa M. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KikuchiHiroshi en-aut-sei=Kikuchi en-aut-mei=Hiroshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=HemmiRyodo en-aut-sei=Hemmi en-aut-mei=Ryodo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=Orm?Jens en-aut-sei=Orm? en-aut-mei=Jens kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= affil-num=1 en-affil=Institute for Planetary Materials, Okayama University kn-affil= affil-num=2 en-affil=Institute for Planetary Materials, Okayama University kn-affil= affil-num=3 en-affil=International Research School of Planetary Sciences, Universit? G. deAnnunzio kn-affil= affil-num=4 en-affil=Department of Earth Sciences, Utrecht University kn-affil= affil-num=5 en-affil=Gakushuin University kn-affil= affil-num=6 en-affil=Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency kn-affil= affil-num=7 en-affil=Centro de Astrobiolog?a (CAB), CSIC-INTA kn-affil= en-keyword=Asteroid Ryugu kn-keyword=Asteroid Ryugu en-keyword=Asteroidal surfaces kn-keyword=Asteroidal surfaces en-keyword=Regolith kn-keyword=Regolith en-keyword=Geological processes kn-keyword=Geological processes en-keyword=Impact processes kn-keyword=Impact processes END start-ver=1.4 cd-journal=joma no-vol=207 cd-vols= no-issue= article-no= start-page=106961 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202609 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Effects of secondary hydrothermal fluids on gallium distribution and coordination in hot springs silica using Ga K-edge XANES en-subtitle= kn-subtitle= en-abstract= kn-abstract=Gallium (Ga), a critical element in the electronics industry, is enriched in hot spring silica deposits (sinter) at concentrations comparable to, and in some cases greater than, bauxite, coal, and sphalerite deposits from which it is currently extracted. Focusing on well characterized Holocene and Pleistocene New Zealand sinters, we utilize synchrotron-X-ray fluorescence (sXRF) and Ga K-edge X-ray absorption near edge structure (XANES) spectroscopy to examine the spatial distribution of Ga as well as its changing coordination number. Ga+3 is the only observed oxidation state in the analyzed sinters. Gallium is predominantly found in tetrahedral coordination in sinter deposited from alkali chloride fluids, with analyses best matching Ga-aluminosilicate standards. However, Ga coordination is octahedral in sinter samples that have undergone alteration by acidic fluids/gases, associated with a change in hydrology from alkali-chloride to acid-sulfate fluid conditions. High Ga concentrations are found associated with both these coordination environments, with a heterogeneous distribution. Octahedral Ga is observed both as particles and in larger regions affected by Fe-rich fluid overprinting. The combined use of sXRF and XANES demonstrates an ability to fingerprint diagenesis and alteration in these complex geothermal settings where tetrahedral and octahedral Ga co-exist. The transition from tetrahedral to octahedral Ga also appears to mimic the inferred natural process forming lateritic bauxite deposits, where remobilized tetrahedral Ga is reconcentrated and adsorbed to oxides. A similar process may occur for sinter Ga enrichment, whereby introduced Ga in acidic conditions is adsorbed to oxide phases as the Fe-rich secondary fluids infiltrate porous sinter material. en-copyright= kn-copyright= en-aut-name=RoweM.C. en-aut-sei=Rowe en-aut-mei=M.C. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=CampbellK.A. en-aut-sei=Campbell en-aut-mei=K.A. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=StallardD.A. en-aut-sei=Stallard en-aut-mei=D.A. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=LyonB. en-aut-sei=Lyon en-aut-mei=B. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=LangendamA. en-aut-sei=Langendam en-aut-mei=A. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KalininaE. en-aut-sei=Kalinina en-aut-mei=E. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=YamanakaM. en-aut-sei=Yamanaka en-aut-mei=M. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=TanakaR. en-aut-sei=Tanaka en-aut-mei=R. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=ChristopherT. en-aut-sei=Christopher en-aut-mei=T. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=RuffS.W. en-aut-sei=Ruff en-aut-mei=S.W. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=NersezovaE. en-aut-sei=Nersezova en-aut-mei=E. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=OtaT. en-aut-sei=Ota en-aut-mei=T. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=HamiltonA. en-aut-sei=Hamilton en-aut-mei=A. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= affil-num=1 en-affil=School of Environment, University of Auckland kn-affil= affil-num=2 en-affil=School of Environment, University of Auckland kn-affil= affil-num=3 en-affil=School of Environment, University of Auckland kn-affil= affil-num=4 en-affil=School of Environment, University of Auckland kn-affil= affil-num=5 en-affil=Australian Synchrotron Facility (Ansto) kn-affil= affil-num=6 en-affil=The Pheasant Memorial Laboratory for Geochemistry and Cosmochemistry, Institute for Planetary Materials, Okayama University kn-affil= affil-num=7 en-affil=The Pheasant Memorial Laboratory for Geochemistry and Cosmochemistry, Institute for Planetary Materials, Okayama University kn-affil= affil-num=8 en-affil=The Pheasant Memorial Laboratory for Geochemistry and Cosmochemistry, Institute for Planetary Materials, Okayama University kn-affil= affil-num=9 en-affil=School of Chemical Sciences, University of Auckland kn-affil= affil-num=10 en-affil=Arizona State University, School of Earth And Space Exploration kn-affil= affil-num=11 en-affil=School of Environment, University of Auckland kn-affil= affil-num=12 en-affil=The Pheasant Memorial Laboratory for Geochemistry and Cosmochemistry, Institute for Planetary Materials, Okayama University kn-affil= affil-num=13 en-affil=School of Environment, University of Auckland kn-affil= en-keyword=Hot springs kn-keyword=Hot springs en-keyword=New Zealand kn-keyword=New Zealand en-keyword=Gallium kn-keyword=Gallium en-keyword=Sinter kn-keyword=Sinter en-keyword=Synchrotron radiation kn-keyword=Synchrotron radiation en-keyword=Coordination number kn-keyword=Coordination number END start-ver=1.4 cd-journal=joma no-vol=236 cd-vols= no-issue= article-no= start-page=112768 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202610 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=An algorithm to calculate physical density of biomedical objects having 3 ? Zeff ? 20: an application study using clinical photon-counting computed tomography equipment en-subtitle= kn-subtitle= en-abstract= kn-abstract=Recently, photon-counting computed tomography (PC-CT) devices have become clinically available for X-ray diagnosis, and developments of analysis algorithms to generate various quantitative images have focused attention. This study proposes an algorithm to calculate the effective physical density (ƒÏeff) of biological objects having an effective atomic number (Zeff) of 3?20. In our procedure, ƒÏeff was determined when fitting the interaction cross sections (ƒÐs) to the measured linear attenuation coefficients (ƒÊs), which were determined from virtual monochromatic images (VMIs). In this process, the Zeff was analyzed in advance, and this information was fed back to the ƒÏeff analysis. A key feature of our procedure is that it does not require calibration processes based on specific substances, which allow us to analyze any substance without making assumptions.
To validate the availability of the proposed algorithm, we conducted an experiment using a clinical PC-CT scanner. A multi-energy CT phantom, a water phantom, an in-house low-density phantom, food samples, and a chest phantom were scanned. The results showed that our procedure can calculate ƒÏeff of water with an uncertainty of 4.5%. The academic significance of the present research results lies in demonstrating that the factors contributing to contrast, previously obtained from CT values, can be physically interpreted using information from Zeff and ƒÏeff. This analysis cannot be performed with conventional single-energy CT scanners and is possible with PC-CT and dual-energy CT scanners. Our novel procedure is expected to provide useful additional information in X-ray diagnosis. en-copyright= kn-copyright= en-aut-name=HayashiHiroaki en-aut-sei=Hayashi en-aut-mei=Hiroaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=NishigamiRina en-aut-sei=Nishigami en-aut-mei=Rina kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=AsaharaTakashi en-aut-sei=Asahara en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KimotoNatsumi en-aut-sei=Kimoto en-aut-mei=Natsumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KobayashiDaiki en-aut-sei=Kobayashi en-aut-mei=Daiki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MitaniMana en-aut-sei=Mitani en-aut-mei=Mana kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=AkagiNoriaki en-aut-sei=Akagi en-aut-mei=Noriaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=HigakiFumiyo en-aut-sei=Higaki en-aut-mei=Fumiyo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=IguchiToshihiro en-aut-sei=Iguchi en-aut-mei=Toshihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil=College of Transdisciplinary Sciences for Innovation, Kanazawa University kn-affil= affil-num=2 en-affil=Graduate School of Medical Sciences, Kanazawa University kn-affil= affil-num=3 en-affil=Department of Radiological Technology, Faculty of Health Sciences, Okayama University kn-affil= affil-num=4 en-affil=Department of Radiological Science, Faculty of Health Sciences, Junshin Gakuen University kn-affil= affil-num=5 en-affil=Graduate School of Medical Sciences, Kanazawa University kn-affil= affil-num=6 en-affil=Division of Radiological Technology, Medical Support Department, Okayama University Hospital kn-affil= affil-num=7 en-affil=Division of Radiological Technology, Medical Support Department, Okayama University Hospital kn-affil= affil-num=8 en-affil=Department of Radiology, Medical Development Field, Okayama University kn-affil= affil-num=9 en-affil=Department of Radiological Technology, Faculty of Health Sciences, Okayama University kn-affil= en-keyword=Computed tomography kn-keyword=Computed tomography en-keyword=Photon counting kn-keyword=Photon counting en-keyword=Physical density image kn-keyword=Physical density image en-keyword=Virtual monochromatic image kn-keyword=Virtual monochromatic image en-keyword=Diagnostic X-rays kn-keyword=Diagnostic X-rays END start-ver=1.4 cd-journal=joma no-vol=295 cd-vols= no-issue= article-no= start-page=51 end-page=64 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202609 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=A novel spontaneous rat model of chronic kidney disease with mitochondrial dysfunction driven by thioredoxin insufficiency en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background: Chronic kidney disease (CKD) is a global health burden with high prevalence and poor prognosis. Although oxidative stress and mitochondrial dysfunction have been implicated in its pathogenesis, in vivo causal evidence remains limited. Thioredoxin (Trx), encoded by Txn1, is a redox-active protein that plays a central role in controlling oxidative stress and maintaining intracellular redox homeostasis.
Methods: To address this gap, we investigated the lifelong phenotypes of Txn1-F54L mutant rats harboring approximately one-third of the normal Trx activity. These rats were generated via N-ethyl-N-nitrosourea mutagenesis and validated by clustered regularly interspaced palindromic repeat (CRISPR)/CRISPR-associated protein 9 genome editing. Comprehensive analyses included biochemical testing, histopathology, immunohistochemistry, transmission electron microscopy, RNA-sequencing, western blotting, and cytokine profiling.
Results: Txn1-F54L mutant rats spontaneously developed progressive CKD, with median survival times of 110?119 days for homozygotes and 303?346 days for heterozygotes. Their clinical features?elevated blood urea nitrogen, hypoalbuminemia, hypercholesterolemia, hypertension, and arterial medial sclerosis?closely resembled those of human CKD. Histopathological evaluation revealed extensive tubular injury, interstitial fibrosis, and glomerulosclerosis. Transcriptomic profiling identified 3,418 differentially expressed genes significantly enriched in immune activation and fibrosis pathways. Mitochondrial dysfunction was prominent in proximal tubules, accompanied by oxidative stress accumulation and concurrent activation of regulated cell death pathways (apoptosis, necroptosis, and pyroptosis). Elevated serum levels of interleukin-1ƒÀ, interleukin-6, and interferon-ƒÁ indicated systemic inflammation.
Conclusions: Our findings demonstrate that lifelong Trx deficiency induces oxidative stress?mediated mitochondrial dysfunction and regulated cell death, leading to inflammation and progressive CKD. This study establishes the Txn1 mutant rat as a valuable spontaneous CKD model, providing translational insights and a platform for developing therapeutic strategies targeting oxidative stress?induced pathways. en-copyright= kn-copyright= en-aut-name=OhmoriIori K. en-aut-sei=Ohmori en-aut-mei=Iori K. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=OuchidaMamoru en-aut-sei=Ouchida en-aut-mei=Mamoru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=HadaYoshiko en-aut-sei=Hada en-aut-mei=Yoshiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=UchidaHaruhito A. en-aut-sei=Uchida en-aut-mei=Haruhito A. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=ToyokuniShinya en-aut-sei=Toyokuni en-aut-mei=Shinya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MashimoTomoji en-aut-sei=Mashimo en-aut-mei=Tomoji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Section of Developmental Physiology and Pathology, Faculty of Education, Okayama University kn-affil= affil-num=2 en-affil=Department of Molecular Oncology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Department of Nephrology, Rheumatology, Endocrinology and Metabolism, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Department of Pathology and Biological Responses, Nagoya University Graduate School of Medicine kn-affil= affil-num=6 en-affil=Division of Animal Genetics, Laboratory Animal Research Center, Institute of Medical Science, The University of Tokyo kn-affil= en-keyword=Chronic kidney disease kn-keyword=Chronic kidney disease en-keyword=Mitochondria kn-keyword=Mitochondria en-keyword=Thioredoxin kn-keyword=Thioredoxin en-keyword=Trx kn-keyword=Trx en-keyword=Txn1 kn-keyword=Txn1 en-keyword=Regulated cell death kn-keyword=Regulated cell death END start-ver=1.4 cd-journal=joma no-vol=2 cd-vols= no-issue=2 article-no= start-page=12 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260616 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Interfacial Bond Strength of Resin Cement to Polyetheretherketone (PEEK) Using Experimental Primers Doping Multifunctional Methacrylate and Acrylate Monomers en-subtitle= kn-subtitle= en-abstract= kn-abstract=Polyetheretherketone (PEEK) is a high-performance thermoplastic polymer with low surface energy, chemical inertness, and a highly crystalline structure, which limit durable adhesion to resin-based materials and require improved bonding strategies. This in vitro study evaluated the effect of incorporating multifunctional methacrylate (TMPTMA) and acrylate monomers (A-TMPT and A-DPH) into an experimental primer on the 24 h shear bond strength (SBS) of resin cement to PEEK (n = 6 per group). Experimental primers were prepared by adding varying amounts (100?500 ?L) of each multifunctional monomer to a UDMA/MMA-based primer, and SBS was measured after cementation with a dual-cure resin cement. TMPTMA-containing primers produced median SBS values of approximately 10?12 MPa, while acrylate-based primers showed slightly higher values, particularly at higher concentrations, reaching up to ~15.8 MPa; however, no statistically significant improvement over the control group was observed (p > 0.05). Failure modes were predominantly mixed across all conditions. These findings indicate that multifunctional monomers, despite their potential to enhance cross-link density and wetting, do not substantially overcome the intrinsic adhesion-resistant nature of polished PEEK. The results underscore that monomer modification alone is insufficient and that effective adhesion to PEEK likely requires integrated strategies combining chemical activation with mechanical surface conditioning. en-copyright= kn-copyright= en-aut-name=MaruoYukinori en-aut-sei=Maruo en-aut-mei=Yukinori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=YoshiharaKumiko en-aut-sei=Yoshihara en-aut-mei=Kumiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=IrieMasao en-aut-sei=Irie en-aut-mei=Masao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NagaokaNoriyuki en-aut-sei=Nagaoka en-aut-mei=Noriyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KodamaNaoki en-aut-sei=Kodama en-aut-mei=Naoki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=TanakaYuki en-aut-sei=Tanaka en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KuwaharaMiho en-aut-sei=Kuwahara en-aut-mei=Miho kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=AkiyamaKentaro en-aut-sei=Akiyama en-aut-mei=Kentaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= affil-num=1 en-affil=Department of Prosthodontics, Okayama University kn-affil= affil-num=2 en-affil=Health Research Institute, National Institute of Advanced Industrial Science and Technology kn-affil= affil-num=3 en-affil=Okayama University Dental School kn-affil= affil-num=4 en-affil=Advanced Research Center for Oral and Craniofacial Sciences, Okayama University Dental School kn-affil= affil-num=5 en-affil=Department of Prosthodontics, Okayama University kn-affil= affil-num=6 en-affil=Department of Occlusal and Oral Functional Rehabilitation, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Occlusal and Oral Functional Rehabilitation, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of Occlusal and Oral Functional Rehabilitation, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=PEEK kn-keyword=PEEK en-keyword=functional monomer kn-keyword=functional monomer en-keyword=bond strength kn-keyword=bond strength en-keyword=methacrylate kn-keyword=methacrylate en-keyword=acrylate kn-keyword=acrylate END start-ver=1.4 cd-journal=joma no-vol=16 cd-vols= no-issue=6 article-no= start-page=998 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260613 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Disease-Suppressive Activity of Lecithin Against Foliar Infection by Rhizoctonia solani Isolates in Cabbage, Rice, and Brachypodium distachyon en-subtitle= kn-subtitle= en-abstract= kn-abstract=Rhizoctonia solani is a necrotrophic phytopathogenic fungus that causes disease in various crops. In agriculture, many crops suffer from root or seedling rot caused by this soil-borne pathogen, whereas cabbage and rice develop lesion-like symptoms on aboveground tissues. Diseases caused by R. solani are generally controlled using chemical fungicides; however, environmentally friendly alternatives are needed for sustainable agriculture. In this study, we evaluated the efficacy of lecithin, a mixture of phospholipids previously registered in Japan as an agrochemical for controlling cucumber powdery mildew, against Rhizoctonia diseases. In cabbage, foliar spraying of 0.2?1.0% soybean lecithin effectively suppressed leaf symptoms caused by R. solani isolate RhiCa-2, which was identified as AG-1 IB. In rice and Brachypodium distachyon, 0.2?1.0% lecithin significantly suppressed leaf symptoms induced by R. solani AG-1 IA. Hyphal staining of inoculated leaves revealed reduced hyphal density on lecithin-treated leaves. Consistently, hyphal growth of R. solani on cellophane placed on water agar was retarded by lecithin treatment. However, 5.0% lecithin induced phytotoxicity in B. distachyon. Egg yolk-derived lecithin also exhibited disease-suppressive activity in cabbage and B. distachyon, with efficacy comparable to that of soybean lecithin under the conditions tested. These results suggest that lecithin suppresses foliar infection by R. solani, at least in part, through direct inhibitory effects on fungal hyphae, and may serve as a potential alternative material for disease control in sustainable crop production. en-copyright= kn-copyright= en-aut-name=CuongTran Xuan en-aut-sei=Cuong en-aut-mei=Tran Xuan kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=AsanoMisaki en-aut-sei=Asano en-aut-mei=Misaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=HonmaDaiki en-aut-sei=Honma en-aut-mei=Daiki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=SoedaMoeko en-aut-sei=Soeda en-aut-mei=Moeko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=WatanabeMegumi en-aut-sei=Watanabe en-aut-mei=Megumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=SakataNanami en-aut-sei=Sakata en-aut-mei=Nanami kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=MatsuiHidenori en-aut-sei=Matsui en-aut-mei=Hidenori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=ToyodaKazuhiro en-aut-sei=Toyoda en-aut-mei=Kazuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=IchinoseYuki en-aut-sei=Ichinose en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=IkedaKentaro en-aut-sei=Ikeda en-aut-mei=Kentaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=NoutoshiYoshiteru en-aut-sei=Noutoshi en-aut-mei=Yoshiteru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= affil-num=1 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=School of Agriculture, Okayama University kn-affil= affil-num=3 en-affil=School of Agriculture, Okayama University kn-affil= affil-num=4 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=5 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=6 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=7 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=8 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University, Okayama 700-8530, Japan kn-affil= affil-num=9 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=10 en-affil=Faculty of Bioscience and Applied Chemistry, Hosei University kn-affil= affil-num=11 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= en-keyword=Rhizoctonia solani kn-keyword=Rhizoctonia solani en-keyword=foliar symptoms kn-keyword=foliar symptoms en-keyword=leaf infection kn-keyword=leaf infection en-keyword=cabbage kn-keyword=cabbage en-keyword=rice kn-keyword=rice en-keyword=Brachypodium distachyon kn-keyword=Brachypodium distachyon END start-ver=1.4 cd-journal=joma no-vol=16 cd-vols= no-issue=6 article-no= start-page=992 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260612 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=UGT76B1 and 41 Additional Arabidopsis UDP-Glycosyltransferases Show No Detectable In Vitro Glycosylation Activity Toward N-Hydroxypipecolic Acid en-subtitle= kn-subtitle= en-abstract= kn-abstract=N-hydroxypipecolic acid (NHP) is a key mobile signal in systemic acquired resistance in plants, and its glycosylation has been proposed to regulate immune signaling. Previous studies have demonstrated that the UDP-glycosyltransferase UGT76B1, known as an SA glycosyltransferase in Arabidopsis thaliana, also catalyzes NHP glycosylation. In this study, we re-evaluated NHP glycosylation activity of UGT76B1 using an in vitro enzyme-coupled fluorescence assay that quantitatively detects UDP released during UDP-sugar-dependent glycosylation. Unexpectedly, our biochemical analyses demonstrated that UGT76B1 lacks genuine glycosylation activity toward NHP under the in vitro assay conditions tested, although this system clearly detected UGT76B1 activity toward salicylic acid (SA), as well as the activities of UGT74F1 and UGT72B1 toward SA and hydroquinone, respectively. To explore potential UGTs responsible for NHP glycosylation, we evaluated the enzymatic activities of 41 UGT candidates successfully expressed in Escherichia coli, which are selected based on transcriptomic responses to tenoxicam treatment, molecular docking simulations using AlphaFold3/AutoDock Vina, phylogenetic criteria, and previous reports. Within this selected and successfully expressed UGT panel, none exhibited authentic NHP glycosylation activity, although this does not preclude the possibility that other members of the Arabidopsis UGT family possess NHP glycosyltransferase activity. Our findings challenge the prevailing view that UGT76B1 is the primary glycosyltransferase for NHP in A. thaliana and indicate that NHP metabolism may rely on undiscovered non-canonical enzymes or distinct metabolic pathways that warrant further investigation. en-copyright= kn-copyright= en-aut-name=BaoJiyuan en-aut-sei=Bao en-aut-mei=Jiyuan kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=UchiyamaTaiga en-aut-sei=Uchiyama en-aut-mei=Taiga kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KusunokiKazuki en-aut-sei=Kusunoki en-aut-mei=Kazuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=ShinoharaYuka en-aut-sei=Shinohara en-aut-mei=Yuka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TanigawaYurika en-aut-sei=Tanigawa en-aut-mei=Yurika kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=WatanabeMegumi en-aut-sei=Watanabe en-aut-mei=Megumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=SakataNanami en-aut-sei=Sakata en-aut-mei=Nanami kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MatsuiHidenori en-aut-sei=Matsui en-aut-mei=Hidenori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=ToyodaKazuhiro en-aut-sei=Toyoda en-aut-mei=Kazuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=IchinoseYuki en-aut-sei=Ichinose en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=NoutoshiYoshiteru en-aut-sei=Noutoshi en-aut-mei=Yoshiteru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= affil-num=1 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=4 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=5 en-affil=School of Agriculture, Okayama University kn-affil= affil-num=6 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=7 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=8 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=9 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=10 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=11 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= en-keyword=UGT76B1 kn-keyword=UGT76B1 en-keyword=N-hydroxypipecolic acid (NHP) kn-keyword=N-hydroxypipecolic acid (NHP) en-keyword=salicylic acid (SA) kn-keyword=salicylic acid (SA) en-keyword=glycosyltransferase kn-keyword=glycosyltransferase en-keyword=plant immunity kn-keyword=plant immunity END start-ver=1.4 cd-journal=joma no-vol=16 cd-vols= no-issue=1 article-no= start-page=5705 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260119 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Variations in the perceived value of anti-SARS-CoV-2 therapeutics based on physiciansf clinical backgrounds en-subtitle= kn-subtitle= en-abstract= kn-abstract=Although the global emergency phase of the coronavirus disease 2019 (COVID-19) pandemic has ended, antiviral therapy remains crucial for patients at high risk of severe illness. In Japan, the out-of-pocket costs for antiviral drugs shifted from full public coverage to partial patient payment in April 2024. However, the impact of physiciansf background characteristics on antiviral cost perceptions and prescribing behavior remains underexplored. This study involved a secondary analysis of a nationwide, web-based interventional survey of 1,500 physicians treating COVID-19. Participants reported whether they avoided prescribing antivirals owing to drug costs and identified what they considered an appropriate cost per treatment course. Associations between physiciansf characteristics and their cost perceptions were analyzed. Among 1,500 physicians surveyed, 1,193 (79.5%) reported avoiding antiviral prescriptions owing to drug costs. The most commonly selected appropriate cost was ??33 USD (65.0%). Generalists, pulmonologists, ear, nose, and throat specialists, and clinic-based physicians were more likely to refrain from prescribing antivirals and favor lower treatment costs compared with physicians in other specialties or hospital settings. A multivariate analysis revealed workplace setting as the only factor independently associated with cost-related prescribing behavior. High antiviral drug costs in Japan may contribute to underprescription, particularly among clinic-based physicians, and this underprescription could hypothetically lead to delays in treatment, which might increase the risk of severe outcomes in high-risk patients. As high-risk patients with mild COVID-19 often first seek care in clinics, promoting appropriate antiviral use in these settings is essential. Strengthening communication and sharing clinical experiences between hospitals and clinics may help reduce prescribing disparities driven by drug costs. en-copyright= kn-copyright= en-aut-name=HagiwaraAkihiko en-aut-sei=Hagiwara en-aut-mei=Akihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KomiyaKosaku en-aut-sei=Komiya en-aut-mei=Kosaku kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=ShindoYuichiro en-aut-sei=Shindo en-aut-mei=Yuichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TakamatsuKazufumi en-aut-sei=Takamatsu en-aut-mei=Kazufumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=NishimuraNaoki en-aut-sei=Nishimura en-aut-mei=Naoki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=TakechiYukako en-aut-sei=Takechi en-aut-mei=Yukako kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=IchiharaEiki en-aut-sei=Ichihara en-aut-mei=Eiki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=TakazonoTakahiro en-aut-sei=Takazono en-aut-mei=Takahiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=IzumiShinyu en-aut-sei=Izumi en-aut-mei=Shinyu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=GotohShimpei en-aut-sei=Gotoh en-aut-mei=Shimpei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=SakaoSeiichiro en-aut-sei=Sakao en-aut-mei=Seiichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=IzumoTakehiro en-aut-sei=Izumo en-aut-mei=Takehiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=YamamotoKazuko en-aut-sei=Yamamoto en-aut-mei=Kazuko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=YateraKazuhiro en-aut-sei=Yatera en-aut-mei=Kazuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=KakeyaHiroshi en-aut-sei=Kakeya en-aut-mei=Hiroshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=ShibataYoko en-aut-sei=Shibata en-aut-mei=Yoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=TomiiKeisuke en-aut-sei=Tomii en-aut-mei=Keisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=SagaraHironori en-aut-sei=Sagara en-aut-mei=Hironori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= en-aut-name=SasakiYuka en-aut-sei=Sasaki en-aut-mei=Yuka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=19 ORCID= en-aut-name=HiraiToyohiro en-aut-sei=Hirai en-aut-mei=Toyohiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=20 ORCID= en-aut-name=YokoyamaAkihito en-aut-sei=Yokoyama en-aut-mei=Akihito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=21 ORCID= en-aut-name=MukaeHiroshi en-aut-sei=Mukae en-aut-mei=Hiroshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=22 ORCID= en-aut-name=OguraTakashi en-aut-sei=Ogura en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=23 ORCID= affil-num=1 en-affil=Respiratory Medicine and Infectious Diseases, Oita University Faculty of Medicine kn-affil= affil-num=2 en-affil=Respiratory Medicine and Infectious Diseases, Oita University Faculty of Medicine kn-affil= affil-num=3 en-affil=Department of Respiratory Medicine, Nagoya University Graduate School of Medicine kn-affil= affil-num=4 en-affil=Department of Respiratory Medicine and Allergology, Kochi Medical School, Kochi University kn-affil= affil-num=5 en-affil=Department of Respiratory Medicine, National Center for Global Health and Medicine kn-affil= affil-num=6 en-affil=Iki-iki Clinic kn-affil= affil-num=7 en-affil=Center for Clinical Oncology, Okayama University Hospital kn-affil= affil-num=8 en-affil=Department of Respiratory Medicine, Nagasaki University Graduate School of Biomedical Sciences kn-affil= affil-num=9 en-affil=Department of Respiratory Medicine, National Center for Global Health and Medicine kn-affil= affil-num=10 en-affil=Department of Clinical Application, Center for iPS Cell, Research and Application, Kyoto University kn-affil= affil-num=11 en-affil=Department of Pulmonary Medicine, School of Medicine, International University of Health and Welfare kn-affil= affil-num=12 en-affil=Department of Respiratory Medicine, Japanese Red Cross Medical Center kn-affil= affil-num=13 en-affil=Division of Infectious, Respiratory, and Digestive Medicine, First Department of Internal Medicine, University of the Ryukyus Graduate School of Medicine kn-affil= affil-num=14 en-affil=Department of Respiratory Medicine, School of Medicine, University of Occupational and Environmental Health kn-affil= affil-num=15 en-affil=Department of Infection Control Science, Osaka Metropolitan University Graduate School of Medicine kn-affil= affil-num=16 en-affil=Department of Pulmonary Medicine, Fukushima Medical University School of Medicine kn-affil= affil-num=17 en-affil=Department of Respiratory Medicine, Kobe City Medical Center General Hospital kn-affil= affil-num=18 en-affil=Department of Medicine, Division of Respiratory Medicine and Allergology, Showa Medical University School of Medicine kn-affil= affil-num=19 en-affil=Center for Pulmonary Disease, National Hospital Organization Tokyo National Hospital kn-affil= affil-num=20 en-affil=Department of Respiratory Medicine, Graduate School of Medicine, Kyoto University kn-affil= affil-num=21 en-affil=Department of Respiratory Medicine and Allergology, Kochi Medical School, Kochi University kn-affil= affil-num=22 en-affil=Department of Respiratory Medicine, Nagasaki University Graduate School of Biomedical Sciences kn-affil= affil-num=23 en-affil=Department of Respiratory Medicine, Kanagawa Cardiovascular and Respiratory Center kn-affil= en-keyword=Antiviral kn-keyword=Antiviral en-keyword=COVID-19 kn-keyword=COVID-19 en-keyword=Prescription kn-keyword=Prescription en-keyword=Workplace kn-keyword=Workplace END start-ver=1.4 cd-journal=joma no-vol=18 cd-vols= no-issue=6 article-no= start-page=312 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260608 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=A Batch-Based VNF Deployment Mechanism for Privacy-Preserving Multi-Domain SFC Deployment Using Deep Reinforcement Learning en-subtitle= kn-subtitle= en-abstract= kn-abstract=Future 6G networks require higher performance and wider service coverage. Multi-domain Service Function Chain (SFC) deployment enables service provisioning across multiple network domains to meet these demands. However, when collaboration occurs among different network operators, privacy-preserving mechanisms are required to protect sensitive information such as internal topology and resource availability. Existing SIRM-based mechanisms, such as the Privacy-Preserving Deployment Mechanism (PPDM), address this challenge but suffer from structural limitations: PPDM performs whole-chain feasibility evaluation with extensive virtual occupation. This paper proposes a ?-Batch Sequential Deployment mechanism for privacy-preserving multi-domain SFC deployment. Instead of evaluating whole-chain feasibility at once, the proposed ?-Batch mechanism partitions each incoming SFC into fixed-size VNF batches and constructs a batch-level SIRM. This design confines virtual occupation to the current batch and reduces both its magnitude and duration while remaining fully compatible with the SIRM privacy model and the hierarchical multi-domain control architecture. A Deep Q-Network (DQN) is employed to learn substrate node selection policies based solely on SIRM-based state information, without exposing domain-internal topology or resource details. Simulation results on a three-domain AARNET substrate topology demonstrate that the proposed mechanism consistently improves deployment robustness under varying traffic intensities and SFC lengths, including short (3?6 VNFs), medium (6?9 VNFs), and long (9?12 VNFs) service chains. Compared with PPDM, the proposed ?-Batch mechanism achieves higher acceptance ratios under moderate-to-heavy traffic while reducing end-to-end delay and improving average substrate resource utilization. Node selection analysis further shows that smaller batch sizes preserve feasibility through compact node reuse, whereas larger batch sizes encourage broader substrate exploration. Overall, the proposed ?-Batch mechanism enhances feasibility preservation and deployment robustness in privacy-preserving multi-domain SFC orchestration. en-copyright= kn-copyright= en-aut-name=IrawanArif Indra en-aut-sei=Irawan en-aut-mei=Arif Indra kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FukushimaYukinobu en-aut-sei=Fukushima en-aut-mei=Yukinobu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= affil-num=1 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Faculty of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= en-keyword=Service Function Chain (SFC) kn-keyword=Service Function Chain (SFC) en-keyword=Virtual Network Embedding (VNE) kn-keyword=Virtual Network Embedding (VNE) en-keyword=privacy preservation kn-keyword=privacy preservation en-keyword=SIRM kn-keyword=SIRM en-keyword=Virtual Network Function (VNF) kn-keyword=Virtual Network Function (VNF) en-keyword=Deep Q-network (DQN) kn-keyword=Deep Q-network (DQN) END start-ver=1.4 cd-journal=joma no-vol=80 cd-vols= no-issue=3 article-no= start-page=225 end-page=228 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202606 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Determination of the Side Responsible for Bilateral Pneumothorax due to Pleural Communication en-subtitle= kn-subtitle= en-abstract= kn-abstract=Simultaneous bilateral spontaneous pneumothorax associated with pleuro-pleural communication is a rare but potentially life-threatening condition, most commonly occurring after major thoracic surgery. We report the case of an 81-year-old man with severe emphysema and a history of esophagectomy who presented with sudden-onset dyspnea. Chest computed tomography revealed bilateral pneumothorax with pleuro-pleural communication. Although bilateral chest tube drainage was performed, the primary side of air leakage could not be identified preoperatively. After induction of general anesthesia, a double-lumen endotracheal tube clamping test identified the right pleural cavity as the source of air leakage, thereby enabling appropriate thoracoscopic surgery. en-copyright= kn-copyright= en-aut-name=SuzawaKen en-aut-sei=Suzawa en-aut-mei=Ken kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=YamamotoHaruchika en-aut-sei=Yamamoto en-aut-mei=Haruchika kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=NakajimaKumi en-aut-sei=Nakajima en-aut-mei=Kumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TanakaShin en-aut-sei=Tanaka en-aut-mei=Shin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TorigoeHidejiro en-aut-sei=Torigoe en-aut-mei=Hidejiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=ShienKazuhiko en-aut-sei=Shien en-aut-mei=Kazuhiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=MiyoshiKentaroh en-aut-sei=Miyoshi en-aut-mei=Kentaroh kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=OkazakiMikio en-aut-sei=Okazaki en-aut-mei=Mikio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=SugimotoSeiichiro en-aut-sei=Sugimoto en-aut-mei=Seiichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=ToyookaShinichi en-aut-sei=Toyooka en-aut-mei=Shinichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=9 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=10 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=simultaneous bilateral spontaneous pneumothorax kn-keyword=simultaneous bilateral spontaneous pneumothorax en-keyword=pleuro-pleural communication kn-keyword=pleuro-pleural communication END start-ver=1.4 cd-journal=joma no-vol=80 cd-vols= no-issue=3 article-no= start-page=219 end-page=223 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202606 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Common Bile Duct Stone Formed Around an Ingested Fish Bone en-subtitle= kn-subtitle= en-abstract= kn-abstract=An 86-year-old man presented with epigastric pain. He had previously undergone distal gastrectomy with Roux-en-Y reconstruction. Computed tomography (CT) revealed a 32~17 mm common bile duct (CBD) stone with an internal 20 mm linear hyperdense component. Endoscopic removal was unsuccessful due to the size and impaction of the stone. Open choledochotomy retrieved multiple stones and a calcified fish bone, which was confirmed by infrared spectroscopy using the potassium bromide (KBr) wafer method. Although fish bone ingestion is relatively common, this case highlights that such foreign bodies can occasionally serve as a nidus for CBD stone formation, leading to unexpected and clinically significant pathologies. When CT demonstrates a linear high-attenuation intraductal structure, clinicians should suspect a bone fragment and follow a stepwise approach, considering early surgical intervention when endoscopic extraction is unsuccessful or likely to be challenging. en-copyright= kn-copyright= en-aut-name=HigashiKaitaro en-aut-sei=Higashi en-aut-mei=Kaitaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TabuchiMotoyasu en-aut-sei=Tabuchi en-aut-mei=Motoyasu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=SakamotoShinya en-aut-sei=Sakamoto en-aut-mei=Shinya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TamuraShuta en-aut-sei=Tamura en-aut-mei=Shuta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=UemuraSunao en-aut-sei=Uemura en-aut-mei=Sunao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=TokumaruTeppei en-aut-sei=Tokumaru en-aut-mei=Teppei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=OkabayashiTakehiro en-aut-sei=Okabayashi en-aut-mei=Takehiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= affil-num=1 en-affil=Department of Gastroenterological Surgery, Kochi Health Sciences Center kn-affil= affil-num=2 en-affil=Department of Gastroenterological Surgery, Kochi Health Sciences Center kn-affil= affil-num=3 en-affil=Department of Gastroenterological Surgery, Kochi Health Sciences Center kn-affil= affil-num=4 en-affil=Department of Gastroenterological Surgery, Kochi Health Sciences Center kn-affil= affil-num=5 en-affil=Department of Gastroenterological Surgery, Kochi Health Sciences Center kn-affil= affil-num=6 en-affil=Department of Gastroenterological Surgery, Kochi Health Sciences Center kn-affil= affil-num=7 en-affil=Department of Gastroenterological Surgery, Kochi Health Sciences Center kn-affil= en-keyword=common bile duct stone kn-keyword=common bile duct stone en-keyword=fish bone kn-keyword=fish bone en-keyword=Roux-en-Y kn-keyword=Roux-en-Y en-keyword=choledochotomy kn-keyword=choledochotomy END start-ver=1.4 cd-journal=joma no-vol=80 cd-vols= no-issue=3 article-no= start-page=213 end-page=217 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202606 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=A Novel Flap Design to Reduce Urethral Complications in Anterolateral Thigh Phalloplasty: The Pipe Flap Technique en-subtitle= kn-subtitle= en-abstract= kn-abstract=Phalloplasty is one of the most challenging procedures in gender-affirming surgery, and urethral complications remain common despite numerous preventive efforts. No definitive solution has been established, and many patients still require subsequent corrective procedures. We designed a novel anterolateral thigh flap that creates a planned external fistula at the penile base to mitigate urethral complications. The fistula was closed in a second-stage procedure one year later, and the postoperative course was uneventful. We report a case of a transgender man treated with this two-stage gpipe flaph technique, resulting in satisfactory urinary function. This approach may offer a safe and less invasive option for mitigating urethral complications in phalloplasty. en-copyright= kn-copyright= en-aut-name=ImaiToshiro en-aut-sei=Imai en-aut-mei=Toshiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=WatanabeToshiyuki en-aut-sei=Watanabe en-aut-mei=Toshiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=WatanabeShiho en-aut-sei=Watanabe en-aut-mei=Shiho kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=HayashiMasanobu en-aut-sei=Hayashi en-aut-mei=Masanobu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TominagaYusuke en-aut-sei=Tominaga en-aut-mei=Yusuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=NambaYuzaburo en-aut-sei=Namba en-aut-mei=Yuzaburo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Department of Plastic and Reconstructive Surgery, Tohoku University Graduate School of Medicine kn-affil= affil-num=2 en-affil=Department of Plastic and Reconstructive Surgery, Okayama University Hospital kn-affil= affil-num=3 en-affil=Department of Plastic and Reconstructive Surgery, National Hospital Organization Tokyo Medical Center kn-affil= affil-num=4 en-affil=Department of Plastic and Reconstructive Surgery, Tohoku University Graduate School of Medicine kn-affil= affil-num=5 en-affil=Department of Urology, Okayama University Hospital kn-affil= affil-num=6 en-affil=Gender Center, Okayama University Hospital kn-affil= en-keyword=phalloplasty kn-keyword=phalloplasty en-keyword=surgical flaps kn-keyword=surgical flaps en-keyword=transgender persons kn-keyword=transgender persons END start-ver=1.4 cd-journal=joma no-vol=80 cd-vols= no-issue=3 article-no= start-page=203 end-page=212 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202606 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Evaluation of Bone Mineral Density and Bone Structure in the Cervical and Thoracic Spine en-subtitle= kn-subtitle= en-abstract= kn-abstract=Dropped head syndrome, which has been increasingly reported in recent years, requires correction of cervical kyphosis and may require long-range fixation extending from the cervical to the thoracic spine. Assessing vertebral bone structure may be important for preventing instrumentation failure in the upper thoracic spine, which is a potential complication of surgery. In this study, we evaluated volumetric bone mineral density, trabecular bone porosity, and cortical calcification in the cervical and upper thoracic spine using three-dimensional (3D) trabecular structure measurement software. The study included 79 patients with cervical spine disorders who underwent various surgical procedures and preoperative imaging, including dual-energy X-ray absorptiometry and computed tomography (CT) scans from C3 to Th3. Quantitative analysis using specialized software assessed volumetric bone mineral density and trabecular and cortical bone parameters, and statistical analyses were performed to examine correlations between imaging metrics and indicators of bone fragility. Two-dimensional CT evaluation revealed different trends between cancellous and cortical bone in the cervical and thoracic spine, suggesting that detailed 3D evaluation may also be important. en-copyright= kn-copyright= en-aut-name=AoyamaShingo en-aut-sei=Aoyama en-aut-mei=Shingo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=IkedaTerumasa en-aut-sei=Ikeda en-aut-mei=Terumasa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=NangoNobuhito en-aut-sei=Nango en-aut-mei=Nobuhito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=GotoKoji en-aut-sei=Goto en-aut-mei=Koji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= affil-num=1 en-affil=Department of Orthopedic Surgery, Kindai University Hospital kn-affil= affil-num=2 en-affil=Department of Orthopedic Surgery, Kindai University Hospital kn-affil= affil-num=3 en-affil=Ratoc System Engineering Co., Ltd. kn-affil= affil-num=4 en-affil=Department of Orthopedic Surgery, Kindai University Hospital kn-affil= en-keyword=cervical spine kn-keyword=cervical spine en-keyword=volumetric bone mineral density kn-keyword=volumetric bone mineral density en-keyword=three-dimensional trabecular structure measurement kn-keyword=three-dimensional trabecular structure measurement END start-ver=1.4 cd-journal=joma no-vol=80 cd-vols= no-issue=3 article-no= start-page=195 end-page=202 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202606 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=HIP COMPASS?: A Mechanical Intraoperative Navigation Guide Associated with Improved Revision-Free Implant Survivorship after Ceramic-on-Ceramic Total Hip Arthroplasty at Minimum 10-Year Follow-up en-subtitle= kn-subtitle= en-abstract= kn-abstract=HIP COMPASS? has demonstrated improved accuracy in intraoperative support for the acetabular component insertion angle. We assessed long-term revision-free implant survivorship following total hip arthroplasty (THA) using HIP COMPASS, with ?10 years of follow-up. We retrospectively analyzed 210 hips of 186 patients who underwent cementless THA with ceramic-on-ceramic bearing couples, with or without HIP COMPASS. The mean follow-up duration was 10.8 years in the HIp COMPASS group and 12.7 years in the control group. Overall, 86.0% and 78.2% of cups were placed within Lewinnekfs safe zone with and without HIP COMPASS, respectively. Variability in radiographic inclination and anteversion was greater in the control group than in the HIP COMPASS group. Dislocation rates were 3.2% in the control group and 1.2% in the HIP COMPASS group, with no significant difference between groups. The control group had a significantly higher revision rate than the HIP COMPASS group (7.3% vs. 1.2%). Use of HIP COMPASS was associated with improved long-term revision-free implant survivorship over ? 10 years and more consistent acetabular component positioning at an appropriate insertion angle, which may contribute to stable initial fixation. en-copyright= kn-copyright= en-aut-name=TeiYoshiaki en-aut-sei=Tei en-aut-mei=Yoshiaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=ImaiNorio en-aut-sei=Imai en-aut-mei=Norio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KimuraKeishi en-aut-sei=Kimura en-aut-mei=Keishi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=HiranoYuki en-aut-sei=Hirano en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=HorigomeYoji en-aut-sei=Horigome en-aut-mei=Yoji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=SudaKen en-aut-sei=Suda en-aut-mei=Ken kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KawashimaHiroyuki en-aut-sei=Kawashima en-aut-mei=Hiroyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= affil-num=1 en-affil=Division of Orthopedic Surgery, Department of Regenerative and Transplant Medicine, Niigata University Graduate School of Medical and Dental Sciences kn-affil= affil-num=2 en-affil=Division of Comprehensive Musculoskeletal Medicine, Niigata University Graduate School of Medical and Dental Sciences kn-affil= affil-num=3 en-affil=Division of Orthopedic Surgery, Department of Regenerative and Transplant Medicine, Niigata University Graduate School of Medical and Dental Sciences kn-affil= affil-num=4 en-affil=Division of Orthopedic Surgery, Department of Regenerative and Transplant Medicine, Niigata University Graduate School of Medical and Dental Sciences kn-affil= affil-num=5 en-affil=Division of Comprehensive Musculoskeletal Medicine, Niigata University Graduate School of Medical and Dental Sciences kn-affil= affil-num=6 en-affil=Division of Orthopedic Surgery, Department of Regenerative and Transplant Medicine, Niigata University Graduate School of Medical and Dental Sciences kn-affil= affil-num=7 en-affil=Division of Orthopedic Surgery, Department of Regenerative and Transplant Medicine, Niigata University Graduate School of Medical and Dental Sciences kn-affil= en-keyword=HIP COMPASS? kn-keyword=HIP COMPASS? en-keyword=survivorship kn-keyword=survivorship en-keyword=total hip arthroplasty kn-keyword=total hip arthroplasty en-keyword=ceramic-on-ceramic kn-keyword=ceramic-on-ceramic END start-ver=1.4 cd-journal=joma no-vol=80 cd-vols= no-issue=3 article-no= start-page=185 end-page=193 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202606 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Reducing Hesitation in Resuscitation: Educational Effects of a Female-Appearing Simulator in Basic Life Support Training en-subtitle= kn-subtitle= en-abstract= kn-abstract=Women are less likely than men to receive timely defibrillation during out-of-hospital cardiac arrest. We investigated whether using a simulator that is visually modified to resemble a female affects learnersf attitudes, knowledge, and performance in basic life support (BLS) training. In a BLS simulation training, first-year medical students (n=220) used a standard gender-neutral simulator (control group) or a modified simulator with a female-like appearance (intervention group). Pre- and post-training questionnaires concerning attitudes and knowledge plus a post-training skills evaluation assessed the studentsf training outcomes. The intervention group initiated chest compressions significantly faster than the control group (33.1 vs. 39.8 sec, p<0.01) and achieved a significantly higher rate of correct AED pad placement (64.2% vs. 38.5%, p<0.01). While performing the resuscitation on the female-appearing manikin, the intervention group showed significantly greater increases in self-efficacy (p<0.01) and larger decreases in discomfort about removing the patientfs clothes (p<0.01). They were also significantly more likely to recognize that chest compressions can be performed (p=0.016) and AED pads can be applied (p=0.015) without removing the patientfs underwear. Using a female-appearing simulator in BLS training was thus associated with faster chest compression initiation, more accurate AED pad placement, and improved gender-sensitive attitudes and knowledge. en-copyright= kn-copyright= en-aut-name=KuboTakuya en-aut-sei=Kubo en-aut-mei=Takuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TsukaharaKohei en-aut-sei=Tsukahara en-aut-mei=Kohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=HongoTakashi en-aut-sei=Hongo en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=ObaraTakafumi en-aut-sei=Obara en-aut-mei=Takafumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KosakiYoshinori en-aut-sei=Kosaki en-aut-mei=Yoshinori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=NojimaTsuyoshi en-aut-sei=Nojima en-aut-mei=Tsuyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=YumotoTetsuya en-aut-sei=Yumoto en-aut-mei=Tetsuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=NaitoHiromichi en-aut-sei=Naito en-aut-mei=Hiromichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=NakaoAtsunori en-aut-sei=Nakao en-aut-mei=Atsunori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil=Department of Emergency, Critical Care and Disaster Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Department of Emergency, Critical Care and Disaster Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Emergency, Critical Care and Disaster Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Department of Emergency, Critical Care and Disaster Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Department of Emergency, Critical Care and Disaster Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=6 en-affil=Department of Emergency, Critical Care and Disaster Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Department of Emergency, Critical Care and Disaster Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=8 en-affil=Department of Emergency, Critical Care and Disaster Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=9 en-affil=Department of Emergency, Critical Care and Disaster Medicine, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=resuscitation kn-keyword=resuscitation en-keyword=basic life support kn-keyword=basic life support en-keyword=female simulator kn-keyword=female simulator en-keyword=medical education kn-keyword=medical education en-keyword=gender bias kn-keyword=gender bias END start-ver=1.4 cd-journal=joma no-vol=80 cd-vols= no-issue=3 article-no= start-page=179 end-page=184 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202606 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Oral Eicosapentaenoic Acid and Paclitaxel-Associated Peripheral Neuropathy: A Retrospective Study at Okayama University Hospital en-subtitle= kn-subtitle= en-abstract= kn-abstract=This retrospective study investigated whether eicosapentaenoic acid (EPA) reduces paclitaxel-associated chemotherapy-induced peripheral neuropathy (CIPN) and acute neuropathic pain in dyslipidemic cancer patients. The medical records of cancer patients treated with paclitaxel or nab-paclitaxel at Okayama University Hospital between January 2018 and December 2022 were reviewed. Patients receiving concomitant therapy for dyslipidemia were categorized as EPA users or non-EPA users. Numbness and pain severity were extracted from medical records. The primary endpoint was the change from baseline in Common Terminology Criteria for Adverse Events (CTCAE) grade for peripheral neuropathy and pain; groups were analyzed using the Mann?Whitney U test. Of 184 eligible patients, 18 received EPA. Bleeding events were more frequent in the EPA group; however, changes in numbness and pain did not differ significantly between groups at any time point. Overall, EPA did not show a preventive effect on paclitaxel-associated CIPN or acute neuropathic pain. Future studies should evaluate EPA in combination with other neuroprotective agents to better define its potential role in CIPN prevention. en-copyright= kn-copyright= en-aut-name=MoritaAyako en-aut-sei=Morita en-aut-mei=Ayako kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KatayamaHideki en-aut-sei=Katayama en-aut-mei=Hideki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=IchiharaEiki en-aut-sei=Ichihara en-aut-mei=Eiki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=MaedaYoshinobu en-aut-sei=Maeda en-aut-mei=Yoshinobu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= affil-num=1 en-affil=Center for Clinical Oncology, Okayama University Hospital kn-affil= affil-num=2 en-affil=Center for Clinical Oncology, Okayama University Hospital kn-affil= affil-num=3 en-affil=Center for Clinical Oncology, Okayama University Hospital kn-affil= affil-num=4 en-affil=Department of Hematology and Oncology, Okayama University Hospital kn-affil= en-keyword=eicosapentaenoic acid kn-keyword=eicosapentaenoic acid en-keyword=cancer patients kn-keyword=cancer patients en-keyword=chemotherapy kn-keyword=chemotherapy en-keyword=peripheral neuropathy kn-keyword=peripheral neuropathy en-keyword=cancer pain kn-keyword=cancer pain END start-ver=1.4 cd-journal=joma no-vol=80 cd-vols= no-issue=3 article-no= start-page=169 end-page=178 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202606 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Peripheral Blood T-Cell Receptor Repertoire and Host Immune Background in Breast Cancer Patients Undergoing Neoadjuvant Chemotherapy en-subtitle= kn-subtitle= en-abstract= kn-abstract=The association between peripheral blood T-cell receptor (TCR) repertoire and chemotherapy response remains unclear. We evaluated peripheral blood TCR repertoire and gut microbiota in 21 breast cancer patients receiving neoadjuvant chemotherapy (NAC) who were enrolled in the SBP-14 prospective cohort study between October 2019 and March 2022. We analyzed stool samples obtained pre-NAC and peripheral blood samples obtained pre- and post-NAC. The primary endpoint was the association between baseline peripheral blood TCR repertoire and treatment response. Eleven patients (52%) had hormone receptor-positive breast cancer. All patients received anthracyclines and taxanes, with anti-HER2 therapy for HER2-positive disease. TCR diversity (TCR alpha chain [TRA], p=0.095; TCR beta chain [TRB], p=0.051) and clonality (TRA, p=0.271; TRB, p=0.500) were not significantly associated with treatment response. Gut microbiota diversity was not correlated with TCR diversity (TRA: ƒÏ=0.046, p=0.845; TRB: ƒÏ=0.021, p=0.929); however, three bacterial orders (Erysipelotrichales, Bacillales, and Pasteurellales) were significantly associated with TCR repertoire. Baseline TCR repertoire was not associated with treatment response in this cohort of breast cancer patients. en-copyright= kn-copyright= en-aut-name=NakamuraYuki en-aut-sei=Nakamura en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=IwamotoTakayuki en-aut-sei=Iwamoto en-aut-mei=Takayuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KajiwaraYukiko en-aut-sei=Kajiwara en-aut-mei=Yukiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=HidaAkira en-aut-sei=Hida en-aut-mei=Akira kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=NakamotoShogo en-aut-sei=Nakamoto en-aut-mei=Shogo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MiyoshiYuichiro en-aut-sei=Miyoshi en-aut-mei=Yuichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=ShienTadahiko en-aut-sei=Shien en-aut-mei=Tadahiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=IkedaMasahiko en-aut-sei=Ikeda en-aut-mei=Masahiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=DoiharaHiroyoshi en-aut-sei=Doihara en-aut-mei=Hiroyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=OgataRyohei en-aut-sei=Ogata en-aut-mei=Ryohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=KoikeYoshikazu en-aut-sei=Koike en-aut-mei=Yoshikazu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=NomuraTsunehisa en-aut-sei=Nomura en-aut-mei=Tsunehisa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=TanakaKatsuhiro en-aut-sei=Tanaka en-aut-mei=Katsuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=NakashimaKazutaka en-aut-sei=Nakashima en-aut-mei=Kazutaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=YamatsujiTomoki en-aut-sei=Yamatsuji en-aut-mei=Tomoki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=TairaNaruto en-aut-sei=Taira en-aut-mei=Naruto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= affil-num=1 en-affil=Department of Breast and Thyroid Surgery, Kawasaki Medical School Hospital kn-affil= affil-num=2 en-affil=Department of Breast and Thyroid Surgery, Kawasaki Medical School Hospital kn-affil= affil-num=3 en-affil=Department of Breast Surgery, Hiroshima City Hiroshima Citizens Hospital kn-affil= affil-num=4 en-affil=Department of Pathology, Matsuyama Shimin Hospital kn-affil= affil-num=5 en-affil=Department of Breast and Endocrine Surgery, Okayama University Hospital kn-affil= affil-num=6 en-affil=Department of Breast Endocrine Surgery, Kagawa Prefectural Center Hospital kn-affil= affil-num=7 en-affil=Department of Breast and Endocrine Surgery, Okayama University Hospital kn-affil= affil-num=8 en-affil=Department of Breast and Thyroid Surgery, Fukuyama City Hospital kn-affil= affil-num=9 en-affil=Department of General Surgery, Kawasaki Medical School General Medical Center kn-affil= affil-num=10 en-affil=Department of Breast and Thyroid Surgery, Kawasaki Medical School Hospital kn-affil= affil-num=11 en-affil=Department of Breast and Thyroid Surgery, Kawasaki Medical School Hospital kn-affil= affil-num=12 en-affil=Department of Breast and Thyroid Surgery, Kawasaki Medical School Hospital kn-affil= affil-num=13 en-affil=Department of Breast and Thyroid Surgery, Kawasaki Medical School Hospital kn-affil= affil-num=14 en-affil=Department of General Surgery, Kawasaki Medical School General Medical Center kn-affil= affil-num=15 en-affil=Department of General Surgery, Kawasaki Medical School General Medical Center kn-affil= affil-num=16 en-affil=Department of Breast and Thyroid Surgery, Kawasaki Medical School Hospital kn-affil= en-keyword=TCR repertoire kn-keyword=TCR repertoire en-keyword=gut microbiota kn-keyword=gut microbiota en-keyword=neoadjuvant chemotherapy kn-keyword=neoadjuvant chemotherapy en-keyword=breast cancer kn-keyword=breast cancer END start-ver=1.4 cd-journal=joma no-vol=80 cd-vols= no-issue=3 article-no= start-page=159 end-page=168 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202606 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Self-Reported Adolescent Menstrual Symptoms and Delayed Gynecologic Consultation among Japanese Women with Endometriosis en-subtitle= kn-subtitle= en-abstract= kn-abstract=Endometriosis symptoms often first appear during adolescence, yet delays in seeking gynecologic consultation remain a persistent challenge worldwide. Despite growing international evidence, the specific patterns of symptom recognition and consultation delay among Japanese women ? particularly in relation to self-monitoring behaviors and cultural barriers ? remain poorly understood. This study aimed to provide foundational data to guide menstrual education and preconception care strategies by conducting a cross-sectional online survey with retrospective recall among women with endometriosis to assess menstrual characteristics and symptom patterns from adolescence to initial care seeking. The survey was conducted in Japan in January 2024 and enrolled 166 women with endometriosis and 200 controls. Participants reported current and adolescent menstrual characteristics, symptom recognition, analgesic and low-dose estrogen?progestin use, school/work impact, and age at first gynecologic consultation for menstrual problems. Women with endometriosis reported heavier bleeding, stronger pain, and greater school/work absence than controls, both currently and retrospectively. The median age at first recognition of heavy bleeding or school/work absence was 16 years, whereas consultation occurred at approximately 21-23 years, indicating a consultation delay of 5-6 years. Notably, while self-monitoring of symptoms was more frequent among women with endometriosis, it only modestly shortened consultation delays. This study provides evidence from Japan that consultation delay persists despite active self-monitoring of symptoms, highlighting the influence of educational and cultural barriers on health-seeking behavior. These findings underscore the importance of integrating menstrual education with clinical guidance to promote timely gynecologic consultation. en-copyright= kn-copyright= en-aut-name=IkedaTomoko en-aut-sei=Ikeda en-aut-mei=Tomoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=NakatsukaMikiya en-aut-sei=Nakatsuka en-aut-mei=Mikiya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= affil-num=1 en-affil=Faculty of Health Sciences, Okayama University kn-affil= affil-num=2 en-affil=Faculty of Health Sciences, Okayama University kn-affil= en-keyword=endometriosis kn-keyword=endometriosis en-keyword=adolescence kn-keyword=adolescence en-keyword=menstrual disorders kn-keyword=menstrual disorders en-keyword=consultation delay kn-keyword=consultation delay en-keyword=health-seeking behavior kn-keyword=health-seeking behavior END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page= end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260617 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Age-related changes in the orbital pulley array of older Japanese adults with acquired exotropia en-subtitle= kn-subtitle= en-abstract= kn-abstract=Purpose: To evaluate age-related changes in the orbital pulley array using magnetic resonance imaging (MRI) in older Japanese adults with acquired exotropia (XT) compared with young healthy participants (YHP).
Methods: In this retrospective cross-sectional case series, MRI images of 30 eyes from fifteen patients (age???60 years) with distance XT and no high myopia were compared with those of 14 eyes from seven YHP. Rectus muscle (RM) pulley positions relative to the globe center were assessed. The lateral rectus muscle?superior rectus (LR?SR) band was evaluated for rupture.
Results: Mean age of patients with XT was 73.7?}?5.5 years. Compared with YHP, patients with XT showed significant inferior displacement of the lateral rectus (LR) pulley (?3.6?}?1.2 mm vs. ??2.0?}?1.1 mm, p? Conclusion: Older Japanese adults with XT exhibit localized pulley displacement and LR?SR band rupture. These structural changes differ from the global sagging observed in sagging eye syndrome and may contribute to the pathogenesis of acquired exotropia in older adults. en-copyright= kn-copyright= en-aut-name=KonoReika en-aut-sei=Kono en-aut-mei=Reika kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HamasakiIchiro en-aut-sei=Hamasaki en-aut-mei=Ichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KishimotoFumiko en-aut-sei=Kishimoto en-aut-mei=Fumiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=ShibataKiyo en-aut-sei=Shibata en-aut-mei=Kiyo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MorisawaShin en-aut-sei=Morisawa en-aut-mei=Shin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MorizaneYuki en-aut-sei=Morizane en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Department of Ophthalmology,, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Lino Eye Clinic kn-affil= affil-num=3 en-affil=Division of Ophthalmology, Ibara City Hospital kn-affil= affil-num=4 en-affil=Lino Eye Clinic kn-affil= affil-num=5 en-affil=Department of Ophthalmology,, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Ophthalmology,, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= END start-ver=1.4 cd-journal=joma no-vol=135 cd-vols= no-issue=4 article-no= start-page=747 end-page=759 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260401 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Characteristics of cross-modal negative BOLD responses in the human sensory subcortex and cortex en-subtitle= kn-subtitle= en-abstract= kn-abstract=Functional magnetic resonance imaging (fMRI) is a noninvasive method for measuring human brain activity based on blood oxygenation level-dependent (BOLD) responses. Although many studies have reported positive BOLD responses evoked by sensory stimuli, others have reported negative BOLD responses (NBRs) in the sensory cortex when stimuli from different sensory modalities are presented (i.e., cross-modal NBRs). We conducted an fMRI experiment to better understand the characteristics of cross-modal NBRs in subcortical and cortical regions. Auditory and visual stimuli were presented unilaterally to one ear and to either the left or right visual field, respectively. The lateral geniculate nucleus and medial geniculate nucleus did not show a significant cross-modal NBR. In contrast, the primary auditory cortex showed a significant cross-modal NBR when visual stimuli were presented in either the contralateral or ipsilateral visual fields. Finally, we found that the cross-modal NBR in the early visual cortex was highly variable across subjects and did not exhibit consistent trends. However, each subjectfs data exhibited considerable split-half reliability. Our results suggest that cross-modal NBR in the auditory cortex likely reflects mechanisms such as interhemispheric suppression, rather than those coordinated within the same hemisphere.
NEW & NOTEWORTHY This study demonstrated that the human primary auditory cortex showed a significant cross-modal negative BOLD response bilaterally, regardless of the visual field in which the visual stimuli were presented. This result suggests that the cross-modal negative BOLD response is not an epiphenomenon of visual cortex activation predominantly observed in the contralateral hemisphere, but is more likely to reflect interhemispheric suppression mechanisms. en-copyright= kn-copyright= en-aut-name=MiyataToshikazu en-aut-sei=Miyata en-aut-mei=Toshikazu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FukunagaMasaki en-aut-sei=Fukunaga en-aut-mei=Masaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=LuoJunxiang en-aut-sei=Luo en-aut-mei=Junxiang kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=YokoiIsao en-aut-sei=Yokoi en-aut-mei=Isao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=YamamotoTetsuya en-aut-sei=Yamamoto en-aut-mei=Tetsuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=YoshiokaAyumi en-aut-sei=Yoshioka en-aut-mei=Ayumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=YangJiajia en-aut-sei=Yang en-aut-mei=Jiajia kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MoritaTomoyo en-aut-sei=Morita en-aut-mei=Tomoyo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=TakemuraHiromasa en-aut-sei=Takemura en-aut-mei=Hiromasa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil=Division of Sensory and Cognitive Brain Mapping, Department of System Neuroscience, National Institute for Physiological Sciences kn-affil= affil-num=2 en-affil=Section of Brain Function Information, National Institute for Physiological Sciences kn-affil= affil-num=3 en-affil=Division of Sensory and Cognitive Brain Mapping, Department of System Neuroscience, National Institute for Physiological Sciences kn-affil= affil-num=4 en-affil=National Institute for Physiological Sciences kn-affil= affil-num=5 en-affil=Section of Brain Function Information, National Institute for Physiological Sciences kn-affil= affil-num=6 en-affil=Section of Brain Function Information, National Institute for Physiological Sciences kn-affil= affil-num=7 en-affil=Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University kn-affil= affil-num=8 en-affil=Center for Information and Neural Networks (CiNet), Advanced ICT Research Institute, National Institute of Information and Communications Technology (NICT) kn-affil= affil-num=9 en-affil=Division of Sensory and Cognitive Brain Mapping, Department of System Neuroscience, National Institute for Physiological Sciences kn-affil= en-keyword=auditory system kn-keyword=auditory system en-keyword=cross-modal kn-keyword=cross-modal en-keyword=functional MRI kn-keyword=functional MRI en-keyword=visual system kn-keyword=visual system END start-ver=1.4 cd-journal=joma no-vol=330 cd-vols= no-issue=5 article-no= start-page=L593 end-page=L609 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260501 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=The role of S100A8/A9 in the pathogenesis of acute exacerbations of pulmonary fibrosis en-subtitle= kn-subtitle= en-abstract= kn-abstract=Acute exacerbation of idiopathic pulmonary fibrosis is a life-threatening condition characterized by neutrophilic inflammation. S100A8/A9, an alarmin released by activated neutrophils and monocytes/macrophages, plays a pivotal role in regulating inflammatory responses. However, its specific involvement in acute exacerbations of pulmonary fibrosis remains unclear. This study evaluated the role of S100A8/A9 in the pathogenesis of acute exacerbations of pulmonary fibrosis. S100A8/A9 levels were measured in bronchoalveolar lavage fluid and serum from patients with idiopathic interstitial pneumonia, with and without acute exacerbations. To model acute exacerbations of pulmonary fibrosis, mice were intratracheally administered bleomycin followed by lipopolysaccharide. Subsequently, inflammatory cell infiltration, cytokine levels, morphological changes, and fibrosis marker levels in lung tissue and airways were analyzed. S100A8/A9 levels were significantly higher in the bronchoalveolar lavage fluid and serum of patients with idiopathic interstitial pneumonia experiencing acute exacerbations relative to those without; these levels were correlated with patient prognosis. In an experimental mouse model, intratracheal administration of bleomycin followed by lipopolysaccharide resulted in a significant increase in airway S100A8/A9 levels compared with bleomycin alone and control mice. Anti-S100A8/A9 neutralizing antibody Ab45 mitigated airway inflammation and lung fibrosis in mice with acute exacerbations of pulmonary fibrosis, reducing S100A8/A9 levels and neutrophil extracellular traps. In vitro, recombinant S100A8/A9 or lipopolysaccharide and neutrophils activated and differentiated fibroblasts; these effects were inhibited by anti-S100A8/A9 neutralizing antibody Ab45 and the humanized form of Ab45 (HuAb45). These findings highlight S100A8/A9 as a potential prognostic biomarker and therapeutic target for acute exacerbations of pulmonary fibrosis. en-copyright= kn-copyright= en-aut-name=NakamuraNaoki en-aut-sei=Nakamura en-aut-mei=Naoki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HigoHisao en-aut-sei=Higo en-aut-mei=Hisao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=SenooSatoru en-aut-sei=Senoo en-aut-mei=Satoru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TaniguchiAkihiko en-aut-sei=Taniguchi en-aut-mei=Akihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=OzekiTaichi en-aut-sei=Ozeki en-aut-mei=Taichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=SunamiRyota en-aut-sei=Sunami en-aut-mei=Ryota kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=InukaiYumi en-aut-sei=Inukai en-aut-mei=Yumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=YamamotoShusei en-aut-sei=Yamamoto en-aut-mei=Shusei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=ItanoJunko en-aut-sei=Itano en-aut-mei=Junko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=TanakaAyaka en-aut-sei=Tanaka en-aut-mei=Ayaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=TomonobuNahoko en-aut-sei=Tomonobu en-aut-mei=Nahoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=KinoshitaRie en-aut-sei=Kinoshita en-aut-mei=Rie kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=SakaguchiMasakiyo en-aut-sei=Sakaguchi en-aut-mei=Masakiyo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=MaedaYoshinobu en-aut-sei=Maeda en-aut-mei=Yoshinobu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=MiyaharaNobuaki en-aut-sei=Miyahara en-aut-mei=Nobuaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= affil-num=1 en-affil=Department of Hematology, Oncology, Allergy and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Allergy and Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=3 en-affil=Department of Hematology, Oncology, Allergy and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of Respiratory Medicine, National Hospital Organization Fukuyama Medical Center kn-affil= affil-num=5 en-affil=Department of Hematology, Oncology, Allergy and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Hematology, Oncology, Allergy and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Hematology, Oncology, Allergy and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of Medical Laboratory Science, Okayama University Faculty of Health Sciences kn-affil= affil-num=9 en-affil=Department of Hematology, Oncology, Allergy and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=10 en-affil=Department of Respiratory Medicine, Kurashiki Central Hospital kn-affil= affil-num=11 en-affil=Department of Cell Biology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=12 en-affil=Department of Cell Biology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=13 en-affil=Department of Cell Biology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=14 en-affil=Department of Hematology, Oncology, Allergy and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=15 en-affil=Department of Allergy and Respiratory Medicine, Okayama University Hospital kn-affil= en-keyword=anti-S100A8/A9 neutralizing antibody kn-keyword=anti-S100A8/A9 neutralizing antibody en-keyword=calprotectin kn-keyword=calprotectin en-keyword=idiopathic pulmonary fibrosis kn-keyword=idiopathic pulmonary fibrosis en-keyword=lipopolysaccharide kn-keyword=lipopolysaccharide en-keyword=neutrophil extracellular traps kn-keyword=neutrophil extracellular traps END start-ver=1.4 cd-journal=joma no-vol=15 cd-vols= no-issue=4 article-no= start-page=e0087625 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260409 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Draft genome sequence of blaIMP-1-carrying Phytobacter ursingii OUH-01, isolated from the feces of an acute lymphoblastic leukemia patient en-subtitle= kn-subtitle= en-abstract= kn-abstract=We report the 5.7 Mbp draft genome of carbapenem-resistant Phytobacter ursingii strain OUH-01, recovered from the feces of a patient with acute lymphoblastic leukemia. The genome comprises a chromosome (G+C content of 53.5%), three plasmids, and four linear contigs, including the 222 kb plasmid pOUH-phyto-IMP-01 carrying blaIMP-1. Nanopore/Illumina sequencing achieved 235~ coverage. en-copyright= kn-copyright= en-aut-name=TsujiShuma en-aut-sei=Tsuji en-aut-mei=Shuma kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HagiyaHideharu en-aut-sei=Hagiya en-aut-mei=Hideharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=FukushimaShinnosuke en-aut-sei=Fukushima en-aut-mei=Shinnosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=UrakamiIori en-aut-sei=Urakami en-aut-mei=Iori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=GotohKazuyoshi en-aut-sei=Gotoh en-aut-mei=Kazuyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= affil-num=1 en-affil=Department of Medical Laboratory Science, Okayama University Graduate School of Health Sciences kn-affil= affil-num=2 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= affil-num=3 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= affil-num=4 en-affil=Department of Medical Laboratory Science, Okayama University Graduate School of Health Sciences kn-affil= affil-num=5 en-affil=Department of Medical Laboratory Science, Okayama University Graduate School of Health Sciences kn-affil= en-keyword=Enterobacteriaceae kn-keyword=Enterobacteriaceae en-keyword=carbapenems kn-keyword=carbapenems END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page= end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260521 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Stimulator of interferon genes agonist augmented antitumor immunity of osimertinib in Egfr ]mutated lung?cancer en-subtitle= kn-subtitle= en-abstract= kn-abstract=Epidermal growth factor receptor (EGFR)-mutant non-small-cell lung cancers (NSCLCs) lack effective immunotherapy due to a noninflamed tumor microenvironment (TME). We previously reported that EGFR tyrosine-kinase-inhibitor (TKI) induced CD8+ T-cell immunity, which was insufficient for tumor eradication. We evaluated the potential of combining EGFR-TKI with stimulator of interferon genes (STING) agonists in activating a systemic antitumor response. Using a syngeneic mouse model of genetically engineered Egfr-mutant NSCLC, we evaluated the antitumor effects of STING agonist ADU-S100, alone and combined with osimertinib. Immunohistochemistry and flow cytometry were used to assess the TME. Osimertinib alone enhanced CD8+ T-cell infiltration but not Natural Killer (NK) cell infiltration. ADU-S100 injection alone modestly suppressed tumor growth with increasing CD8+/NK cell infiltration in the TME, but lacked an abscopal effect. Combining ADU-S100 with osimertinib significantly enhanced the antitumor effects and CD8+/NK cell infiltration. Depletion of either CD8+ or NK cells reduced the combination effect. Crucially, the combination induced an abscopal effect accompanied by PD-1+/CD8+ cell infiltration. Combining osimertinib with a STING agonist augmented innate and adaptive immunity, inducing systemic antitumor responses in EGFR-mutant NSCLC. en-copyright= kn-copyright= en-aut-name=NishimuraJun en-aut-sei=Nishimura en-aut-mei=Jun kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KuribayashiTadahiro en-aut-sei=Kuribayashi en-aut-mei=Tadahiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=Br?gelmannJohannes en-aut-sei=Br?gelmann en-aut-mei=Johannes kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=OkawaSachi en-aut-sei=Okawa en-aut-mei=Sachi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TaokaMasataka en-aut-sei=Taoka en-aut-mei=Masataka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MoriShunta en-aut-sei=Mori en-aut-mei=Shunta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=NishimuraTomoka en-aut-sei=Nishimura en-aut-mei=Tomoka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=TanakaTakaaki en-aut-sei=Tanaka en-aut-mei=Takaaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=MakimotoGo en-aut-sei=Makimoto en-aut-mei=Go kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=NinomiyaKiichiro en-aut-sei=Ninomiya en-aut-mei=Kiichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=RaiKammei en-aut-sei=Rai en-aut-mei=Kammei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=IchiharaEiki en-aut-sei=Ichihara en-aut-mei=Eiki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=KatayamaRyohei en-aut-sei=Katayama en-aut-mei=Ryohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=HottaKatsuyuki en-aut-sei=Hotta en-aut-mei=Katsuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=TabataMasahiro en-aut-sei=Tabata en-aut-mei=Masahiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=TogashiYosuke en-aut-sei=Togashi en-aut-mei=Yosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=MaedaYoshinobu en-aut-sei=Maeda en-aut-mei=Yoshinobu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=SosMartin L. en-aut-sei=Sos en-aut-mei=Martin L. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= en-aut-name=KiuraKatsuyuki en-aut-sei=Kiura en-aut-mei=Katsuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=19 ORCID= en-aut-name=OhashiKadoaki en-aut-sei=Ohashi en-aut-mei=Kadoaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=20 ORCID= affil-num=1 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Translational Genomics Faculty of Medicine and University Hospital Cologne, University of Cologne Germany kn-affil= affil-num=4 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=9 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=10 en-affil=Center for Comprehensive Genomic Medicine, Okayama University Hospital kn-affil= affil-num=11 en-affil=Center for Innovative Clinical Medicine, Okayama University Hospital kn-affil= affil-num=12 en-affil=Center for Clinical Oncology, Okayama University Hospital kn-affil= affil-num=13 en-affil=Division of Experimental Chemotherapy, Cancer Chemotherapy Centre, Japanese Foundation for Cancer Research kn-affil= affil-num=14 en-affil=Center for Innovative Clinical Medicine, Okayama University Hospital kn-affil= affil-num=15 en-affil=Center for Clinical Oncology, Okayama University Hospital kn-affil= affil-num=16 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=17 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=18 en-affil=Department of Translational Genomics Faculty of Medicine and University Hospital Cologne, University of Cologne Germany kn-affil= affil-num=19 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=20 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= en-keyword=abscopal effect kn-keyword=abscopal effect en-keyword=CD8+ T cells kn-keyword=CD8+ T cells en-keyword=EGFR mutation kn-keyword=EGFR mutation en-keyword=EGFR tyrosine kinase inhibitor kn-keyword=EGFR tyrosine kinase inhibitor en-keyword=NK cells kn-keyword=NK cells en-keyword=stimulator of interferon genes kn-keyword=stimulator of interferon genes END start-ver=1.4 cd-journal=joma no-vol=45 cd-vols= no-issue=18 article-no= start-page=1675 end-page=1687 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260404 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Trisomy 8 alters chromatin conformations and activates Y chromosome genes in stem cells to drive a pre-leukemic state en-subtitle= kn-subtitle= en-abstract= kn-abstract=The mechanistic role of trisomy 8 in the development of myelodysplastic syndrome (MDS) remains poorly defined. Here, we generated a trisomy 8 mouse model by transferring a human chromosome 8 into murine embryonic stem cells and prospectively examined the effects on hematopoietic stem cells (HSC) by trisomy 8. The expression of inflammatory genes was enhanced, and hematopoietic programs mediated by transcription factors and polycomb repressive complex 2 (PRC2) were dysregulated in trisomy 8 HSC, which impaired their self-renewal and balanced differentiation. Trisomy 8 HSC altered the chromatin accessibility and conformations and activated Y chromosome genes, such as Uty/Kdm6c epigenetic modifier, which is known to demethylate histone H3K27me3 modification. The Uty gene facilitated the activation of PRC2-target and Runx1-target genes in leukemogenesis and drove the proliferation of human trisomy 8 leukemic cells. Since the RUNX1 gene is frequently mutated in patients with trisomy 8 MDS, its deletion attenuated the enhanced expression of inflammatory genes and mitigated the impaired self-renewal of trisomy 8 HSC in mice. Our findings reveal that trisomy 8 altered the transcriptional programs and chromatin conformations in HSC and drove a pre-malignant state through activating the expression of Uty, suggesting a route for the development of trisomy 8 MDS. en-copyright= kn-copyright= en-aut-name=BaiJie en-aut-sei=Bai en-aut-mei=Jie kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=ArakiKimi en-aut-sei=Araki en-aut-mei=Kimi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KurotakiDaisuke en-aut-sei=Kurotaki en-aut-mei=Daisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=Eerdunduleng en-aut-sei=Eerdunduleng en-aut-mei= kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=SorinSupannika en-aut-sei=Sorin en-aut-mei=Supannika kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=HiramatsuKei en-aut-sei=Hiramatsu en-aut-mei=Kei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=UnoNarumi en-aut-sei=Uno en-aut-mei=Narumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=HamashimaAi en-aut-sei=Hamashima en-aut-mei=Ai kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=IimoriMihoko en-aut-sei=Iimori en-aut-mei=Mihoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=KikuchiKenta en-aut-sei=Kikuchi en-aut-mei=Kenta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=TerashimaMinoru en-aut-sei=Terashima en-aut-mei=Minoru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=KubotaSho en-aut-sei=Kubota en-aut-mei=Sho kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=KohrogiKensaku en-aut-sei=Kohrogi en-aut-mei=Kensaku kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=HuangGang en-aut-sei=Huang en-aut-mei=Gang kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=OgawaMinetaro en-aut-sei=Ogawa en-aut-mei=Minetaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=OshimuraMitsuo en-aut-sei=Oshimura en-aut-mei=Mitsuo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=KazukiYasuhiro en-aut-sei=Kazuki en-aut-mei=Yasuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=SashidaGoro en-aut-sei=Sashida en-aut-mei=Goro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= affil-num=1 en-affil=Laboratory of Transcriptional Regulation in Leukemogenesis, International Research Center for Medical Sciences, Kumamoto University kn-affil= affil-num=2 en-affil=Institute of Resource Development and Analysis, Kumamoto University kn-affil= affil-num=3 en-affil=Laboratory of Chromatin Organization in Immune Cell Development, International Research Center for Medical Sciences, Kumamoto University kn-affil= affil-num=4 en-affil=Laboratory of Transcriptional Regulation in Leukemogenesis, International Research Center for Medical Sciences, Kumamoto University kn-affil= affil-num=5 en-affil=Laboratory of Transcriptional Regulation in Leukemogenesis, International Research Center for Medical Sciences, Kumamoto University kn-affil= affil-num=6 en-affil=Department of Chromosome Biomedical Engineering, Integrated Medical Sciences, Graduate School of Medical Sciences, Tottori University kn-affil= affil-num=7 en-affil=Laboratory of Bioengineering, School of Life Sciences, Tokyo University of Pharmacy and Life Sciences kn-affil= affil-num=8 en-affil=Laboratory of Transcriptional Regulation in Leukemogenesis, International Research Center for Medical Sciences, Kumamoto University kn-affil= affil-num=9 en-affil=Laboratory of Transcriptional Regulation in Leukemogenesis, International Research Center for Medical Sciences, Kumamoto University kn-affil= affil-num=10 en-affil=Laboratory of Chromatin Organization in Immune Cell Development, International Research Center for Medical Sciences, Kumamoto University kn-affil= affil-num=11 en-affil=Laboratory of Transcriptional Regulation in Leukemogenesis, International Research Center for Medical Sciences, Kumamoto University kn-affil= affil-num=12 en-affil=Department of Medicinal Pharmacology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=13 en-affil=Department of Pediatrics, Graduate School of Medical Sciences, Kumamoto University kn-affil= affil-num=14 en-affil=Department of Cell Systems & Anatomy, Department of Pathology & Laboratory Medicine, UT Health San Antonio, Joe R. and Teresa Lozano Long School of Medicine, Mays Cancer Center at UT Health San Antonio kn-affil= affil-num=15 en-affil=Department of Cell Differentiation, Institute of Molecular Embryology and Genetics, Kumamoto University kn-affil= affil-num=16 en-affil=Chromosome Engineering Research Center, Tottori University kn-affil= affil-num=17 en-affil=Department of Chromosome Biomedical Engineering, Integrated Medical Sciences, Graduate School of Medical Sciences, Tottori University kn-affil= affil-num=18 en-affil=Laboratory of Transcriptional Regulation in Leukemogenesis, International Research Center for Medical Sciences, Kumamoto University kn-affil= END start-ver=1.4 cd-journal=joma no-vol=52 cd-vols= no-issue=3 article-no= start-page=e70104 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260429 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=VGLL3 Regulates DAPK2-Mediated Autophagy During Osteoblast Differentiation en-subtitle= kn-subtitle= en-abstract= kn-abstract=Vestigial-like family member 3 (VGLL3), a transcriptional cofactor of the TEA domain family, has been previously identified as a regulator of osteoblast differentiation. Building upon our previous findings, we investigated VGLL3 function in MC3T3-E1 osteoblasts using an integrated approach combining transcriptomic analysis and functional assays to identify its downstream effectors and explore associated autophagy mechanisms. RNA-seq analysis of Vgll3-knockdown (shVgll3) cells identified death-associated protein kinase 2 (DAPK2), a regulator of autophagy, as a downstream effector. Autophagic activity was examined using transmission electron microscopy and western blot analysis of LC3-II and p62 proteins. The effects of Dapk2 knockdown (shDapk2) on osteoblast differentiation were evaluated using qPCR, western blotting, alkaline phosphatase staining, and Alizarin Red staining. Rapamycin treatment was used to determine whether pharmacologic activation of autophagy could restore osteoblast function. Vgll3 knockdown significantly suppressed autophagic flux, as evidenced by fewer autophagic vacuoles, decreased LC3-II accumulation, and increased p62 expression. A comparable reduction in autophagic activity was observed in shDapk2 cells and was accompanied by impaired osteoblast differentiation. Rapamycin treatment partially restored autophagy and osteogenic differentiation in Vgll3-deficient cells. Finally, overexpression of DAPK2 partially rescued autophagic activity and osteogenic differentiation in shVgll3 cells, supporting its role as a key downstream functional effector. FOXM1 was further implicated as a potential transcriptional regulator contributing to DAPK2 expression. Collectively, our findings suggest that VGLL3 may influence osteogenic differentiation in osteoblasts, potentially involving DAPK2-associated autophagy. en-copyright= kn-copyright= en-aut-name=HeYuhan en-aut-sei=He en-aut-mei=Yuhan kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=WangZiyi en-aut-sei=Wang en-aut-mei=Ziyi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=WengYao en-aut-sei=Weng en-aut-mei=Yao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=SitosariHeriati en-aut-sei=Sitosari en-aut-mei=Heriati kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=ZhengYilin en-aut-sei=Zheng en-aut-mei=Yilin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=QuYaxin en-aut-sei=Qu en-aut-mei=Yaxin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=IkegameMika en-aut-sei=Ikegame en-aut-mei=Mika kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=OkamuraHirohiko en-aut-sei=Okamura en-aut-mei=Hirohiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= affil-num=1 en-affil=Department of Oral Morphology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Department of Molecular Biology and Biochemistry, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Oral Morphology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Department of Oral Biology, Faculty of Dentistry, Universitas Gadjah Mada kn-affil= affil-num=5 en-affil=Department of Oral Morphology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=6 en-affil=Department of Dental Pharmacology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Department of Oral Morphology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=8 en-affil=Department of Oral Morphology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=autophagy kn-keyword=autophagy en-keyword=bone metabolism kn-keyword=bone metabolism en-keyword=death-associated protein kinase 2 kn-keyword=death-associated protein kinase 2 en-keyword=osteoblast differentiation kn-keyword=osteoblast differentiation en-keyword=vestigial-like 3 kn-keyword=vestigial-like 3 END start-ver=1.4 cd-journal=joma no-vol=13 cd-vols= no-issue=1 article-no= start-page=e70666 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Association between discoid lateral meniscus and medial meniscus posterior root tear: A retrospective cohort study en-subtitle= kn-subtitle= en-abstract= kn-abstract=Purpose: Medial meniscus (MM) posterior root tear (PRT) has gained increasing attention because of its biomechanical impact and rapid progression to osteoarthritis. Identifying the risk factors for MMPRT is essential for early diagnosis. Although the discoid lateral meniscus (DLM) is a common congenital variant, no studies have reported on the relationship between MMPRT and DLM. This study aimed to examine the relationship between MMPRT and DLM.
Methods: This retrospective cohort study included 94 matched knees that underwent arthroscopic surgery between 2015 and 2021 (58 with MMPRT and 36 with other MM injuries). The matching was performed according to age and sex. Morphological analysis of the lateral meniscus (LM) was performed using coronal magnetic resonance imaging (MRI). DLM was defined as an LM ratio (LM width/tibial width)?>?0.20. LM width, LM ratio and DLM prevalence were compared between the two groups. In the MMPRT group, subgroup analysis compared the preoperative and 1-year postoperative clinical outcomes between patients with and without DLM.
Results: The PRT group showed significantly greater LM width (12.6?}?3.1?mm vs. 11.1?}?2.2?mm; p?=?0.03) and LM ratio (0.18?}?0.04 vs. 0.16?}?0.03; p?=?0.01) compared with the other group. The incidence of DLM was also significantly higher in the PRT group (29.3% vs. 8.3%; p?=?0.02). No significant differences in clinical scores were observed between the two subgroups either preoperatively or 1 year postoperatively. However, both groups demonstrated significant improvement in all clinical outcomes 1 year postoperatively (p? Conclusions: DLM was significantly more prevalent in patients with MMPRT than in those with other MM injuries. Favourable clinical outcomes were achieved following pullout repair in MMPRT knees regardless of the presence of DLM.
Level of Evidence: Level III, retrospective cohort study. en-copyright= kn-copyright= en-aut-name=YamashitaRyosuke en-aut-sei=Yamashita en-aut-mei=Ryosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=OkazakiYuki en-aut-sei=Okazaki en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KintakaKeisuke en-aut-sei=Kintaka en-aut-mei=Keisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KawadaKoki en-aut-sei=Kawada en-aut-mei=Koki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KoharaToshiki en-aut-sei=Kohara en-aut-mei=Toshiki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=FurumatsuTakayuki en-aut-sei=Furumatsu en-aut-mei=Takayuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Department of Orthopaedic Surgery, Okayama University Hospital kn-affil= affil-num=2 en-affil=Department of Orthopaedic Surgery, Okayama University Hospital kn-affil= affil-num=3 en-affil=Department of Orthopaedic Surgery, Kochi Health Sciences Center kn-affil= affil-num=4 en-affil=Department of Orthopaedic Surgery, Okayama University Hospital kn-affil= affil-num=5 en-affil=Department of Orthopaedic Surgery, Okayama University Hospital kn-affil= affil-num=6 en-affil=Department of Orthopaedic Surgery, Japanese Red Cross Okayama Hospital kn-affil= en-keyword=clinical outcome kn-keyword=clinical outcome en-keyword=discoid lateral meniscus kn-keyword=discoid lateral meniscus en-keyword=medial meniscus kn-keyword=medial meniscus en-keyword=morphology kn-keyword=morphology en-keyword=posterior root tear kn-keyword=posterior root tear END start-ver=1.4 cd-journal=joma no-vol=17 cd-vols= no-issue=1 article-no= start-page=4963 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260609 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Structural insights into YheS-mediated release of SecM-arrested ribosome en-subtitle= kn-subtitle= en-abstract= kn-abstract=ATP-binding cassette subfamily F (ABCF) proteins interact with the ribosome to resolve translation defects near the peptidyl transferase center (PTC). In Escherichia coli, four ABCF proteins (EttA, Uup, YbiT, and YheS) selectively promote translation of distinct problematic nascent peptide sequences, but their molecular mechanisms remain unclear. Here, we present a 2.8?? cryo-EM structure of the ribosome in complex with an ATPase-deficient mutant of YheS and investigate how it releases ribosomes arrested by the SecM nascent chain. YheS binds to the ribosomal E-site via the L1 stalk, and its P-site tRNA-interaction motif (PtIM) extends toward the PTC, displacing the CCA end of the P-site tRNA. Notably, the cryo-EM density corresponding to the SecM nascent chain within the exit tunnel is largely lost upon YheS binding. These observations suggest that YheS relieves peptide sequence-dependent stalling by perturbing nascent chain-tunnel interactions through P-site tRNA relocation. Steered molecular dynamics simulations provide qualitative support for this model. Together, our findings provide mechanistic insight into a mode of arrest release distinct from the translocon-mediated release mechanism. en-copyright= kn-copyright= en-aut-name=IsoKaishi en-aut-sei=Iso en-aut-mei=Kaishi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=IkedaToma en-aut-sei=Ikeda en-aut-mei=Toma kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YamasakiKohei en-aut-sei=Yamasaki en-aut-mei=Kohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=AndoYushin en-aut-sei=Ando en-aut-mei=Yushin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=SanoFumiya K. en-aut-sei=Sano en-aut-mei=Fumiya K. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=FurutaTadaomi en-aut-sei=Furuta en-aut-mei=Tadaomi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=TaguchiHideki en-aut-sei=Taguchi en-aut-mei=Hideki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=NurekiOsamu en-aut-sei=Nureki en-aut-mei=Osamu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=ChadaniYuhei en-aut-sei=Chadani en-aut-mei=Yuhei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=ItohYuzuru en-aut-sei=Itoh en-aut-mei=Yuzuru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=Department of Biological Sciences, Graduate School of Science, The University of Tokyo kn-affil= affil-num=2 en-affil=School of Life Science and Technology, Institute of Science Tokyo kn-affil= affil-num=3 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=4 en-affil=Department of Biological Sciences, Graduate School of Science, The University of Tokyo kn-affil= affil-num=5 en-affil=Department of Biological Sciences, Graduate School of Science, The University of Tokyo kn-affil= affil-num=6 en-affil=School of Life Science and Technology, Institute of Science Tokyo kn-affil= affil-num=7 en-affil=School of Life Science and Technology, Institute of Science Tokyo kn-affil= affil-num=8 en-affil=Department of Biological Sciences, Graduate School of Science, The University of Tokyo kn-affil= affil-num=9 en-affil=Faculty of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=10 en-affil=Department of Biological Sciences, Graduate School of Science, The University of Tokyo kn-affil= END start-ver=1.4 cd-journal=joma no-vol=18 cd-vols= no-issue=6 article-no= start-page=1053 end-page=1061 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260423 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Two-dimensional metal?organic frameworks offer all-in-one cocatalysts for photocatalytic overall water splitting en-subtitle= kn-subtitle= en-abstract= kn-abstract=Photocatalytic overall water splitting holds great promise for sustainable hydrogen production. For overall water splitting performed by one-step excitation, both the hydrogen evolution and oxygen evolution reactions are hindered kinetically; hence, it is necessary to employ site-selective modification of photocatalysts with hydrogen-evolving and oxygen-evolving cocatalysts. However, critical challenges remain, including the need for cumbersome, multi-step photodeposition processes and durable blocking layers to inhibit the reverse reactions. Here we find a conductive, two-dimensional metal?organic framework to serve as a simple, multifunctional cocatalyst. We loaded this framework on SrTiO3:Al, an overall water-splitting photocatalyst, using a one-step self-assembly method. The framework cocatalyst promoted steady photocatalysis with an apparent quantum efficiency of 31.5% at 350?nm, free from the reverse reaction even without blocking layers. We proposed the operational principles for the cocatalyst activity using spectroscopic, electrochemical and theoretical analyses. This two-dimensional metal?organic framework offers an all-in-one approach for designing efficient and practical one-step excitation overall water-splitting systems. en-copyright= kn-copyright= en-aut-name=GuanJingyan en-aut-sei=Guan en-aut-mei=Jingyan kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=SuzukiHajime en-aut-sei=Suzuki en-aut-mei=Hajime kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KamiyaKazuhide en-aut-sei=Kamiya en-aut-mei=Kazuhide kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=HaradaTakashi en-aut-sei=Harada en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=AdachiRintaro en-aut-sei=Adachi en-aut-mei=Rintaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=TomitaOsamu en-aut-sei=Tomita en-aut-mei=Osamu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KurokawaHirofumi en-aut-sei=Kurokawa en-aut-mei=Hirofumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=UnabaraDaisuke en-aut-sei=Unabara en-aut-mei=Daisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=YonekuraKoji en-aut-sei=Yonekura en-aut-mei=Koji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=FukuiNaoya en-aut-sei=Fukui en-aut-mei=Naoya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=MaedaHiroaki en-aut-sei=Maeda en-aut-mei=Hiroaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=SugimotoKunihisa en-aut-sei=Sugimoto en-aut-mei=Kunihisa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=YamaguchiYuichi en-aut-sei=Yamaguchi en-aut-mei=Yuichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=SaekiAkinori en-aut-sei=Saeki en-aut-mei=Akinori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=YamakataAkira en-aut-sei=Yamakata en-aut-mei=Akira kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=KudoAkihiko en-aut-sei=Kudo en-aut-mei=Akihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=AbeRyu en-aut-sei=Abe en-aut-mei=Ryu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=SakamotoRyota en-aut-sei=Sakamoto en-aut-mei=Ryota kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= affil-num=1 en-affil=Department of Energy and Hydrocarbon Chemistry, Graduate School of Engineering, Kyoto University kn-affil= affil-num=2 en-affil=Department of Energy and Hydrocarbon Chemistry, Graduate School of Engineering, Kyoto University kn-affil= affil-num=3 en-affil=Research Center for Solar Energy Chemistry, Graduate School of Engineering Science, The University of Osaka kn-affil= affil-num=4 en-affil=Research Center for Solar Energy Chemistry, Graduate School of Engineering Science, The University of Osaka kn-affil= affil-num=5 en-affil=Graduate School of Natural Science and Technology, Okayama University kn-affil= affil-num=6 en-affil=Department of Energy and Hydrocarbon Chemistry, Graduate School of Engineering, Kyoto University kn-affil= affil-num=7 en-affil=Institute of Multidisciplinary Research for Advanced Materials, Tohoku University kn-affil= affil-num=8 en-affil=Institute of Multidisciplinary Research for Advanced Materials, Tohoku University kn-affil= affil-num=9 en-affil=Institute of Multidisciplinary Research for Advanced Materials, Tohoku University kn-affil= affil-num=10 en-affil=Research Institute for Science and Technology, Tokyo University of Science kn-affil= affil-num=11 en-affil=Research Institute for Science and Technology, Tokyo University of Science kn-affil= affil-num=12 en-affil=Department of Chemistry, Kindai University kn-affil= affil-num=13 en-affil=Department of Applied Chemistry, Faculty of Science, Tokyo University of Science kn-affil= affil-num=14 en-affil=Innovative Catalysis Science Division, Institute for Open and Transdisciplinary Research Initiatives, The University of Osaka kn-affil= affil-num=15 en-affil=Graduate School of Natural Science and Technology, Okayama University kn-affil= affil-num=16 en-affil=Department of Applied Chemistry, Faculty of Science, Tokyo University of Science kn-affil= affil-num=17 en-affil=Department of Energy and Hydrocarbon Chemistry, Graduate School of Engineering, Kyoto University kn-affil= affil-num=18 en-affil=Department of Chemistry, Graduate School of Science, Tohoku University kn-affil= END start-ver=1.4 cd-journal=joma no-vol=6 cd-vols= no-issue=3 article-no= start-page=419 end-page=427 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260501 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Predictors for Recurrences Within One Year Following Radical Nephrectomy for Non-metastatic Renal Cell Carcinomas en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background/Aim: This study aimed to identify predictors of rapid recurrence following radical nephrectomy for non-metastatic renal cell carcinomas.
Patients and Methods: Patients with non-metastatic renal cell carcinoma who underwent radical nephrectomy between 2014 and 2024 at Okayama University Hospital were included. Rapid recurrence was defined as local or distant metastasis occurring within one year after radical nephrectomy, whereas recurrences occurring beyond one year were classified as non-rapid.
Results: Among a total of 194 patients, 37 (19%) experienced recurrence during a median follow-up of 37 months, with 16 (43%) being classified as experiencing rapid recurrence. The multivariate Cox hazard model revealed that microscopic venous invasion and a size of 60 mm or larger were predictors of rapid recurrence (hazard ratio=4.1, 95% confidence interval=1.5-11.4, p=0.006, and hazard ratio=8.0, 95% confidence interval=2.6-25.0, p<0.001, respectively). Dividing the entire cohort into four groups based on the presence of the two risk factors (0, 1: venous invasion, 1: tumor size, and 2), the median PFS was not estimable, 87, 67, and 7 months, respectively (p<0.001).
Conclusion: Microscopic venous invasion and tumor size of 60 mm or larger were identified as independent predictors of rapid recurrence following radical nephrectomy for non-metastatic renal cell carcinoma. en-copyright= kn-copyright= en-aut-name=BEKKUKENSUKE en-aut-sei=BEKKU en-aut-mei=KENSUKE kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=YAMANOITOMOAKI en-aut-sei=YAMANOI en-aut-mei=TOMOAKI kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KAWADATATSUSHI en-aut-sei=KAWADA en-aut-mei=TATSUSHI kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TOMINAGAYUSUKE en-aut-sei=TOMINAGA en-aut-mei=YUSUKE kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=SADAHIRATAKUYA en-aut-sei=SADAHIRA en-aut-mei=TAKUYA kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KATAYAMASATOSHI en-aut-sei=KATAYAMA en-aut-mei=SATOSHI kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=IWATATAKEHIRO en-aut-sei=IWATA en-aut-mei=TAKEHIRO kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=NISHIMURASHINGO en-aut-sei=NISHIMURA en-aut-mei=SHINGO kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=ARAKIMOTOO en-aut-sei=ARAKI en-aut-mei=MOTOO kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil=Department of Urology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Urology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Urology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of Urology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of Urology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Urology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Urology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of Urology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=9 en-affil=Department of Urology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= en-keyword=Renal cell carcinoma kn-keyword=Renal cell carcinoma en-keyword=adjuvant therapy kn-keyword=adjuvant therapy en-keyword=radical nephrectomy kn-keyword=radical nephrectomy en-keyword=early recurrence kn-keyword=early recurrence en-keyword=metastases kn-keyword=metastases END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page=1 end-page=17 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Afatinib Overcomes Osimertinib Resistance via Egfr V804F Mutation in a Syngeneic Egfr-Mutant Lung Cancer Mouse Model en-subtitle= kn-subtitle= en-abstract= kn-abstract=Osimertinib is the standard first-line treatment for advanced EGFR-mutant non-small cell lung cancer. However, acquired resistance invariably develops, and identifying novel resistance pathways is clinically important as a substantial portion remains undefined. We used an immunocompetent syngeneic lung cancer mouse model harboring an Egfr exon 19 deletion (mDEL tumors) to establish acquired resistance. Osimertinib-resistant tumors were generated in vivo using a drug-holiday/re-challenge protocol. The resistance mechanism was identified using Sanger sequencing, receptor tyrosine kinase arrays, and western blotting. Egfr V804F knock-in cells were generated using CRISPR/Cas9, and their sensitivity to osimertinib and afatinib was assessed in vitro and in vivo. We established two distinct osimertinib-resistant tumor lines in a syngeneic lung cancer mouse model (mDEL OsiR #1/#3). The analysis revealed an on-target secondary Egfr V804F mutation (corresponding to human EGFR V802F) in both tumor lines. Importantly, Egfr V804F knock-in cells demonstrated significant osimertinib resistance, with a 5.7?10.5-fold increase in in vitro IC50 (mean, 8.2-fold), but remained highly sensitive to afatinib. Furthermore, afatinib effectively overcame osimertinib resistance in the V804F knock-in cell-derived mouse model. Consistently, afatinib treatment resulted in marked tumor shrinkage and suppression of EGFR signaling in the established mDEL OsiR #1/#3 in vivo. These findings establish secondary Egfr V804F/EGFR V802F as an on-target osimertinib resistance mechanism, providing a preclinical rationale for evaluating afatinib in biomarker-selected patients harboring this alteration. en-copyright= kn-copyright= en-aut-name=TanakaTakaaki en-aut-sei=Tanaka en-aut-mei=Takaaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FujitaniMasato en-aut-sei=Fujitani en-aut-mei=Masato kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=TaokaMasataka en-aut-sei=Taoka en-aut-mei=Masataka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=ShimomuraIwao en-aut-sei=Shimomura en-aut-mei=Iwao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=OkawaSachi en-aut-sei=Okawa en-aut-mei=Sachi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MoriShunta en-aut-sei=Mori en-aut-mei=Shunta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KuribayashiTadahiro en-aut-sei=Kuribayashi en-aut-mei=Tadahiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=NishimuraJun en-aut-sei=Nishimura en-aut-mei=Jun kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=NishimuraTomoka en-aut-sei=Nishimura en-aut-mei=Tomoka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=MoritaAyako en-aut-sei=Morita en-aut-mei=Ayako kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=HaraNaofumi en-aut-sei=Hara en-aut-mei=Naofumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=NinomiyaKiichiro en-aut-sei=Ninomiya en-aut-mei=Kiichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=MakimotoGo en-aut-sei=Makimoto en-aut-mei=Go kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=HigoHisao en-aut-sei=Higo en-aut-mei=Hisao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=RaiKammei en-aut-sei=Rai en-aut-mei=Kammei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=IchiharaEiki en-aut-sei=Ichihara en-aut-mei=Eiki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=TomidaShuta en-aut-sei=Tomida en-aut-mei=Shuta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=HottaKatsuyuki en-aut-sei=Hotta en-aut-mei=Katsuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= en-aut-name=TogashiYosuke en-aut-sei=Togashi en-aut-mei=Yosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=19 ORCID= en-aut-name=MaedaYoshinobu en-aut-sei=Maeda en-aut-mei=Yoshinobu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=20 ORCID= en-aut-name=KiuraKatsuyuki en-aut-sei=Kiura en-aut-mei=Katsuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=21 ORCID= en-aut-name=KatayamaRyohei en-aut-sei=Katayama en-aut-mei=Ryohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=22 ORCID= en-aut-name=OhashiKadoaki en-aut-sei=Ohashi en-aut-mei=Kadoaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=23 ORCID= affil-num=1 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Division of Experimental Chemotherapy, Cancer Chemotherapy Center, Japanese Foundation for Cancer Research kn-affil= affil-num=3 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Division of Experimental Chemotherapy, Cancer Chemotherapy Center, Japanese Foundation for Cancer Research kn-affil= affil-num=5 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=9 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=10 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University kn-affil= affil-num=11 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University kn-affil= affil-num=12 en-affil=Center for Comprehensive Genomic Medicine, Okayama University Hospital kn-affil= affil-num=13 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University kn-affil= affil-num=14 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University kn-affil= affil-num=15 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University kn-affil= affil-num=16 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University kn-affil= affil-num=17 en-affil=Center for Comprehensive Genomic Medicine, Okayama University Hospital kn-affil= affil-num=18 en-affil=Center for Innovative Clinical Medicine, Okayama University Hospital kn-affil= affil-num=19 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University kn-affil= affil-num=20 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=21 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University kn-affil= affil-num=22 en-affil=Division of Experimental Chemotherapy, Cancer Chemotherapy Center, Japanese Foundation for Cancer Research kn-affil= affil-num=23 en-affil=Department of Hematology, Oncology and Respiratory Medicine, Okayama University kn-affil= en-keyword=afatinib kn-keyword=afatinib en-keyword=EGFR-mutant NSCLC kn-keyword=EGFR-mutant NSCLC en-keyword=exon 19 deletion kn-keyword=exon 19 deletion en-keyword=osimertinib resistance kn-keyword=osimertinib resistance en-keyword=V802F (human EGFR)/V804F (murine Egfr) kn-keyword=V802F (human EGFR)/V804F (murine Egfr) END start-ver=1.4 cd-journal=joma no-vol=41 cd-vols= no-issue=5 article-no= start-page=ivag139 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202605 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Lung Segmental Perfusion Defect Is Associated With Airway Complications After Living-Donor Lobar Lung Transplantation en-subtitle= kn-subtitle= en-abstract= kn-abstract=PURPOSE: Airway complications (ACs) are potentially fatal after lung transplantation (LT). Although bronchial blood flow to the graft is supplied mainly from the pulmonary circulation after LT, lung segmental perfusion defects (LSPDs) are occasionally identified on lung perfusion scintigraphy (Q-scinti) after living-donor lobar LT (LDLLT). Lung segmental perfusion defects may impair bronchial healing and contribute to the development of ACs. This study aimed to evaluate the relationship between LSPD and AC after LDLLT.
METHODS: We retrospectively reviewed 86 recipients who underwent LDLLT and 163 living donors at our institution from October 1998 to December 2023. Transplanted lungs that developed AC were classified as the AC group, whereas those without AC were classified as the non-AC group. Blood flow in the transplanted lungs was evaluated using Q-scinti after LDLLT.
RESULTS: AC developed in 8 (4.9%) of 163 transplanted lungs after LDLLT. Although there were no significant differences in recipient-related variables between the 2 groups, LSPD was detected significantly more frequently in the AC group (n?=?8) than in the non-AC group (n?=?155) (50.0% vs 6.5%, P?=?.002). Furthermore, transplanted lungs showing LSPD were associated with significantly higher grades of the pulmonary interlobar fissures at the time of living-donor lobectomy (P?=?.025). Overall survival did not differ between patients with and without AC after LDLLT.
CONCLUSIONS: LSPD on Q-scinti, which may develop in grafts with incomplete interlobar fissures during living-donor lobectomy, is associated with the development of AC after LDLLT.
CLINICAL REGISTRATION NUMBER: This study was approved by the Institutional Review Board of Okayama University Hospital (approval date: August 23, 2024; 2409-027). en-copyright= kn-copyright= en-aut-name=ImanishiKentaro en-aut-sei=Imanishi en-aut-mei=Kentaro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=SugimotoSeiichiro en-aut-sei=Sugimoto en-aut-mei=Seiichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=RyukoTsuyoshi en-aut-sei=Ryuko en-aut-mei=Tsuyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TomiokaYasuaki en-aut-sei=Tomioka en-aut-mei=Yasuaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TanakaShin en-aut-sei=Tanaka en-aut-mei=Shin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=SuzawaKen en-aut-sei=Suzawa en-aut-mei=Ken kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=ShienKazuhiko en-aut-sei=Shien en-aut-mei=Kazuhiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MiyoshiKentaroh en-aut-sei=Miyoshi en-aut-mei=Kentaroh kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=OkazakiMikio en-aut-sei=Okazaki en-aut-mei=Mikio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=ToyookaShinichi en-aut-sei=Toyooka en-aut-mei=Shinichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=9 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=10 en-affil=Department of General Thoracic Surgery and Breast and Endocrinological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=airway complication kn-keyword=airway complication en-keyword=interlobar fissure kn-keyword=interlobar fissure en-keyword=living-donor lobar lung transplantation kn-keyword=living-donor lobar lung transplantation en-keyword=lung perfusion scintigraphy kn-keyword=lung perfusion scintigraphy en-keyword=lung transplantation kn-keyword=lung transplantation END start-ver=1.4 cd-journal=joma no-vol=22 cd-vols= no-issue=2 article-no= start-page=e1012045 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260217 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Octopamine signaling from clock neurons plays dual roles in Drosophila long-term memory en-subtitle= kn-subtitle= en-abstract= kn-abstract=Circadian clock genes are best known for regulating circadian rhythms, but they also play crucial roles in memory processes. This suggests that memory is modulated by neural networks containing clock neurons, although the underlying mechanisms remain unclear. In Drosophila melanogaster, approximately 240 clock neurons are grouped into at least eight distinct clusters. Among them, the dorsal?lateral neurons (LNds) are required for maintaining long-term memory (LTM). In contrast, the neuropeptide Pigment-dispersing factor (Pdf), expressed in both small and large ventral?lateral neurons (s-LNvs and l-LNvs, respectively), functions as a circadian output signal and is also essential for maintaining LTM. In addition, Pdf-expressing neurons (hereafter, Pdf neurons) release neurotransmitters other than Pdf, which are involved in LTM consolidation. However, the specific transmitters used by LNds and Pdf neurons in LTM processing have remained unknown. Here, we show that octopamine signaling from LNds is essential for LTM maintenance, whereas octopamine in Pdf neurons is essential for LTM consolidation. Temporally restricted knockdown of Tyramine ƒÀ hydroxylase (Tbh), the gene encoding the enzyme required for octopamine synthesis, disrupted LTM maintenance when targeted in LNds, whereas it impaired LTM consolidation when targeted in Pdf neurons. Notably, Tbh knockdown in LNds or Pdf neurons had minimal effects on circadian behavioral rhythms or sleep. These findings reveal that octopamine released from specific subtypes of clock neurons independently regulates distinct phases of LTM in Drosophila. en-copyright= kn-copyright= en-aut-name=KurataYuto en-aut-sei=Kurata en-aut-mei=Yuto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=YoshiiTaishi en-aut-sei=Yoshii en-aut-mei=Taishi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=SakaiTakaomi en-aut-sei=Sakai en-aut-mei=Takaomi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= affil-num=1 en-affil=Department of Biological Sciences, Tokyo Metropolitan University kn-affil= affil-num=2 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=3 en-affil=Department of Biological Sciences, Tokyo Metropolitan University kn-affil= END start-ver=1.4 cd-journal=joma no-vol=27 cd-vols= no-issue=11 article-no= start-page=4879 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260528 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Rice Genotype-Dependent Phyllosphere Microbiome Assembly and Isolation of Antagonistic Burkholderia for Sheath Blight Biocontrol en-subtitle= kn-subtitle= en-abstract= kn-abstract=Rice sheath blight (RSB), caused by Rhizoctonia solani, causes 10?50% yield losses globally. Using 16S rRNA sequencing of 100 rice cultivars, we found that resistant varieties harbor significantly more diverse bacterial communities (3230 OTUs; 2064 unique) than susceptible cultivars (599 OTUs; 36 unique). Resistant varieties were enriched in beneficial Burkholderiaceae, Bacillaceae, and Pseudomonadaceae, while Sphingobacteriaceae and Enterobacteriaceae were predominant in the susceptible rice varieties. From the 260 bacterial isolates, Burkholderia vietnamiensis J14EPLEAF2 presented potent antifungal activity (77% inhibition), suppressed lesion development, and abolished sclerotia formation. This strain displayed multiple plant growth-promoting traits, enhanced seed germination, and primed defense responses by upregulating PR5 and PR10. Hypersensitive response assays confirmed B. vietnamiensis as non-pathogenic, unlike B. gladioli and B. cepacia. This study identifies B. vietnamiensis J14EPLEAF2 as a promising, safe biocontrol agent for sustainable rice disease management. en-copyright= kn-copyright= en-aut-name=Danso OforiAndrews en-aut-sei=Danso Ofori en-aut-mei=Andrews kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=NasimiZohreh en-aut-sei=Nasimi en-aut-mei=Zohreh kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=AhmedMuhammad Irfan en-aut-sei=Ahmed en-aut-mei=Muhammad Irfan kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=YanYaoting en-aut-sei=Yan en-aut-mei=Yaoting kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=LiWang en-aut-sei=Li en-aut-mei=Wang kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KandroAbdul Ghani en-aut-sei=Kandro en-aut-mei=Abdul Ghani kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=OkadaKazunori en-aut-sei=Okada en-aut-mei=Kazunori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MochidaKeiichi en-aut-sei=Mochida en-aut-mei=Keiichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=NoutoshiYoshiteru en-aut-sei=Noutoshi en-aut-mei=Yoshiteru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=ZhengAiping en-aut-sei=Zheng en-aut-mei=Aiping kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University kn-affil= affil-num=2 en-affil=State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University kn-affil= affil-num=3 en-affil=State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University kn-affil= affil-num=4 en-affil=State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University kn-affil= affil-num=5 en-affil=State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University kn-affil= affil-num=6 en-affil=State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University kn-affil= affil-num=7 en-affil=Agro-Biotechnology Research Center, The University of Tokyo kn-affil= affil-num=8 en-affil=Bioproductivity Informatics Research Team, RIKEN Center for Sustainable Resource Science kn-affil= affil-num=9 en-affil=Graduate School of Environmental and Life Science, Okayama University kn-affil= affil-num=10 en-affil=State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University kn-affil= en-keyword=rice phyllosphere kn-keyword=rice phyllosphere en-keyword=Rhizoctonia solani kn-keyword=Rhizoctonia solani en-keyword=sheath blight kn-keyword=sheath blight en-keyword=Burkholderia vietnamiensis kn-keyword=Burkholderia vietnamiensis en-keyword=biocontrol kn-keyword=biocontrol en-keyword=microbiome kn-keyword=microbiome en-keyword=16S rRNA sequencing kn-keyword=16S rRNA sequencing en-keyword=plant growth-promoting bacteria kn-keyword=plant growth-promoting bacteria en-keyword=disease resistance kn-keyword=disease resistance END start-ver=1.4 cd-journal=joma no-vol=27 cd-vols= no-issue=11 article-no= start-page=4730 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260524 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Genomic Basis of Lifestyle Divergence in Rice-Associated Burkholderia: From Pathogenesis to Plant Growth Promotion en-subtitle= kn-subtitle= en-abstract= kn-abstract=The genus Burkholderia encompasses both plant pathogenic and beneficial species, yet the genomic determinants underlying this lifestyle divergence remain poorly understood. Using 16S rRNA sequencing of 100 rice cultivars, our companion study demonstrated that resistant varieties are enriched in beneficial Burkholderiaceae, leading to the isolation of three phenotypically contrasting strains. Here, we present comparative genomic analyses of non-pathogenic biocontrol strain Burkholderia vietnamiensis J14EpLeaf2 and pathogenic strains Burkholderia gladioli A1EpSeed5 and Burkholderia cepacia J14Eple. Pathogenic strains possess significantly larger genomes (8.36?8.46 Mb) enriched in mobile genetic elements compared to the streamlined 6.95 Mb genome of B. vietnamiensis. CAZyme analysis revealed broader repertoires of glycoside hydrolases and polysaccharide lyases in pathogens, consistent with enhanced plant cell wall degradation. B. gladioli possesses a complete T3SS and expanded T6SS with 301 predicted effectors, while B. cepacia lacks structural T3SS genes but harbors 271 candidate effectors predicted to be secreted via alternative secretion pathways, compared to 180 in B. vietnamiensis. Notably, B. cepacia harbors cystic fibrosis-associated markers (cable pili, ZmpA/ZmpB), raising significant biosafety concerns that preclude its agricultural application. LC-MS validated IAA, ornibactin, and AHL production in B. vietnamiensis, supporting its plant growth-promoting and biocontrol functions. Computational PPI networks predicted distinct interaction landscapes requiring experimental validation. This study provides a genomic framework for distinguishing pathogenic from beneficial Burkholderia and supports B. vietnamiensis as a safe biocontrol agent while cautioning against B. cepacia J14Eple. en-copyright= kn-copyright= en-aut-name=OforiAndrews Danso en-aut-sei=Ofori en-aut-mei=Andrews Danso kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=NasimiZohreh en-aut-sei=Nasimi en-aut-mei=Zohreh kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=AckahFrank Kwekucher en-aut-sei=Ackah en-aut-mei=Frank Kwekucher kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=AhmedMuhammad Irfan en-aut-sei=Ahmed en-aut-mei=Muhammad Irfan kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=YanYaoting en-aut-sei=Yan en-aut-mei=Yaoting kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=LiWang en-aut-sei=Li en-aut-mei=Wang kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KandroAbdul Ghani en-aut-sei=Kandro en-aut-mei=Abdul Ghani kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=OkadaKazunori en-aut-sei=Okada en-aut-mei=Kazunori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=MochidaKeiichi en-aut-sei=Mochida en-aut-mei=Keiichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=NoutoshiYoshiteru en-aut-sei=Noutoshi en-aut-mei=Yoshiteru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=ZhengAiping en-aut-sei=Zheng en-aut-mei=Aiping kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= affil-num=1 en-affil=State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University kn-affil= affil-num=2 en-affil=State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University kn-affil= affil-num=3 en-affil=Department of Crop Science, School of Agriculture and Natural Sciences, University of Cape Coast kn-affil= affil-num=4 en-affil=State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University kn-affil= affil-num=5 en-affil=State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University kn-affil= affil-num=6 en-affil=State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University kn-affil= affil-num=7 en-affil=State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University kn-affil= affil-num=8 en-affil=Agro-Biotechnology Research Center, The University of Tokyo kn-affil= affil-num=9 en-affil=Bioproductivity Informatics Research Team, RIKEN Center for Sustainable Resource Science kn-affil= affil-num=10 en-affil=Graduate School of Environmental and Life Science, Okayama University kn-affil= affil-num=11 en-affil=State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University kn-affil= en-keyword=Burkholderia kn-keyword=Burkholderia en-keyword=comparative genomics kn-keyword=comparative genomics en-keyword=virulence factors kn-keyword=virulence factors en-keyword=secretion systems kn-keyword=secretion systems en-keyword=CAZymes kn-keyword=CAZymes en-keyword=plant-microbe interactions kn-keyword=plant-microbe interactions en-keyword=biocontrol kn-keyword=biocontrol en-keyword=pathogenicity kn-keyword=pathogenicity en-keyword=protein?protein interaction networks kn-keyword=protein?protein interaction networks en-keyword=rice sheath blight kn-keyword=rice sheath blight END start-ver=1.4 cd-journal=joma no-vol=17 cd-vols= no-issue= article-no= start-page=1756863 end-page=1756863 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260515 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Behavior of serum thyroglobulin in relation to thyroid function under low-thyrotropin conditions in general practice en-subtitle= kn-subtitle= en-abstract= kn-abstract=Introduction: Serum thyroglobulin (Tg) and thyroid hormones are essential biomarkers in the diagnosis and management of thyroid diseases. Although Tg is routinely measured as a marker for thyroid neoplasia and an adjunct in the diagnosis of thyrotoxicosis due to destructive thyroiditis, its clinical significance under conditions of abnormal thyroid function remains unclear.
Methods: We investigated the association between serum Tg levels and thyroid function in 292 patients who underwent simultaneous evaluation of serum Tg, free thyroxine (FT4), and free triiodothyronine (FT3) levels in routine clinical practice. Based on thyroid-stimulating hormone (TSH) levels, participants were classified into three groups: high-TSH (> 4.23 ƒÊIU/mL; n = 38), normal-TSH (0.61?4.23 ƒÊIU/mL; n = 191), and low-TSH (< 0.61 ƒÊIU/mL; n = 63).
Results: The low-TSH group exhibited significantly higher serum Tg levels (118.66 } 32.13 ng/mL) than the normal-TSH (70.20 } 23.48 ng/mL) and high-TSH (34.70 } 13.62 ng/mL) groups. Among patients positive for TSH-receptor antibodies (TRAb) or thyroid-stimulating antibodies (TSAb), elevated Tg levels were observed exclusively in the low-TSH group. Correlation analyses revealed that Tg levels were positively correlated with the FT3/FT4 ratio in the low-TSH group (rho = 0.62, p < 0.01), and this association was more evident in patients positive for both TRAb and TSAb (rho = 0.71, p < 0.01). These associations remained significant after multivariable adjustment and were supported by correlations between Tg and SPINA-GD, a model-based index of thyroid function reflecting deiodinase activity, with similar findings observed in patients with autoimmune hyperthyroidism.
Conclusion: These findings suggest that serum Tg levels may reflect biochemical features consistent with T3 predominance in autoimmune hyperthyroidism and have potential clinical utility in characterizing disease pathophysiology. en-copyright= kn-copyright= en-aut-name=SazumiYosuke en-aut-sei=Sazumi en-aut-mei=Yosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=SoejimaYoshiaki en-aut-sei=Soejima en-aut-mei=Yoshiaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=OtsukaYuki en-aut-sei=Otsuka en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NakanoYasuhiro en-aut-sei=Nakano en-aut-mei=Yasuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=YamamotoKoichiro en-aut-sei=Yamamoto en-aut-mei=Koichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=SuyamaAtsuhito en-aut-sei=Suyama en-aut-mei=Atsuhito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=TakaseRyosuke en-aut-sei=Takase en-aut-mei=Ryosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=OguniKohei en-aut-sei=Oguni en-aut-mei=Kohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=YasudaMiho en-aut-sei=Yasuda en-aut-mei=Miho kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=FurukawaMasanori en-aut-sei=Furukawa en-aut-mei=Masanori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=OtsukaFumio en-aut-sei=Otsuka en-aut-mei=Fumio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= affil-num=1 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=9 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=10 en-affil=Department of Laboratory Medicine, Okayama University Hospital kn-affil= affil-num=11 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=FT3/FT4 ratio kn-keyword=FT3/FT4 ratio en-keyword=hyperthyroidism kn-keyword=hyperthyroidism en-keyword=iodothyronine deiodinase kn-keyword=iodothyronine deiodinase en-keyword=thyroglobulin kn-keyword=thyroglobulin en-keyword=TSH- receptor antibody kn-keyword=TSH- receptor antibody END start-ver=1.4 cd-journal=joma no-vol=17 cd-vols= no-issue=3 article-no= start-page=102635 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202605 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Epidemiological and molecular characteristics of human-biting ticks in areas endemic to Japanese spotted fever: a prospective study en-subtitle= kn-subtitle= en-abstract= kn-abstract=Tick-borne diseases (TBDs) have become a great health concern worldwide. This study aimed to clarify the pathogenic and potentially pathogenic microorganisms carried by ticks that bite humans and to assess the risk of acquiring tick-borne infections in regions endemic for Japanese spotted fever. Tick specimens were prospectively collected from patients who presented with tick bites at 10 medical institutions in the Hiroshima, Okayama, and Kagawa prefectures, Japan between May 2023 and December 2024. The evaluated parameters included the estimated bite location, date of bite, patient age, tick species identification, and presence of TBD-associated pathogens in the collected ticks. Overall, 191 ticks were collected from 181 patients. Among patients with known sex, females were slightly more prevalent than males, and 45.9% of the patients were aged ? 70 years. Seasonal distribution demonstrated a peak incidence from April to July, with the highest number of cases observed in June (29.3%). Amblyomma testudinarium was the predominant species, accounting for 152 (79.6%) ticks, followed by Haemaphysalis hystricis (7.3%) and Haemaphysalis longicornis (6.8%). Nymphs represented the majority (83.8%), whereas adults and larvae accounted for 14.6% and 1.0%, respectively. A total of 27 ticks (14.1%) carried Rickettsia species, including two identified species (Rickettsia tamurae and Rickettsia monacensis) and one unclassified Rickettsia species. However, molecular analysis did not detect any known human pathogenic organisms, including Ehrlichia and Anaplasma species, Francisella tularensis, or Rickettsia japonica. Further epidemiological data regarding the abundance of tick-borne pathogens will provide valuable surveillance information with significant clinical utility for disease diagnosis and management. en-copyright= kn-copyright= en-aut-name=FukushimaShinnosuke en-aut-sei=Fukushima en-aut-mei=Shinnosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=SunamiHiroshi en-aut-sei=Sunami en-aut-mei=Hiroshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=NakanoYasuhiro en-aut-sei=Nakano en-aut-mei=Yasuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NakamotoKenta en-aut-sei=Nakamoto en-aut-mei=Kenta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=AkazawaHidemasa en-aut-sei=Akazawa en-aut-mei=Hidemasa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=HidaniYoshimi en-aut-sei=Hidani en-aut-mei=Yoshimi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KidaKouji en-aut-sei=Kida en-aut-mei=Kouji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=TsurumiGo en-aut-sei=Tsurumi en-aut-mei=Go kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=HagiyaHideharu en-aut-sei=Hagiya en-aut-mei=Hideharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Sumiyoshi Fujii Hospital kn-affil= affil-num=3 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Numakuma Hospital kn-affil= affil-num=7 en-affil=Okayama Prefectural Institute for Environmental Science and Public Health kn-affil= affil-num=8 en-affil=Okayama Prefectural Institute for Environmental Science and Public Health kn-affil= affil-num=9 en-affil= kn-affil= en-keyword=Epidemiology kn-keyword=Epidemiology en-keyword=Japanese spotted fever kn-keyword=Japanese spotted fever en-keyword=Rickettsia species kn-keyword=Rickettsia species en-keyword=Tick bite kn-keyword=Tick bite en-keyword=Tick-borne disease kn-keyword=Tick-borne disease END start-ver=1.4 cd-journal=joma no-vol=33 cd-vols= no-issue=5 article-no= start-page=4118 end-page=4121 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260120 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Novel Arterial Reconstruction of the Left Gastric Artery Supplying the Replaced Left Hepatic Artery in Distal Pancreatectomy with Celiac Axis Resection en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background. Distal pancreatectomy with celiac axis resection (DP-CAR) with reconstruction of the left gastric artery (LGA) is a technically challenging procedure. The middle colic artery is commonly used for LGA reconstruction. This study highlights our novel arterial reconstruction of the LGA using the common hepatic artery (CHA) supplying the replaced left hepatic artery (rLHA) during DP-CAR.
Patient and Methods. A 65-year-old man diagnosed with locally advanced unresectable pancreatic body cancer underwent DP-CAR following systemic chemotherapy. As a rLHA arising from the LGA was present, arterial reconstruction was necessary.
Results. After confirming resectability, the CHA and LGA were encircled. Following division of the pancreas and radical lymphadenectomy, the origin of the celiac axis (CA) was divided. Subsequently, the CHA and LGA were transected and anastomosed. An indocyanine green fluorescence system was used to confirm adequate arterial blood supply and satisfactory tissue perfusion. Operative time was 215 min, with an estimated blood loss of 35 mL.
Conclusions. This study demonstrated a novel arterial reconstruction of the LGA supplying the rLHA during DP-CAR. The CHA may be a candidate for the reconstruction of the LGA in DP-CAR. en-copyright= kn-copyright= en-aut-name=TakagiKosei en-aut-sei=Takagi en-aut-mei=Kosei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=ItoAtene en-aut-sei=Ito en-aut-mei=Atene kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=FujiTomokazu en-aut-sei=Fuji en-aut-mei=Tomokazu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=YasuiKazuya en-aut-sei=Yasui en-aut-mei=Kazuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=NishiyamaTakeyoshi en-aut-sei=Nishiyama en-aut-mei=Takeyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=NagaiYasuo en-aut-sei=Nagai en-aut-mei=Yasuo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=YokoyamaShohei en-aut-sei=Yokoyama en-aut-mei=Shohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=FujiwaraToshiyoshi en-aut-sei=Fujiwara en-aut-mei=Toshiyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= affil-num=1 en-affil=Department of Gastroenterological Surgery, Dentistry, and Pharmaceutical Sciences, Okayama University Graduate School of Medicine kn-affil= affil-num=2 en-affil=Department of Gastroenterological Surgery, Dentistry, and Pharmaceutical Sciences, Okayama University Graduate School of Medicine kn-affil= affil-num=3 en-affil=Department of Gastroenterological Surgery, Dentistry, and Pharmaceutical Sciences, Okayama University Graduate School of Medicine kn-affil= affil-num=4 en-affil=Department of Gastroenterological Surgery, Dentistry, and Pharmaceutical Sciences, Okayama University Graduate School of Medicine kn-affil= affil-num=5 en-affil=Department of Gastroenterological Surgery, Dentistry, and Pharmaceutical Sciences, Okayama University Graduate School of Medicine kn-affil= affil-num=6 en-affil=Department of Gastroenterological Surgery, Dentistry, and Pharmaceutical Sciences, Okayama University Graduate School of Medicine kn-affil= affil-num=7 en-affil=Department of Gastroenterological Surgery, Dentistry, and Pharmaceutical Sciences, Okayama University Graduate School of Medicine kn-affil= affil-num=8 en-affil=Department of Gastroenterological Surgery, Dentistry, and Pharmaceutical Sciences, Okayama University Graduate School of Medicine kn-affil= en-keyword=Distal pancreatectomy with celiac axis resection kn-keyword=Distal pancreatectomy with celiac axis resection en-keyword=Arterial reconstruction kn-keyword=Arterial reconstruction en-keyword=Pancreatic cancer kn-keyword=Pancreatic cancer END start-ver=1.4 cd-journal=joma no-vol=41 cd-vols= no-issue=1 article-no= start-page=97 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260424 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Navigating long-term patient-reported outcomes after colorectal cancer surgery in older adults: ostomy, nutritional status, and living conditions as determinants in a prospective cohort study en-subtitle= kn-subtitle= en-abstract= kn-abstract=Purpose To elucidate determinants of long-term patient-reported outcomes (PROs) following colorectal cancer (CRC) surgery in older adults, focusing on the impact of ostomy creation, nutritional status, and living conditions on functional independence and quality of life (QoL).
Methods This single-center, prospective observational study included patients aged???75 years who underwent elective CRC resection between July 2020 and December 2023. Comprehensive geriatric assessments were performed preoperatively, and PROs?including Instrumental Activities of Daily Living (IADL), EQ-5D, and EQ-VAS?were reassessed more than one year postoperatively. The primary outcomes were postoperative changes in IADL and QoL. Modified Poisson regression identified independent determinants of long-term decline in each PRO domain.
Results Sixty patients (median age 79 years; 60% female) completed one-year follow-up. IADL declined in 35.6% of patients, EQ-5D in 26.6%, and EQ-VAS in 43.3%. Multivariate analysis revealed that stoma formation was independently associated with IADL decline (adjusted RR?=?3.37, 95% CI 1.50?7.54, p?=?0.003), whereas living alone postoperatively correlated with preserved IADL (adjusted RR?=?0.14, 95% CI 0.02?0.87, p?=?0.035). Low preoperative BMI ( Conclusion Among older CRC patients, stoma creation predicts long-term functional decline, while low BMI predicts QoL deterioration. Conversely, independent living appears protective for functional maintenance. Integrating PROs into perioperative assessment and tailoring surgical, nutritional, and social interventions may enhance survivorship outcomes in this aging population. en-copyright= kn-copyright= en-aut-name=TeraishiFuminori en-aut-sei=Teraishi en-aut-mei=Fuminori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=ItagakiShiori en-aut-sei=Itagaki en-aut-mei=Shiori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MitsuhashiToshiharu en-aut-sei=Mitsuhashi en-aut-mei=Toshiharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TamuraRie en-aut-sei=Tamura en-aut-mei=Rie kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MatsuokaYoshikazu en-aut-sei=Matsuoka en-aut-mei=Yoshikazu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=ShojiRyohei en-aut-sei=Shoji en-aut-mei=Ryohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KanayaNobuhiko en-aut-sei=Kanaya en-aut-mei=Nobuhiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MatsumiYuki en-aut-sei=Matsumi en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=KondoYoshitaka en-aut-sei=Kondo en-aut-mei=Yoshitaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=ShigeyasuKunitoshi en-aut-sei=Shigeyasu en-aut-mei=Kunitoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=FujiwaraToshiyoshi en-aut-sei=Fujiwara en-aut-mei=Toshiyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= affil-num=1 en-affil=Department of Gastroenterological Surgery, Okayama University Hospital kn-affil= affil-num=2 en-affil=Perioperative Management Center, Okayama University Hospital kn-affil= affil-num=3 en-affil=Center for Innovative Clinical Medicine, Medical Development Field, Okayama University kn-affil= affil-num=4 en-affil=Perioperative Management Center, Okayama University Hospital kn-affil= affil-num=5 en-affil=Perioperative Management Center, Okayama University Hospital kn-affil= affil-num=6 en-affil=Department of Gastroenterological Surgery, Okayama University Hospital kn-affil= affil-num=7 en-affil=Department of Gastroenterological Surgery, Okayama University Hospital kn-affil= affil-num=8 en-affil=Department of Gastroenterological Surgery, Okayama University Hospital kn-affil= affil-num=9 en-affil=Department of Gastroenterological Surgery, Okayama University Hospital kn-affil= affil-num=10 en-affil=Department of Gastroenterological Surgery, Okayama University Hospital kn-affil= affil-num=11 en-affil=Department of Gastroenterological Surgery, Okayama University Hospital kn-affil= en-keyword=Colorectal cancer kn-keyword=Colorectal cancer en-keyword=Older patients kn-keyword=Older patients en-keyword=Patient-reported outcomes kn-keyword=Patient-reported outcomes en-keyword=Quality of life kn-keyword=Quality of life en-keyword=Surgery kn-keyword=Surgery END start-ver=1.4 cd-journal=joma no-vol=18 cd-vols= no-issue=7 article-no= start-page=1181 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260407 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Predictive Nomogram for Recurrence After Upfront Surgery for Resectable Pancreatic Ductal Adenocarcinoma: A Multicenter Study (OS-HBP-2) en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background/Objectives: Postoperative recurrence is a critical issue in the treatment of resectable pancreatic ductal adenocarcinoma (rPDAC). Moreover, the prognosis after early recurrence is extremely poor. This study aimed to develop a recurrence prediction model and to define early recurrence after upfront surgery (UFS) for rPDAC. Methods: This multicenter retrospective study included patients who underwent UFS for anatomically rPDAC between January 2013 and December 2017. Multivariate analyses were conducted to identify the risk factors for recurrence-free survival and to construct a recurrence prediction model. Subsequently, a minimum p value approach was used to determine the optimal cutoff values for early and late recurrence. Results: The cohort included 603 patients (325 men and 278 women). During the median follow-up period of 25 months (interquartile range, 15?38 months), 381 patients (63.2%) experienced a recurrence. Multivariate analyses revealed carbohydrate antigen 19-9 ?37 U/mL (hazard ratio [HR], 1.58; p < 0.001), tumor size ? 2.2 cm (HR, 1.59; p < 0.001), lymph node metastasis (HR, 1.86; p < 0.001), R1 resection (HR, 1.56; p = 0.002), and no adjuvant chemotherapy (HR, 1.54; p < 0.001) as independent predictors. The recurrence prediction model demonstrated an area under the curve of 0.72?0.75. The optimal threshold for early and late recurrences was a recurrence-free interval of five months. Carbohydrate antigen 19-9 ? 156 U/mL was a significant predictor of early recurrence (OR, 3.28; p < 0.001). Conclusions: This study identified the prognostic risk factors for recurrence and developed a recurrence prediction model for patients undergoing UFS for rPDAC. Moreover, a recurrence-free interval of five months was identified as the optimal threshold for distinguishing between early and late recurrences. en-copyright= kn-copyright= en-aut-name=YoshidaRyuichi en-aut-sei=Yoshida en-aut-mei=Ryuichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TakagiKosei en-aut-sei=Takagi en-aut-mei=Kosei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YasuiKazuya en-aut-sei=Yasui en-aut-mei=Kazuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=HiokiMasayoshi en-aut-sei=Hioki en-aut-mei=Masayoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=OkabayashiTakehiro en-aut-sei=Okabayashi en-aut-mei=Takehiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KojimaToru en-aut-sei=Kojima en-aut-mei=Toru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=EndoYoshikatsu en-aut-sei=Endo en-aut-mei=Yoshikatsu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=NobuokaDaisuke en-aut-sei=Nobuoka en-aut-mei=Daisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=SuiKenta en-aut-sei=Sui en-aut-mei=Kenta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=InagakiMasaru en-aut-sei=Inagaki en-aut-mei=Masaru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=ShinouraSusumu en-aut-sei=Shinoura en-aut-mei=Susumu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=KimuraMasashi en-aut-sei=Kimura en-aut-mei=Masashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=MatsudaTatsuo en-aut-sei=Matsuda en-aut-mei=Tatsuo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=AokiHideki en-aut-sei=Aoki en-aut-mei=Hideki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=FujiwaraToshiyoshi en-aut-sei=Fujiwara en-aut-mei=Toshiyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= affil-num=1 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of Surgery, Fukuyama City Hospital kn-affil= affil-num=5 en-affil=Department of Surgery, Kochi Health Sciences Center kn-affil= affil-num=6 en-affil=Department of Surgery, Okayama Saiseikai General Hospital kn-affil= affil-num=7 en-affil=Department of Surgery, Himeji Red Cross Hospital kn-affil= affil-num=8 en-affil=Department of Surgery, Fukuyama City Hospital kn-affil= affil-num=9 en-affil=Department of Surgery, Kagawa Prefectural Hospital kn-affil= affil-num=10 en-affil=Department of Surgery, National Hospital Organization Fukuyama Medical Center kn-affil= affil-num=11 en-affil=Department of Surgery, Tsuyama Chuo Hospital kn-affil= affil-num=12 en-affil=Department of Surgery, Matsuyama Shimin Hospital kn-affil= affil-num=13 en-affil=Department of Surgery, Tenwakai Matsuda Hospital kn-affil= affil-num=14 en-affil=Department of Surgery, National Hospital Organization Iwakuni Clinical Center kn-affil= affil-num=15 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= en-keyword=pancreatic cancer kn-keyword=pancreatic cancer en-keyword=resectable kn-keyword=resectable en-keyword=upfront surgery kn-keyword=upfront surgery en-keyword=recurrence kn-keyword=recurrence en-keyword=nomogram kn-keyword=nomogram END start-ver=1.4 cd-journal=joma no-vol=18 cd-vols= no-issue=4 article-no= start-page=602 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260212 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Outcomes After Robot-Assisted Versus Open Pancreatoduodenectomy: A Propensity Score-Matching Analysis in a High-Volume Center (TAKUMI-7) en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background/Objectives: Although the safety and feasibility of robot-assisted pancreatoduodenectomy (RPD) compared to open pancreatoduodenectomy (OPD) have been reported, studies investigating the advantages of RPD remain limited. Moreover, only a few studies have investigated the effects of robotic surgery on textbook outcomes (TO). Methods: This single-center retrospective study included 400 patients who underwent RPD and OPD at our institution between January 2017 and December 2025. Outcomes were compared between the RPD (n = 162) and OPD (n = 238) groups using propensity score-matching (PSM) analysis. The factors associated with TO were examined. Results: Before PSM, significant differences were observed between the groups. PSM yielded RPD (n = 117) and OPD (n = 117) with equal preoperative factors. The RPD group demonstrated a significantly shorter operative time (402 vs. 444 min, p < 0.001), lesser blood loss (75 vs. 270 mL, p < 0.001), shorter postoperative hospital stays (13 vs. 22 days, p < 0.001), and fewer major complications (17.1 vs. 44.4%, p < 0.001), resulting in a higher TO achievement rate (76.9 vs. 52.1%, p = 0.001). Adjusted multivariate analyses identified robotic surgery (odds ratio 3.04, p < 0.001) as an independent predictor of TO. Conclusions: This study demonstrated that RPD was potentially superior to OPD in terms of short-term outcomes. Robotic surgery was significantly associated with TO after pancreatoduodenectomy at the expertfs hand. en-copyright= kn-copyright= en-aut-name=TakagiKosei en-aut-sei=Takagi en-aut-mei=Kosei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FujiTomokazu en-aut-sei=Fuji en-aut-mei=Tomokazu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YasuiKazuya en-aut-sei=Yasui en-aut-mei=Kazuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=UmedaYuzo en-aut-sei=Umeda en-aut-mei=Yuzo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=YoshidaRyuichi en-aut-sei=Yoshida en-aut-mei=Ryuichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=YamadaMotohiko en-aut-sei=Yamada en-aut-mei=Motohiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=NishiyamaTakeyoshi en-aut-sei=Nishiyama en-aut-mei=Takeyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=NagaiYasuo en-aut-sei=Nagai en-aut-mei=Yasuo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=ItoAtene en-aut-sei=Ito en-aut-mei=Atene kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=OkadaNaohiro en-aut-sei=Okada en-aut-mei=Naohiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=YokoyamaShohei en-aut-sei=Yokoyama en-aut-mei=Shohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=FujiwaraToshiyoshi en-aut-sei=Fujiwara en-aut-mei=Toshiyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= affil-num=1 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of Hepatobiliary Pancreatic Surgery, Ehime University Graduate School of Medicine kn-affil= affil-num=5 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=9 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=10 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=11 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=12 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= en-keyword=pancreatoduodenectomy kn-keyword=pancreatoduodenectomy en-keyword=robotic surgery kn-keyword=robotic surgery en-keyword=open surgery kn-keyword=open surgery en-keyword=textbook outcome kn-keyword=textbook outcome END start-ver=1.4 cd-journal=joma no-vol=40 cd-vols= no-issue=1 article-no= start-page=349 end-page=354 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Modified Subtraction Technique for the Middle Hepatic Vein Tributary and Glissonean Pedicle in Right Lobe Graft Procurement en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background/Aim: The procurement of right lobe grafts while preserving the middle hepatic vein (MHV) tributaries (V5 and V8) just before graft retrieval is technically challenging. Moreover, the safe isolation of the hepatic duct from the Glissonean pedicle is essential in living donor hepatectomy. To date, few studies have reported surgical techniques for preserving the MHV tributaries during right lobe graft procurement.
Patients and Methods: This report presents our modified subtraction technique for managing the MHV tributaries and Glissonean pedicle during right lobe graft procurement. First, a subtraction technique for the MHV tributaries was initiated by isolating the right Glissonean pedicle. The lower tip of the tape was placed behind the caudate lobe and passed behind the right hepatic vein. Each end of the tape was then passed behind V5 and V8, followed by dissection of the remaining liver parenchyma between them. Subsequently, a subtraction technique for the Glissonean pedicle was applied to safely isolate the right hepatic duct and hilar plate.
Results: Between September 2011 and May 2025, seven donors underwent right lobe graft procurement using the subtraction technique for the middle hepatic vein tributaries. The mean operative time was 381 min with an estimated blood loss of 217 ml. Using the subtraction technique, all middle hepatic vein tributaries were preserved just before graft retrieval.
Conclusion: This study presents subtraction techniques used during living donor hepatectomy. The technique may facilitate liver parenchyma dissection while preserving MHV tributaries just before graft retrieval and isolating the Glissonean pedicle. en-copyright= kn-copyright= en-aut-name=TAKAGIKOSEI en-aut-sei=TAKAGI en-aut-mei=KOSEI kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FUJITOMOKAZU en-aut-sei=FUJI en-aut-mei=TOMOKAZU kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YASUIKAZUYA en-aut-sei=YASUI en-aut-mei=KAZUYA kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NISHIYAMATAKEYOSHI en-aut-sei=NISHIYAMA en-aut-mei=TAKEYOSHI kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=NAGAIYASUO en-aut-sei=NAGAI en-aut-mei=YASUO kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=YOKOYAMASHOHEI en-aut-sei=YOKOYAMA en-aut-mei=SHOHEI kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=UMEDAYUZO en-aut-sei=UMEDA en-aut-mei=YUZO kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=FUJIWARATOSHIYOSHI en-aut-sei=FUJIWARA en-aut-mei=TOSHIYOSHI kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= affil-num=1 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Hepatobiliary Pancreatic Surgery, Ehime University Graduate School of Medicine kn-affil= affil-num=8 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= en-keyword=Subtraction kn-keyword=Subtraction en-keyword=tape repositioning kn-keyword=tape repositioning en-keyword=middle hepatic vein kn-keyword=middle hepatic vein en-keyword=donor procurement kn-keyword=donor procurement END start-ver=1.4 cd-journal=joma no-vol=40 cd-vols= no-issue=3 article-no= start-page=1570 end-page=1576 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260428 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Impact of Donor Cirrhosis Outcome Risk Estimator (CORE) Score on Recipient Outcomes Following Living-donor Liver Transplantation en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background/Aim: Several studies have investigated predictive factors for outcomes of living-donor liver transplantation (LDLT). However, few have examined the clinical significance of the Cirrhosis Outcome Risk Estimator (CORE) score on prognosis following LDLT. This study aimed to investigate the impact of donor CORE scores in predicting the outcomes of patients undergoing LDLT.
Patients and Methods: This single-center retrospective study included 362 adult LDLT recipients at our Institution between January 1998 and December 2024. Patient and graft survival rates were compared between the groups with low (?0.05) and high (>0.05) CORE scores. Subsequently, multivariate analyses were performed to investigate prognostic factors for survival, including the CORE score.
Results: Patients in the group with a low CORE score had significantly better survival (p=0.001; 5-year, 85.3% vs. 76.2%) and graft survival (p=0.001; 5-year, 84.1% vs. 74.6%) than those with a high CORE score. Multivariate analyses identified the CORE score (>0.05) as an independent predictor of patient survival (hazard ratio=1.70, 95% confidence interval=1.01-2.62, p=0.018) and graft survival (hazard ratio=1.66, 95% confidence interval=1.07-2.57, p=0.024).
Conclusion: This study demonstrated the clinical significance of donor CORE scores in recipient outcomes after LDLT. Assessment of the donor CORE score may be useful for evaluating the quality of liver grafts and estimating recipient outcomes. en-copyright= kn-copyright= en-aut-name=TAKAGIKOSEI en-aut-sei=TAKAGI en-aut-mei=KOSEI kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FUJITOMOKAZU en-aut-sei=FUJI en-aut-mei=TOMOKAZU kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YASUIKAZUYA en-aut-sei=YASUI en-aut-mei=KAZUYA kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NISHIYAMATAKEYOSHI en-aut-sei=NISHIYAMA en-aut-mei=TAKEYOSHI kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=NAGAIYASUO en-aut-sei=NAGAI en-aut-mei=YASUO kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=OKADANAOHIRO en-aut-sei=OKADA en-aut-mei=NAOHIRO kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=YOKOYAMASHOHEI en-aut-sei=YOKOYAMA en-aut-mei=SHOHEI kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=FUJIWARATOSHIYOSHI en-aut-sei=FUJIWARA en-aut-mei=TOSHIYOSHI kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= affil-num=1 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= en-keyword=Living-donor liver transplantation kn-keyword=Living-donor liver transplantation en-keyword=donor kn-keyword=donor en-keyword=recipient kn-keyword=recipient en-keyword=survival outcomes kn-keyword=survival outcomes en-keyword=Cirrhosis Outcome Risk Estimator score kn-keyword=Cirrhosis Outcome Risk Estimator score en-keyword=CORE kn-keyword=CORE END start-ver=1.4 cd-journal=joma no-vol=17 cd-vols= no-issue=22 article-no= start-page=3694 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20251118 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Prognosis Prediction Model After Upfront Surgery for Resectable Pancreatic Ductal Adenocarcinoma: A Multicenter Study (OS-HBP-2) en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background/Objectives: Upfront surgery (UFS) remains the standard treatment for patients with resectable pancreatic ductal adenocarcinoma (PDAC). We aimed to investigate the prognostic factors for survival after UFS in patients with resectable PDAC and to develop a prognostic prediction model. Methods: This multicenter, retrospective study included 603 patients who underwent UFS for resectable PDAC between January 2013 and December 2017. Univariate and multivariate analyses were performed to identify prognostic factors for overall survival (OS). We constructed a prognostic prediction model for OS after UFS. An internal validation was performed to evaluate the discriminative performance of the model. Results: The 1-, 3-, and 5-year OS rates were 83.7%, 48.2%, and 37.5%, respectively. The Cox proportional hazards model showed that tumor size > 2 cm (hazard ratio [HR] 1.50, p = 0.001); tumor contact with the portal and superior mesenteric veins of ?180‹ (HR 1.47, p = 0.003); carbohydrate antigen 19-9 levels of 40 to 500 U/mL (HR 1.59, p = 0.002) and ?500 U/mL (HR 2.16, p < 0.001); and a modified Glasgow Prognostic Score of two (HR 1.56, p = 0.038) were predictors associated with OS. The prognostic prediction model for 5-year OS demonstrated an area under the curve of 0.68. The calibration plots indicate a concordance index of 0.63. Conclusions: We identified the preoperative prognostic factors for OS and developed a prognostic prediction model to estimate OS in patients undergoing UFS for resectable PDAC. Our model may be useful and internally validated for predicting OS. en-copyright= kn-copyright= en-aut-name=TakagiKosei en-aut-sei=Takagi en-aut-mei=Kosei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=YoshidaRyuichi en-aut-sei=Yoshida en-aut-mei=Ryuichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YasuiKazuya en-aut-sei=Yasui en-aut-mei=Kazuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=HiokiMasayoshi en-aut-sei=Hioki en-aut-mei=Masayoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=OkabayashiTakehiro en-aut-sei=Okabayashi en-aut-mei=Takehiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KojimaToru en-aut-sei=Kojima en-aut-mei=Toru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=EndoYoshikatsu en-aut-sei=Endo en-aut-mei=Yoshikatsu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=NobuokaDaisuke en-aut-sei=Nobuoka en-aut-mei=Daisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=SuiKenta en-aut-sei=Sui en-aut-mei=Kenta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=InagakiMasaru en-aut-sei=Inagaki en-aut-mei=Masaru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=ShinouraSusumu en-aut-sei=Shinoura en-aut-mei=Susumu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=KimuraMasashi en-aut-sei=Kimura en-aut-mei=Masashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=MatsudaTatsuo en-aut-sei=Matsuda en-aut-mei=Tatsuo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=AokiHideki en-aut-sei=Aoki en-aut-mei=Hideki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=FujiwaraToshiyoshi en-aut-sei=Fujiwara en-aut-mei=Toshiyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= affil-num=1 en-affil=Department of Gastroenterological Surgery, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Department of Gastroenterological Surgery, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Department of Gastroenterological Surgery, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Department of Surgery, Fukuyama City Hospital kn-affil= affil-num=5 en-affil=Department of Surgery, Kochi Health Sciences Center kn-affil= affil-num=6 en-affil=Department of Surgery, Okayama Saiseikai General Hospital kn-affil= affil-num=7 en-affil=Department of Surgery, Himeji Red Cross Hospital kn-affil= affil-num=8 en-affil=Department of Surgery, Fukuyama City Hospital kn-affil= affil-num=9 en-affil=Department of Surgery, Kagawa Prefectural Hospital kn-affil= affil-num=10 en-affil=Department of Surgery, National Hospital Organization Fukuyama Medical Center kn-affil= affil-num=11 en-affil=Department of Surgery, Tsuyama Chuo Hospital kn-affil= affil-num=12 en-affil=Department of Surgery, Matsuyama Shimin Hospital kn-affil= affil-num=13 en-affil=Department of Surgery, Tenwakai Matsuda Hospital kn-affil= affil-num=14 en-affil=Department of Surgery, National Hospital Organization Iwakuni Clinical Center kn-affil= affil-num=15 en-affil=Department of Gastroenterological Surgery, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=pancreatic cancer kn-keyword=pancreatic cancer en-keyword=resectable kn-keyword=resectable en-keyword=upfront Surgery kn-keyword=upfront Surgery en-keyword=outcomes kn-keyword=outcomes END start-ver=1.4 cd-journal=joma no-vol=32 cd-vols= no-issue=11 article-no= start-page=801 end-page=809 dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250922 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Risk Factors and Strategies for Failure to Rescue Following Hepatectomy: A Review en-subtitle= kn-subtitle= en-abstract= kn-abstract=Failure to rescue (FTR), defined as mortality after major postoperative complications, is a crucial indicator of surgical quality. Although mortality rates after hepatectomy have declined owing to improved surgical techniques and perioperative care, FTR remains a major concern. This review synthesizes the current evidence on the risk factors contributing to FTR after hepatectomy and explores multidisciplinary strategies to reduce its rate. Post-hepatectomy liver failure, hemorrhage, bile leakage, and sepsis commonly precede FTR. Risk factors for FTR are multifactorial and include patient-, procedure-, and system-related factors. Higher procedural volumes are associated with lower FTR rates, likely due to better infrastructure, experienced personnel, and access to rapid interventions. Strategies to reduce the FTR rate include preoperative optimization, intraoperative precision, and vigilant postoperative surveillance. System-level approaches, such as multidisciplinary rounds, standardized escalation protocols, and a robust institutional safety culture, are also pivotal. Future innovations, such as predictive analytics, artificial intelligence, and wearable monitoring devices, offer considerable potential for the early detection of complications. Centralization of complex liver surgeries to high-volume centers is recommended to enhance team preparedness. This review emphasizes the importance of adopting a comprehensive, proactive, and technologically integrated approach to reduce the FTR rate after hepatectomy and improve patient survival. en-copyright= kn-copyright= en-aut-name=KimuraJiro en-aut-sei=Kimura en-aut-mei=Jiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TakagiKosei en-aut-sei=Takagi en-aut-mei=Kosei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=FujiTomokazu en-aut-sei=Fuji en-aut-mei=Tomokazu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=YasuiKazuya en-aut-sei=Yasui en-aut-mei=Kazuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=NishiyamaTakeyoshi en-aut-sei=Nishiyama en-aut-mei=Takeyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=FujiwaraToshiyoshi en-aut-sei=Fujiwara en-aut-mei=Toshiyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Gastroenterological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= en-keyword=failure to rescue kn-keyword=failure to rescue en-keyword=hepatectomy kn-keyword=hepatectomy en-keyword=mortality kn-keyword=mortality en-keyword=risk factor kn-keyword=risk factor END start-ver=1.4 cd-journal=joma no-vol=17 cd-vols= no-issue=18 article-no= start-page=3038 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20250917 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Outcomes of Robotic Pancreatectomy in the Octogenarian: A Multicenter Retrospective Cohort Study en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background/Objectives: Due to the increasing incidence of pancreatic and periampullary cancers with advancing age, coupled with the growing evidence supporting minimally invasive pancreatectomy, the demand for such procedures is rising. However, data on the feasibility of robotic pancreatectomy in octogenarian patients remain scant. This study aimed to investigate overall outcomes of robotic pancreatectomy and evaluate its safety and feasibility in octogenarian patients. Methods: A multicenter, retrospective study was conducted, including 380 patients who underwent robotic pancreatectomy at two high-volume centers in Japan from April 2020 to December 2024. Using prospectively collected data, we compared outcomes between younger patients (<80 years) and octogenarian patients (?80 years). Multivariable logistic regression analyses were performed to assess the impact of age on postoperative outcomes. Results: Among the 380 patients, with a median age of 72 (interquartile range: 61?77) years, 213 underwent robotic pancreatoduodenectomy (RPD), and 167 underwent robotic distal pancreatectomy (RDP). Octogenarian patients were found to have more comorbidities and a higher incidence of malignant diseases. Octogenarians experienced significantly longer hospital stays post-RPD (22 [octogenarian; n = 36] vs. 14 [younger; n = 177] days, p < 0.001) and post-RDP (14 [n = 23] vs. 10.5 [n = 144] days, p = 0.02), yet their perioperative outcomes were comparable. Multivariable analyses indicated that age (?80 years) was not a significant risk factor for major complications following robotic pancreatectomy (odds ratio, 1.33; 95% confidence interval, 0.59?2.84; p = 0.479). Conclusions: This multicenter study conducted at high-volume centers suggests that robotic pancreatectomy can be safely performed in carefully selected octogenarian patients. en-copyright= kn-copyright= en-aut-name=TakagiKosei en-aut-sei=Takagi en-aut-mei=Kosei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=UchidaYuichiro en-aut-sei=Uchida en-aut-mei=Yuichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=FujiTomokazu en-aut-sei=Fuji en-aut-mei=Tomokazu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TakaharaTakeshi en-aut-sei=Takahara en-aut-mei=Takeshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=YasuiKazuya en-aut-sei=Yasui en-aut-mei=Kazuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=NishiyamaTakeyoshi en-aut-sei=Nishiyama en-aut-mei=Takeyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=UyamaIchiro en-aut-sei=Uyama en-aut-mei=Ichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=SudaKoichi en-aut-sei=Suda en-aut-mei=Koichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=FujiwaraToshiyoshi en-aut-sei=Fujiwara en-aut-mei=Toshiyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil= Department of Gastroenterological Surgery, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil= Department of Surgery, Fujita Health University kn-affil= affil-num=3 en-affil= Department of Gastroenterological Surgery, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil= Department of Surgery, Fujita Health University kn-affil= affil-num=5 en-affil= Department of Gastroenterological Surgery, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=6 en-affil= Department of Gastroenterological Surgery, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil= Department of Advanced Laparoscopic and Robotic Surgery, Fujita Health University kn-affil= affil-num=8 en-affil= Department of Surgery, Fujita Health University kn-affil= affil-num=9 en-affil= Department of Gastroenterological Surgery, Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=robotic pancreatectomy kn-keyword=robotic pancreatectomy en-keyword=pancreatoduodenectomy kn-keyword=pancreatoduodenectomy en-keyword=distal pancreatectomy kn-keyword=distal pancreatectomy en-keyword=elderly patients kn-keyword=elderly patients END start-ver=1.4 cd-journal=joma no-vol=33 cd-vols= no-issue=7 article-no= start-page=6296 end-page=6305 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260415 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Association of Preoperative Inspiratory Muscle Weakness and Respiratory Sarcopenia with Postoperative Pneumonia Following Esophagectomy: A Multicenter Retrospective Cohort Study en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background Esophagectomy is associated with a high rate of postoperative pneumonia, which significantly impacts patient outcomes, including survival and quality of life. While some modifiable risk factors have been identified, the specific role of preoperative respiratory muscle function remains to be fully elucidated. Therefore, this study was designed to investigate the association of preoperative inspiratory muscle weakness (IMW) and respiratory sarcopenia (RS) with postoperative pneumonia in patients with esophageal cancer who underwent esophagectomy.
Methods Patients with esophageal cancer who underwent esophagectomy between July 2021 and June 2023 were enrolled in this multicenter, retrospective, cohort study. The primary outcome was postoperative pneumonia, while preoperative IMW and RS were the main exposures. Respiratory sarcopenia was defined as the presence of both IMW and low skeletal muscle mass, which is assessed by using bioelectrical impedance analysis. Associations were analyzed by using G-computation within a Bayesian framework.
Results A total of 213 patients were enrolled in this study. Postoperative pneumonia occurred in 42 patients (19.7%). Preoperative IMW was strongly associated with an increased risk of pneumonia, with a mean risk difference (RD) of 18.1% (95% credible interval [CrI] 5?33.6). The posterior probability that the RD exceeds 5% was >?98%. Respiratory sarcopenia also showed a potential association, although with greater uncertainty (mean RD, 11.2%; 95% CrI ??3.8 to 27.9). The posterior probability that the RD exceeds 5% was 76.7%.
Conclusions Preoperative IMW is a notable risk factor for postoperative pneumonia following esophagectomy. While a potential link with RS was found, its role remains uncertain and requires further investigation. en-copyright= kn-copyright= en-aut-name=OkuraKazuki en-aut-sei=Okura en-aut-mei=Kazuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=IkedaTomohiro en-aut-sei=Ikeda en-aut-mei=Tomohiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=SatoHiroki en-aut-sei=Sato en-aut-mei=Hiroki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KatayamaSho en-aut-sei=Katayama en-aut-mei=Sho kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TakahashiYusuke en-aut-sei=Takahashi en-aut-mei=Yusuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=NagakiYushi en-aut-sei=Nagaki en-aut-mei=Yushi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=WakitaAkiyuki en-aut-sei=Wakita en-aut-mei=Akiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MaedaNaoaki en-aut-sei=Maeda en-aut-mei=Naoaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=TanabeShunsuke en-aut-sei=Tanabe en-aut-mei=Shunsuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=FujiwaraYoshinori en-aut-sei=Fujiwara en-aut-mei=Yoshinori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=NomaKazuhiro en-aut-sei=Noma en-aut-mei=Kazuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=SatoYusuke en-aut-sei=Sato en-aut-mei=Yusuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=KasukawaYuji en-aut-sei=Kasukawa en-aut-mei=Yuji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=MiyakoshiNaohisa en-aut-sei=Miyakoshi en-aut-mei=Naohisa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= affil-num=1 en-affil=Department of Rehabilitation Medicine, Akita University Hospital kn-affil= affil-num=2 en-affil=Department of Rehabilitation Medicine, Okayama University Hospital kn-affil= affil-num=3 en-affil=Department of Rehabilitation, Kawasaki University of Medical Welfare kn-affil= affil-num=4 en-affil=Department of Rehabilitation Medicine, Okayama University Hospital kn-affil= affil-num=5 en-affil=Department of Rehabilitation Medicine, Akita University Hospital kn-affil= affil-num=6 en-affil=Department of Esophageal Surgery, Akita University Hospital kn-affil= affil-num=7 en-affil=Department of Esophageal Surgery, Akita University Hospital kn-affil= affil-num=8 en-affil=Department of Gastroenterological Surgery, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=9 en-affil=Department of Gastroenterological Surgery, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=10 en-affil=Department of Digestive Surgery, Kawasaki Medical School kn-affil= affil-num=11 en-affil=Department of Gastroenterological Surgery, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=12 en-affil=Department of Esophageal Surgery, Akita University Hospital kn-affil= affil-num=13 en-affil=Department of Rehabilitation Medicine, Akita University Hospital kn-affil= affil-num=14 en-affil=Department of Rehabilitation Medicine, Akita University Hospital kn-affil= en-keyword=Inspiratory muscle kn-keyword=Inspiratory muscle en-keyword=Respiratory sarcopenia kn-keyword=Respiratory sarcopenia en-keyword=Postoperative pneumonia kn-keyword=Postoperative pneumonia en-keyword=Perioperative rehabilitation kn-keyword=Perioperative rehabilitation en-keyword=Esophagectomy kn-keyword=Esophagectomy en-keyword=Esophageal cancer kn-keyword=Esophageal cancer END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page=1 end-page=13 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260514 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Atezolizumab + Chemotherapy in Older Patients With Lung Cancer in Japan en-subtitle= kn-subtitle= en-abstract= kn-abstract=Pivotal phase 3 trials leading to the approvals of atezolizumab„Ÿchemotherapy combinations for non-small cell and extensive-stage small cell lung cancer (NSCLC and ES-SCLC) had strict eligibility criteria. J-TAIL-2 was a prospective, observational study in Japan that evaluated atezolizumab regimens for advanced NSCLC/ES-SCLC, including patients ineligible for global trials. The primary endpoint was 12-month overall survival (OS); safety and efficacy in subgroups defined by age, ECOG PS and/or G8 score, and creatinine clearance were key secondary endpoints. As of February 3, 2023, 1217 patients were treated in clinical practice based on Japanese labeling/treatment guidelines. Patients received atezolizumab with either carboplatin and nab-paclitaxel (atezo + CnP), carboplatin/cisplatin and pemetrexed (atezo + PP), or bevacizumab and carboplatin and paclitaxel (atezo + bev?+?CP) in the NSCLC cohort (n?=?814) or with carboplatin and etoposide (atezo + CE) in the ES-SCLC cohort (n?=?403). Overall, 53.5% were ??70?years old, and 11.8% had ECOG PS ??2; median G8 scores were 13 (NSCLC cohort) and 12 (ES-SCLC). Patients ?0.5 log2 fold change) and linked to clinical outcomes reported in J-TAIL-2. IL-6, MUC-16, and KRT-19 were associated with shorter progression-free survival across multiple regimens. Granzyme A and B, immune activation markers, were elevated in responders who received atezolizumab + CnP and atezolizumab + bev?+?CP. High levels of baseline immune stimulation proteins were associated with irAEs across regimens. Protein expression changes were varied and regimen-dependent in subgroup analyses including older patients and those with EGFR-mutant tumors. These data warrant further investigation across different cancer types and atezolizumab-containing regimens to determine their relevance to efficacy and irAE occurrence of atezolizumab combination therapy. en-copyright= kn-copyright= en-aut-name=GotoYasushi en-aut-sei=Goto en-aut-mei=Yasushi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=NishioMakoto en-aut-sei=Nishio en-aut-mei=Makoto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=OhashiKadoaki en-aut-sei=Ohashi en-aut-mei=Kadoaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=OsoegawaAtsushi en-aut-sei=Osoegawa en-aut-mei=Atsushi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KikuchiEiki en-aut-sei=Kikuchi en-aut-mei=Eiki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KimuraHideharu en-aut-sei=Kimura en-aut-mei=Hideharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=ShimizuJunichi en-aut-sei=Shimizu en-aut-mei=Junichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MiyauchiEisaku en-aut-sei=Miyauchi en-aut-mei=Eisaku kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=YoshiokaHiroshige en-aut-sei=Yoshioka en-aut-mei=Hiroshige kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=YoshinoIchiro en-aut-sei=Yoshino en-aut-mei=Ichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=MisumiToshihiro en-aut-sei=Misumi en-aut-mei=Toshihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=WatanabeYasutaka en-aut-sei=Watanabe en-aut-mei=Yasutaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=KatakamiNobuyuki en-aut-sei=Katakami en-aut-mei=Nobuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=KisoharaAkira en-aut-sei=Kisohara en-aut-mei=Akira kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=YamaguchiMasafumi en-aut-sei=Yamaguchi en-aut-mei=Masafumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=KurokiHirotaka en-aut-sei=Kuroki en-aut-mei=Hirotaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=SugimotoMasamichi en-aut-sei=Sugimoto en-aut-mei=Masamichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=AshimuraHisao en-aut-sei=Ashimura en-aut-mei=Hisao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= en-aut-name=TanakaMisa en-aut-sei=Tanaka en-aut-mei=Misa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=19 ORCID= en-aut-name=GemmaAkihiko en-aut-sei=Gemma en-aut-mei=Akihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=20 ORCID= affil-num=1 en-affil=Department of Thoracic Oncology, National Cancer Center Hospital kn-affil= affil-num=2 en-affil=Department of Thoracic Medical Oncology, Cancer Institute Hospital of Japanese Foundation for Cancer Research kn-affil= affil-num=3 en-affil=Department of Respiratory Medicine, Okayama University Hospital kn-affil= affil-num=4 en-affil=Department of Thoracic and Breast Surgery, Oita University Faculty of Medicine kn-affil= affil-num=5 en-affil=Department of Respiratory Medicine, Faculty of Medicine, Hokkaido University kn-affil= affil-num=6 en-affil=Department of Respiratory Medicine, Kanazawa University Hospital kn-affil= affil-num=7 en-affil=Department of Thoracic Oncology, Aichi Cancer Center Hospital kn-affil= affil-num=8 en-affil=Department of Respiratory Medicine, Tohoku University Hospital kn-affil= affil-num=9 en-affil=Department of Thoracic Oncology, Kansai Medical University kn-affil= affil-num=10 en-affil=Department of Thoracic Surgery, International University of Health and Welfare Narita Hospital kn-affil= affil-num=11 en-affil=Department of Data Science, National Cancer Center Hospital East kn-affil= affil-num=12 en-affil=Department of Thoracic Oncology, Saitama Cancer Center kn-affil= affil-num=13 en-affil=Department of Pulmonary Medicine and Medical Oncology Takarazuka City Hospital Takarazuka Japan kn-affil= affil-num=14 en-affil=Department of Respiratory Medicine, Kasukabe Medical Center kn-affil= affil-num=15 en-affil=Department of Thoracic Oncology, NHO Kyushu Cancer Center kn-affil= affil-num=16 en-affil=Chugai Pharmaceutical Co., Ltd. kn-affil= affil-num=17 en-affil=Chugai Pharmaceutical Co., Ltd. kn-affil= affil-num=18 en-affil=Chugai Pharmaceutical Co., Ltd. kn-affil= affil-num=19 en-affil=Chugai Pharmaceutical Co., Ltd. kn-affil= affil-num=20 en-affil=Nippon Medical School kn-affil= en-keyword=atezolizumab kn-keyword=atezolizumab en-keyword=biomarker kn-keyword=biomarker en-keyword=non-small cell lung cancer kn-keyword=non-small cell lung cancer en-keyword=plasma protein kn-keyword=plasma protein en-keyword=small cell lung cancer kn-keyword=small cell lung cancer END start-ver=1.4 cd-journal=joma no-vol=68 cd-vols= no-issue=4-5 article-no= start-page=e70061 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202605 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Computer]Aided Sperm Analysis Protocol for Evaluating Sperm Motility in Japanese Medaka en-subtitle= kn-subtitle= en-abstract= kn-abstract=Changes in sperm motility can serve as an early indicator of reproductive effects caused by environmental chemicals or genetic perturbations. However, sperm motility is highly sensitive to external factors such as osmolarity, ionic composition, and the timing of measurement after activation, making it challenging to obtain consistent and reproducible measurements. Here, we present a standardized protocol for assessing sperm motility in Japanese medaka (Oryzias latipes) using a sperm motility analysis system (SMAS), an application for computer-aided sperm motility analysis (CASA). This protocol details the procedures for sperm collection, activation, and quantitative motility assessment, with particular focus on changes in the percentage of motile sperm post activation and the effects of sperm cryopreservation. We demonstrate time-dependent declines in sperm motility and velocity, and highlight the importance of early post-activation measurements to accurately capture peak motility. Notably, cryopreservation significantly accelerated the decline in sperm motility rate without affecting the initial proportion of motile sperm. To enable reliable comparisons among experimental groups, we recommend standardizing the initiation time after sperm activation by using CASA, and show that measurements should be initiated within 1?min after activation to obtain consistent and reliable data. This standardized SMAS-based protocol provides a robust and reproducible framework for sperm motility analysis in medaka and will be valuable not only for studies in reproductive biology, toxicology, and environmental risk assessment but also for applied research, such as breeding of aquacultural fishes. en-copyright= kn-copyright= en-aut-name=KuroyanagiMiwa en-aut-sei=Kuroyanagi en-aut-mei=Miwa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=AnsaiSatoshi en-aut-sei=Ansai en-aut-mei=Satoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=OkamotoKeigo en-aut-sei=Okamoto en-aut-mei=Keigo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KatoAi en-aut-sei=Kato en-aut-mei=Ai kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=YamazakiTouko en-aut-sei=Yamazaki en-aut-mei=Touko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KameiYasuhiro en-aut-sei=Kamei en-aut-mei=Yasuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=WatanabeEiji en-aut-sei=Watanabe en-aut-mei=Eiji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=NaruseKiyoshi en-aut-sei=Naruse en-aut-mei=Kiyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=OginoYukiko en-aut-sei=Ogino en-aut-mei=Yukiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil=Department of Advanced Aquaculture Science, Faculty of Marine Bioscience and Technology, Fukui Prefectural University kn-affil= affil-num=2 en-affil=Ushimado Marine Institute, Faculty of Science, Okayama University kn-affil= affil-num=3 en-affil=Laboratory of Aquatic Molecular Developmental Biology, Graduate School of Bioresource and Bioenvironmental Sciences, Kyushu University kn-affil= affil-num=4 en-affil=Interuniversity Bio-Backup Project Center, National Institute for Basic Biology (NIBB) kn-affil= affil-num=5 en-affil=Laboratory of Bioresources, National Institutes of Natural Sciences kn-affil= affil-num=6 en-affil=Optics and Bioimaging Facility, NIBB kn-affil= affil-num=7 en-affil=Basic Biology Program, Graduate University for Advanced Studies (SOKENDAI) kn-affil= affil-num=8 en-affil=Laboratory of Bioresources, National Institutes of Natural Sciences kn-affil= affil-num=9 en-affil=Laboratory of Aquatic Molecular Developmental Biology, Graduate School of Bioresource and Bioenvironmental Sciences, Kyushu University kn-affil= en-keyword=computer-aided sperm motility analysis (CASA) kn-keyword=computer-aided sperm motility analysis (CASA) en-keyword=medaka kn-keyword=medaka en-keyword=sperm motility kn-keyword=sperm motility en-keyword=sperm motility analysis system (SMAS) kn-keyword=sperm motility analysis system (SMAS) END start-ver=1.4 cd-journal=joma no-vol=14 cd-vols= no-issue=6 article-no= start-page=e72814 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260525 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=CPPD-Induced Iliopsoas Bursitis Mimicking Pyomyositis en-subtitle= kn-subtitle= en-abstract= kn-abstract=Calcium pyrophosphate deposition disease may mimic an iliopsoas abscess on imaging. The combined use of polarized light microscopy and 16S rRNA gene analysis can help distinguish crystal-induced inflammation from infection, thereby preventing unnecessary antimicrobial therapy. en-copyright= kn-copyright= en-aut-name=OkunobuHiroki en-aut-sei=Okunobu en-aut-mei=Hiroki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FukushimaShinnosuke en-aut-sei=Fukushima en-aut-mei=Shinnosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=HagiyaHideharu en-aut-sei=Hagiya en-aut-mei=Hideharu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=OtsukaFumio en-aut-sei=Otsuka en-aut-mei=Fumio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= affil-num=1 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Infectious Diseases, Okayama University Hospital kn-affil= affil-num=4 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=16S rRNA kn-keyword=16S rRNA en-keyword=abscess kn-keyword=abscess en-keyword=calcium pyrophosphate deposition disease kn-keyword=calcium pyrophosphate deposition disease en-keyword=culture-negative kn-keyword=culture-negative en-keyword=direct sequencing analysis kn-keyword=direct sequencing analysis END start-ver=1.4 cd-journal=joma no-vol=15 cd-vols= no-issue=10 article-no= start-page=3702 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260511 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Exploratory Analysis of Serum IGF-I Levels and Symptom Trajectories in Long COVID During the Omicron Period en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background: Although several risk factors have been reported for long COVID (LC), reliable biomarkers for this illness remain lacking. Insulin-like growth factor (IGF)-I, a major mediator of growth hormones, plays an important role in metabolism, neuroprotection, and systemic homeostasis, and therefore may be useful in predicting the severity and prognosis of LC. Methods: This study included patients who visited a specialized clinic for long COVID between 2022 and 2025 during the Omicron period and had serum IGF-I measurements taken. IGF-I levels were expressed as age- and sex-adjusted standard deviation scores (IGF-I SD), and patients were classified into low (SD < ?1.0), normal (?1.0 ? SD < 1.0), and high (SD ? 1.0) groups. Clinical characteristics, patient-reported outcomes, laboratory data, and follow-up duration were analyzed. Results: A total of 811 patients were included (median 42 years; 52.5% female). Compared with the normal group, the low-IGF-I group exhibited higher fatigue (FAS: 37.0 vs. 34.0; p < 0.05) and depressive (SDS: 50.0 vs. 49.0; p < 0.05) status. Multivariable linear regression analyses identified lower IGF-I SD as independently associated with higher scores of both FAS and SDS. IGF-I SD values showed negative correlations with ferritin (ƒÏ = ?0.125, p < 0.05) and TSH (ƒÏ = ?0.202, p < 0.01) and positive correlations with albumin (ƒÏ = 0.227, p < 0.01) and FT4 (ƒÏ = 0.165, p < 0.01). Among the 237 patients who completed follow-up, the median duration from the initial visit to recovery tended to be longer in the low-IGF-I group (221 days) compared with the normal (191 days) and high (109 days) groups, although these differences were not statistically significant overall. In patients aged < 50 years, the low-IGF-I group showed a relatively longer follow-up duration (p < 0.05). Furthermore, the low-IGF-I group had a longer time to recovery compared to the high-IGF-I group (p < 0.05), and this difference was more pronounced in patients under 50 years of age, with significant differences observed among the three IGF-I groups. Conclusions: Lower IGF-I levels in LC may be associated with greater fatigue and depressive symptoms and longer recovery time, particularly in younger patients. Further studies are needed to clarify the clinical significance of these findings. en-copyright= kn-copyright= en-aut-name=SuyamaAtsuhito en-aut-sei=Suyama en-aut-mei=Atsuhito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=OtsukaYuki en-aut-sei=Otsuka en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=NakanoYasuhiro en-aut-sei=Nakano en-aut-mei=Yasuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TokumasuKazuki en-aut-sei=Tokumasu en-aut-mei=Kazuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=SakuradaYasue en-aut-sei=Sakurada en-aut-mei=Yasue kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MatsudaYui en-aut-sei=Matsuda en-aut-mei=Yui kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=HondaHiroyuki en-aut-sei=Honda en-aut-mei=Hiroyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=SoejimaYoshiaki en-aut-sei=Soejima en-aut-mei=Yoshiaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=HasegawaToru en-aut-sei=Hasegawa en-aut-mei=Toru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=TakaseRyosuke en-aut-sei=Takase en-aut-mei=Ryosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=OmuraDaisuke en-aut-sei=Omura en-aut-mei=Daisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=OguniKohei en-aut-sei=Oguni en-aut-mei=Kohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=UedaKeigo en-aut-sei=Ueda en-aut-mei=Keigo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=OtsukaFumio en-aut-sei=Otsuka en-aut-mei=Fumio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= affil-num=1 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=9 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=10 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=11 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=12 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=13 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=14 en-affil=Department of General Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=COVID-19 kn-keyword=COVID-19 en-keyword=fatigue kn-keyword=fatigue en-keyword=IGF-I kn-keyword=IGF-I en-keyword=long COVID kn-keyword=long COVID en-keyword=recovery kn-keyword=recovery END start-ver=1.4 cd-journal=joma no-vol=17 cd-vols= no-issue= article-no= start-page=1774957 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260430 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Hochuekkito attenuates anxiety-like behavior associated with pulmonary inflammation induced by intratracheal lipopolysaccharides in mice en-subtitle= kn-subtitle= en-abstract= kn-abstract=Introduction: We have previously demonstrated that intratracheal lipopolysaccharide (LPS) injection induces significant pulmonary inflammation accompanied by hippocampal microglial activation, indicative of neuroinflammation. Hochuekkito (HET) is a traditional Japanese herbal medicine used to treat various conditions, including mental disorders and physical weakness. We have previously reported that HET ameliorates anxiety-like behaviors induced by intraperitoneal LPS injections in mice. However, its anxiolytic effects on anxiety-like behaviors due to pulmonary inflammation remain poorly understood. Therefore, in the present study, we aimed to investigate the effects of HET on anxiety-like behaviors induced by intratracheal LPS injection in mice.
Methods: Mice received HET (1.0 g/kg) once daily for 2 weeks through oral gavage prior to LPS treatment. The light-dark box test was conducted 24 h following LPS injection to assess anxiety-like behaviors. Diazepam, a clinically used anxiolytic, served as a positive control. The lung wet-to-dry weight ratio was determined, and the concentrations of interleukin-6 (IL-6) in the lungs and serum were assessed.
Results: Repeated administration of HET prevented the development of anxiety-like behaviors and reduced serum IL-6 concentrations and hippocampal Il6 mRNA expression levels in LPS-treated mice. Diazepam failed to exert significant effects in LPS-treated mice, whereas HET remained effective under inflammatory conditions. Moreover, LPS injections significantly increased the number of Iba-1-immunoreactive microglial cells in the CA1 region of the hippocampus, whereas this effect was suppressed by treatment with HET. In the bronchoalveolar lavage fluid (BALF), the LPS-induced increase in white blood cell count was significantly reduced by treatment with HET. Furthermore, HET alleviated LPS-induced pulmonary inflammation, as evidenced by decreased lung wet-to-dry weight ratios.
Conclusion: This study suggests that inflammation induced by intratracheal LPS injection contributes to anxiety-like behaviors in mice and that IL-6 may play a key role in linking peripheral inflammation to neuroinflammatory responses. The anxiolytic effects of HET appear to be associated, at least in part, with the suppression of IL-6 elevation in both the periphery and the hippocampus, along with attenuation of microglial activation. Our findings suggest that HET may serve as a potential therapeutic agent for anxiety-like behaviors associated with pulmonary inflammation. en-copyright= kn-copyright= en-aut-name=IzushiYasuhisa en-aut-sei=Izushi en-aut-mei=Yasuhisa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=UshioSoichiro en-aut-sei=Ushio en-aut-mei=Soichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=UedaTeppei en-aut-sei=Ueda en-aut-mei=Teppei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TasakaYuichi en-aut-sei=Tasaka en-aut-mei=Yuichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MiyazakiIkuko en-aut-sei=Miyazaki en-aut-mei=Ikuko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=AsanumaMasato en-aut-sei=Asanuma en-aut-mei=Masato kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KitamuraYoshihisa en-aut-sei=Kitamura en-aut-mei=Yoshihisa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= affil-num=1 en-affil=Department of Pharmacotherapy, Graduate School of Pharmacy, Shujitsu University kn-affil= affil-num=2 en-affil=Department of Pharmaceutical Sciences for Health Crisis Management, Faculty of Pharmaceutical Sciences, Fukuoka University kn-affil= affil-num=3 en-affil=Department of Pharmacotherapy, Graduate School of Pharmacy, Shujitsu University kn-affil= affil-num=4 en-affil=Laboratory of Clinical Pharmacy, School of Pharmacy, Shujitsu University kn-affil= affil-num=5 en-affil=Department of Medical Neurobiology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=6 en-affil=Department of Medical Neurobiology, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Department of Pharmacotherapy, Graduate School of Pharmacy, Shujitsu University kn-affil= en-keyword=anxiety kn-keyword=anxiety en-keyword=hochuekkito kn-keyword=hochuekkito en-keyword=inflammation kn-keyword=inflammation en-keyword=interleukin-6 kn-keyword=interleukin-6 en-keyword=lipopolysaccharide kn-keyword=lipopolysaccharide en-keyword=lung kn-keyword=lung en-keyword=traditional Japanese herbal medicine kn-keyword=traditional Japanese herbal medicine END start-ver=1.4 cd-journal=joma no-vol=195 cd-vols= no-issue= article-no= start-page=110231 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202607 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Biliverdin supplementation in perfusate and preservation solution attenuates ischemia-reperfusion injury in a rat donation-after-circulatory-death heart transplantation model en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background: Heart transplantation faces a persistent donor shortage; therefore, hearts from donation after circulatory death have become a feasible option despite unavoidable warm ischemia and subsequent ischemia-reperfusion injury. Biliverdin, an endogenous bile pigment with strong antioxidant and anti-inflammatory properties, has shown protective effects against ischemia-reperfusion injury in several organ transplantation models. Whether biliverdin attenuates warm ischemic injury in donation after circulatory death heart transplantation remains unclear. This study evaluated biliverdin supplementation in the perfusate and preservation solution in a rat donation after circulatory death model.
Methods: Circulatory death was induced under deep anesthesia, and warm ischemia was maintained for 18 minutes, including the mandatory 5-minute stand-off period. Donor hearts were then flushed and subsequently cold-stored in the same biliverdin-supplemented extracellular-type trehalose?containing Kyoto solution, whereas control grafts received extracellular-type trehalose?containing Kyoto without biliverdin at both stages before heterotopic transplantation. Grafts were assessed at 3 and 24 hours after reperfusion (n = 6 per group). Evaluations included early graft recovery, myocardial injury markers, histological and ultrastructural changes, and inflammatory and stress-response gene expression.
Results: Biliverdin significantly improved early graft recovery, shortening reanimation time and increasing left ventricular fractional shortening at 24 hours. Serum troponin I levels were lower in biliverdin-treated grafts. Biliverdin also reduced histological injury and inflammatory cell infiltration. Ultrastructural analysis showed preserved mitochondrial architecture and ultrastructural integrity. Early proinflammatory gene expression was suppressed.
Conclusion: Biliverdin supplementation in the perfusate and preservation solution attenuates ischemia-reperfusion injury in the experimental rat donation after circulatory death heart transplantation model. These findings provide proof of concept for further mechanistic and translational evaluation of biliverdin for myocardial protection in donation after circulatory death. en-copyright= kn-copyright= en-aut-name=TokiokaKohei en-aut-sei=Tokioka en-aut-mei=Kohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=NojimaTsuyoshi en-aut-sei=Nojima en-aut-mei=Tsuyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=HirayamaTakahiro en-aut-sei=Hirayama en-aut-mei=Takahiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=HongoTakashi en-aut-sei=Hongo en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=ObaraTakafumi en-aut-sei=Obara en-aut-mei=Takafumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=AgetaKohei en-aut-sei=Ageta en-aut-mei=Kohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=IgawaTakuro en-aut-sei=Igawa en-aut-mei=Takuro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=AokageToshiyuki en-aut-sei=Aokage en-aut-mei=Toshiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=TsukaharaKohei en-aut-sei=Tsukahara en-aut-mei=Kohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=YumotoTetsuya en-aut-sei=Yumoto en-aut-mei=Tetsuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=NaitoHiromichi en-aut-sei=Naito en-aut-mei=Hiromichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=NakaoAtsunori en-aut-sei=Nakao en-aut-mei=Atsunori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= affil-num=1 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Pathology and Oncology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Biological Process of Aging, Tokyo Metropolitan Institute for Geriatrics and Gerontology kn-affil= affil-num=9 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=10 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=11 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=12 en-affil=Department of Emergency, Critical Care, and Disaster Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page= end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260603 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Classification of hypotony maculopathy based on optical coherence tomography findings and risk factors for visual outcomes en-subtitle= kn-subtitle= en-abstract= kn-abstract=Purpose To classify hypotony maculopathy (HM) using optical coherence tomography (OCT) findings and to investigate the associations among morphological types, clinical factors, and visual outcomes.
Methods We retrospectively reviewed 60 eyes that developed HM after trabeculectomy. HM was classified according to the distribution and configuration of chorioretinal undulations on OCT B-scans. Between-group comparisons were performed, and factors associated with the morphological classification and logMAR best-corrected visual acuity (BCVA) at 3 months after HM onset (3-month BCVA) were determined.
Results HM was classified into three OCT-based types by categorizing chorioretinal undulations as folds (U-shaped troughs) or spikes (V-shaped troughs): Type 1, folds only on vertical scans; Type 2, folds on both vertical and horizontal scans; Type 3, folds on both scans, with spikes. Axial length in Type 3 was significantly longer than that in Type 2 (P?=?0.034). Subfoveal choroidal thickness was significantly thinner in Type 3 than in Types 1 and 2 (both P? Conclusions In HM following TLE, chorioretinal spikes and preoperative BCVA are significantly associated with the 3-month BCVA. In HM, a thin subfoveal choroid ( Methods: This retrospective cohort study included 25 patients who underwent NIR-PIT for head and neck cancer between January 2021 and June 2025. Lesion diameter and thickness were evaluated in relation to complete response (CR), and the frequency and predictors of post-treatment pain were assessed.
Results: Among 22 evaluable patients, eight achieved CR. Lesions with a shorter longest diameter and thinner thickness were significantly associated with higher CR rates (p = 0.011 and p = 0.024). Moderate-to-severe pain (Numerical Rating Scale ?4) occurred in 18 of 48 treatment cycles (37.5%) but was significantly less frequent in patients with a history of reconstructive surgery (p = 0.017).
Conclusions: NIR-PIT demonstrated particularly favorable efficacy for short, thin lesions, suggesting that early introduction of treatment may be associated with improved therapeutic outcomes. A history of reconstructive surgery was associated with reduced post-treatment pain, highlighting the importance of individualized treatment and pain management strategies in head and neck cancer patients undergoing NIR-PIT. en-copyright= kn-copyright= en-aut-name=MatsumotoJunya en-aut-sei=Matsumoto en-aut-mei=Junya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MakinoTakuma en-aut-sei=Makino en-aut-mei=Takuma kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=NaoiYuto en-aut-sei=Naoi en-aut-mei=Yuto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=FujimotoShohei en-aut-sei=Fujimoto en-aut-mei=Shohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=AndoMizuo en-aut-sei=Ando en-aut-mei=Mizuo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= affil-num=1 en-affil=Department of Otolaryngology - Head and Neck Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Otolaryngology - Head and Neck Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Otolaryngology - Head and Neck Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=4 en-affil=Department of Otolaryngology - Head and Neck Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=5 en-affil=Department of Otolaryngology - Head and Neck Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=Near-infrared photoimmunotherapy kn-keyword=Near-infrared photoimmunotherapy en-keyword=Head and neck cancer kn-keyword=Head and neck cancer en-keyword=Treatment response kn-keyword=Treatment response en-keyword=Tumor size kn-keyword=Tumor size en-keyword=Tumor thickness kn-keyword=Tumor thickness en-keyword=Pain kn-keyword=Pain END start-ver=1.4 cd-journal=joma no-vol=33 cd-vols= no-issue=5 article-no= start-page=e70494 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202605 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Comparative Efficacy of First-Line Immune Checkpoint Inhibitor-Based Combination Therapies in Patients With Sarcomatoid Renal Cell Carcinoma: A Japanese Multicenter Cohort Study en-subtitle= kn-subtitle= en-abstract= kn-abstract=Objectives: Sarcomatoid renal cell carcinoma (sRCC) is an aggressive histological variant associated with a poor prognosis. While immune checkpoint inhibitor (ICI)-based combinations have become the standard of care, the optimal first-line regimen, specifically dual immunotherapy (IO-IO) vs. IO plus tyrosine kinase inhibitor (IO-TKI), remains controversial. We herein examined the real-world clinical outcomes of Japanese patients with sRCC.
Methods: We conducted a retrospective multicenter study on 46 patients with advanced or metastatic sRCC receiving first-line ICI-based combination therapy between January 2018 and December 2024 (IO-IO: n =?18; IO-TKI: n =?28). In a comparative survival analysis, three favorable-risk patients in the IO-TKI group were excluded to align risk profiles, focusing on intermediate/poor-risk groups (n =?43). The primary endpoint was overall survival (OS).
Results: In the entire cohort (n =?46), the objective response rate was numerically higher in the IO-TKI group (64.3%) than in the IO-IO group (50.0%) (p =?0.37). In the comparative analysis of intermediate/poor-risk patients (n =?43), progression-free survival (PFS) was slightly longer (p =?0.071), and OS was significantly longer (p =?0.016) in the IO-TKI group than in the IO-IO group. A multivariable analysis adjusted for IMDC risk categories showed favorable survival with the IO-TKI regimen (HR 0.37, p =?0.061).
Conclusions: The present study indicates that first-line IO-TKI combination therapy represents a promising treatment option with a potential survival advantage over IO-IO therapy for Japanese patients with sRCC. However, due to the retrospective design and small sample size, reliably determining the comparative efficacy of these regimens remains challenging, and further validation is warranted. en-copyright= kn-copyright= en-aut-name=TamuraKeita en-aut-sei=Tamura en-aut-mei=Keita kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MatsushitaYuto en-aut-sei=Matsushita en-aut-mei=Yuto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=WatanabeHiromitsu en-aut-sei=Watanabe en-aut-mei=Hiromitsu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=YanagisawaTakafumi en-aut-sei=Yanagisawa en-aut-mei=Takafumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MoriKeiichiro en-aut-sei=Mori en-aut-mei=Keiichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MorinakaHirofumi en-aut-sei=Morinaka en-aut-mei=Hirofumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=BekkuKensuke en-aut-sei=Bekku en-aut-mei=Kensuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=ToyodaShingo en-aut-sei=Toyoda en-aut-mei=Shingo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=NukayaTakuhisa en-aut-sei=Nukaya en-aut-mei=Takuhisa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=MaenosonoRyoichi en-aut-sei=Maenosono en-aut-mei=Ryoichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=KomuraKazumasa en-aut-sei=Komura en-aut-mei=Kazumasa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=ArakiMotoo en-aut-sei=Araki en-aut-mei=Motoo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=FujitaKazutoshi en-aut-sei=Fujita en-aut-mei=Kazutoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=TakaharaKiyoshi en-aut-sei=Takahara en-aut-mei=Kiyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=AzumaHaruhito en-aut-sei=Azuma en-aut-mei=Haruhito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=InamotoTeruo en-aut-sei=Inamoto en-aut-mei=Teruo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= affil-num=1 en-affil=Department of Urology, Hamamatsu University School of Medicine kn-affil= affil-num=2 en-affil=Department of Urology, Hamamatsu University School of Medicine kn-affil= affil-num=3 en-affil=Department of Urology, Hamamatsu University School of Medicine kn-affil= affil-num=4 en-affil=Department of Urology, Jikei University School of Medicine kn-affil= affil-num=5 en-affil=Department of Urology, Jikei University School of Medicine kn-affil= affil-num=6 en-affil=Department of Urology, Kawasaki Medical School kn-affil= affil-num=7 en-affil=Department of Urology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of Urology, Kindai University Faculty of Medicine kn-affil= affil-num=9 en-affil=Department of Urology, Fujita-Health University School of Medicine kn-affil= affil-num=10 en-affil=Department of Urology, Osaka Medical and Pharmaceutical University kn-affil= affil-num=11 en-affil=Department of Urology, Kawasaki Medical School kn-affil= affil-num=12 en-affil=Department of Urology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences kn-affil= affil-num=13 en-affil=Department of Urology, Kindai University Faculty of Medicine kn-affil= affil-num=14 en-affil=Department of Urology, Fujita-Health University School of Medicine kn-affil= affil-num=15 en-affil=Department of Urology, Osaka Medical and Pharmaceutical University kn-affil= affil-num=16 en-affil=Department of Urology, Hamamatsu University School of Medicine kn-affil= en-keyword=dual immunotherapy kn-keyword=dual immunotherapy en-keyword=immune checkpoint inhibitor kn-keyword=immune checkpoint inhibitor en-keyword=immunotherapy plus tyrosine kinase inhibitor kn-keyword=immunotherapy plus tyrosine kinase inhibitor en-keyword=sarcomatoid renal cell carcinoma kn-keyword=sarcomatoid renal cell carcinoma END start-ver=1.4 cd-journal=joma no-vol=46 cd-vols= no-issue=6 article-no= start-page=BSR20260010 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202606 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Tubulogenesis of bovine uterine glands by epidermal growth factor and collagen I in 3D culture systems en-subtitle= kn-subtitle= en-abstract= kn-abstract=Uterine glands are endometrial exocrine epithelia that support early embryo development. Their secretions are particularly essential for conceptus elongation in cattle. Uterine glands develop from the luminal epithelium and elongate into the stromal layer toward the myometrium. This process is regulated by growth factors, WNT proteins, and the surrounding extracellular matrix (ECM); however, the precise mechanisms that govern bovine uterine gland morphogenesis remain unclear. In this study, we determined how these signaling factors and ECM components affect the tubular formation of bovine uterine gland fragments in 3D culture systems. Uterine gland fragments were enzymatically isolated from bovine endometria and 3D-cultured in Matrigel with or without growth factors (EGF, FGF1, FGF2, FGF7, FGF10, and IGF-1) and WNT (WNT3A, WNT5A, and WNT7A) proteins. Of these, only EGF stimulated the elongation of uterine gland fragments and eventually induced the formation of uterine gland-like structures. EGF-induced tubulogenesis was accompanied by a rapid increase in cell proliferation and alterations in cell?ECM interactions. The supplementation of collagen I with Matrigel further promoted the elongation of the tubular structures. Although the addition of collagen I did not alter the gene expression profiles of the uterine gland-like structures, the integrin-ROCK pathway contributed to the collagen-induced enhancement of elongation. Our findings clarified that EGF and collagen I, but not FGFs, IGF-1, or WNTs, are key regulators for the tubular formation of 3D-cultured bovine uterine gland fragments. This 3D culture system provides a new platform to examine the cellular and molecular mechanisms underlying bovine uterine gland morphogenesis. en-copyright= kn-copyright= en-aut-name=SuginoYosuke en-aut-sei=Sugino en-aut-mei=Yosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=IchikawaRei en-aut-sei=Ichikawa en-aut-mei=Rei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MatsuyamaShuichi en-aut-sei=Matsuyama en-aut-mei=Shuichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=YamamotoYuki en-aut-sei=Yamamoto en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KawanoKohei en-aut-sei=Kawano en-aut-mei=Kohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KimuraKoji en-aut-sei=Kimura en-aut-mei=Koji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Bioagricultural Sciences, Nagoya University kn-affil= affil-num=3 en-affil=Graduate School of Bioagricultural Sciences, Nagoya University kn-affil= affil-num=4 en-affil=Department of Veterinary Medicine, Tokyo University of Agriculture and Technology kn-affil= affil-num=5 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=6 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= en-keyword=3D cell culture kn-keyword=3D cell culture en-keyword=bovine, collagen I kn-keyword=bovine, collagen I en-keyword=epidermal growth factor kn-keyword=epidermal growth factor en-keyword=tubular structure kn-keyword=tubular structure en-keyword=uterine gland kn-keyword=uterine gland END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page=1 end-page=9 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260426 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=What Is the Pterygomandibular Raphe? A Confluence of Fasciae Rather Than a Discrete Structure en-subtitle= kn-subtitle= en-abstract= kn-abstract=The pterygomandibular raphe (PMR) has traditionally been described as a fibrous or tendinous band connecting the bucinator (BM) and superior pharyngeal constrictor (SPCM) muscles. However, recent evidence has questioned its existence. This study aimed to reevaluate the anatomy of the pterygomandibular region by preserving fascial continuity and examining the relationships among adjacent muscles and connective tissues. Twenty-five sides from formalin-fixed cadaveric heads were examined. Twenty sides underwent macroscopic dissection under a surgical microscope, and five sides were sectioned axially and analyzed histologically using Masson's trichrome staining to assess muscle?fascia continuity. The buccopharyngeal fascia (BpF) adhered tightly to the posterolateral surface of the BM. A ligament-like bundle observed between the BM and medial pterygoid muscle corresponded to an artificial continuation of the BpF created by dissection. Axial sections revealed that the BpF, masseteric, and temporalis fasciae converged anteriorly on the lateral surface of the BM, while posteriorly, the BpF and temporalis fascia also merged, forming a confluence of fasciae. No discrete tendinous or ligamentous PMR was identified. The so-called PMR represents a dissection artifact rather than a true anatomical structure. These findings emphasize the importance of preserving fascial relationships and using precise terminology in anatomical and clinical contexts. en-copyright= kn-copyright= en-aut-name=IwanagaJoe en-aut-sei=Iwanaga en-aut-mei=Joe kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HamaShion en-aut-sei=Hama en-aut-mei=Shion kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=FukinoKeiko en-aut-sei=Fukino en-aut-mei=Keiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KikutaShogo en-aut-sei=Kikuta en-aut-mei=Shogo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=HurMi]Sun en-aut-sei=Hur en-aut-mei=Mi]Sun kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=CespedesMaria Cristina Manzanares en-aut-sei=Cespedes en-aut-mei=Maria Cristina Manzanares kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=OhyamaYoshio en-aut-sei=Ohyama en-aut-mei=Yoshio kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=AkashiMasaya en-aut-sei=Akashi en-aut-mei=Masaya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=KomuneNoritaka en-aut-sei=Komune en-aut-mei=Noritaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=KamochiHideaki en-aut-sei=Kamochi en-aut-mei=Hideaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=IbaragiSoichiro en-aut-sei=Ibaragi en-aut-mei=Soichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= affil-num=1 en-affil=Department of Neurosurgery, Tulane Center for Clinical Neurosciences, Tulane University School of Medicine kn-affil= affil-num=2 en-affil=Section of Oral and Maxillofacial Oncology, Division of Maxillofacial Diagnostic and Surgical Sciences, Faculty of Dental Science, Kyushu University kn-affil= affil-num=3 en-affil=Department of Oral and Maxillofacial Anatomy, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University kn-affil= affil-num=4 en-affil=Dental and Oral Medical Center, Kurume University School of Medicine kn-affil= affil-num=5 en-affil=Department of Anatomy, Daegu Catholic University School of Medicine kn-affil= affil-num=6 en-affil=Human Anatomy and Embryology Unit. Experimental Pathology and Therapeutics Department, Faculty of Medicine and Health Sciences, University of Barcelona kn-affil= affil-num=7 en-affil=Oral and Maxillofacial Surgery, Shizuoka City Shizuoka Hospital kn-affil= affil-num=8 en-affil=Department of Oral and Maxillofacial Surgery, Kobe University Graduate School of Medicine kn-affil= affil-num=9 en-affil=Department of Otorhinolaryngology, Graduate School of Medical Sciences, Kyushu University kn-affil= affil-num=10 en-affil=Department of Maxillofacial Surgery, Institute of Science Tokyo kn-affil= affil-num=11 en-affil=Department of Oral and Maxillofacial Surgery, Faculty of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=anatomy kn-keyword=anatomy en-keyword=bucinator kn-keyword=bucinator en-keyword=connective tissue kn-keyword=connective tissue en-keyword=dentistry kn-keyword=dentistry en-keyword=fascia kn-keyword=fascia en-keyword=masticatory muscles kn-keyword=masticatory muscles en-keyword=oral surgery kn-keyword=oral surgery en-keyword=pharynx kn-keyword=pharynx END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page=5671446 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Arthroscopically Confirmed Complete Healing of Anterior Cruciate Ligament Avulsion Fracture Following Four]Corner Pullout Repair Using Ultrahigh]Molecular]Weight Polyethylene Tapes: A Case Report en-subtitle= kn-subtitle= en-abstract= kn-abstract=We report a case of tibial insertion avulsion fracture of the anterior cruciate ligament (ACL). A 10-year-old boy who fell from a skateboard was diagnosed with a tibial insertion avulsion fracture of the ACL and was treated arthroscopically. The avulsed fragment was provisionally fixed with guide pins inserted into its four corners, and the lateral view was checked to avoid penetration of the growth plate. Two ultrahigh-molecular-weight polyethylene tapes were passed through the ACL just above its tibial insertion, pulled through the four-corner bone tunnels in an X-shaped configuration, and tightened. The patient was immobilized for 3 weeks, and partial weight bearing was initiated at 4 weeks. Bone union was confirmed at 6 months using plain radiographs, and second-look arthroscopy and implant removal were performed 8 months postoperatively. During arthroscopy, complete union with smooth continuity of the articular cartilage at the fracture site and a stable ACL were observed. The patient had a full knee range of motion and no pain at the final follow-up. en-copyright= kn-copyright= en-aut-name=KoharaToshiki en-aut-sei=Kohara en-aut-mei=Toshiki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=OkazakiYuki en-aut-sei=Okazaki en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MiyazawaShinichi en-aut-sei=Miyazawa en-aut-mei=Shinichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=FurumatsuTakayuki en-aut-sei=Furumatsu en-aut-mei=Takayuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=YokoyamaYusuke en-aut-sei=Yokoyama en-aut-mei=Yusuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=TamuraMasanori en-aut-sei=Tamura en-aut-mei=Masanori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KawadaKoki en-aut-sei=Kawada en-aut-mei=Koki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=HasegawaTsubasa en-aut-sei=Hasegawa en-aut-mei=Tsubasa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=TetsunagaTomonori en-aut-sei=Tetsunaga en-aut-mei=Tomonori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=YamadaKazuki en-aut-sei=Yamada en-aut-mei=Kazuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=OzakiToshifumi en-aut-sei=Ozaki en-aut-mei=Toshifumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= affil-num=1 en-affil=Department of Orthopedic Surgery , Okayama University Graduate School of Medicine , Dentistry , and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Orthopedic Surgery , Okayama University Graduate School of Medicine , Dentistry , and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil=Department of Orthopedic Surgery , NHO Fukuyama Medical Center kn-affil= affil-num=4 en-affil=Department of Orthopedic Surgery , Japanese Red Cross Okayama Hospital kn-affil= affil-num=5 en-affil=Department of Orthopedic Surgery , Okayama University Graduate School of Medicine , Dentistry , and Pharmaceutical Sciences kn-affil= affil-num=6 en-affil=Department of Orthopedic Surgery , Okayama University Graduate School of Medicine , Dentistry , and Pharmaceutical Sciences kn-affil= affil-num=7 en-affil=Department of Orthopedic Surgery , Okayama University Graduate School of Medicine , Dentistry , and Pharmaceutical Sciences kn-affil= affil-num=8 en-affil=Department of Orthopedic Surgery , Okayama University Graduate School of Medicine , Dentistry , and Pharmaceutical Sciences kn-affil= affil-num=9 en-affil=Department of Orthopedic Surgery , Okayama University Graduate School of Medicine , Dentistry , and Pharmaceutical Sciences kn-affil= affil-num=10 en-affil=Department of Orthopedic Surgery , Okayama University Graduate School of Medicine , Dentistry , and Pharmaceutical Sciences kn-affil= affil-num=11 en-affil=Department of Orthopedic Surgery , Okayama University Graduate School of Medicine , Dentistry , and Pharmaceutical Sciences kn-affil= END start-ver=1.4 cd-journal=joma no-vol=14 cd-vols= no-issue= article-no= start-page=73466 end-page=73478 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=2026 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Construction of a Lightweight Simulation Environment Based on Topological Mapping en-subtitle= kn-subtitle= en-abstract= kn-abstract=Autonomous mobile robots require safe and efficient environmental representations for traversability-aware navigation and learning. In particular, self-learning of traversability from real-world driving experience can require robots to operate near the limits of their mobility, which introduces physical risks such as falls, malfunctions, or hardware damage. To provide a safer complementary environment for such validation and future learning, this paper proposes ATC-Mesh. This framework constructs a lightweight, simulation-ready mesh environment from the topological map produced by Adaptive Resonance Theory-based Topological Clustering with Different Topologies (ATC-DT) using high-density LiDAR point clouds. Unlike standard mesh reconstruction methods that directly process dense point clouds, ATC-Mesh generates a compact mesh from the node?edge structure of the topological map while preserving traversability attributes associated with the topological map. Experiments using two real-world LiDAR datasets show that ATC-Mesh achieves competitive mesh-construction quality compared with standard baseline methods while reducing construction time and mesh size. Gazebo experiments further show that the generated meshes can support waypoint-based navigation with a low simulation load. en-copyright= kn-copyright= en-aut-name=KatoYukinaga en-aut-sei=Kato en-aut-mei=Yukinaga kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TodaYuichiro en-aut-sei=Toda en-aut-mei=Yuichiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MatsunoTakayuki en-aut-sei=Matsuno en-aut-mei=Takayuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= affil-num=1 en-affil=Graduate School of Environmental, Life, Natural Science, and Technology, Okayama University kn-affil= affil-num=2 en-affil=Faculty of Environmental, Life, Natural Science, and Technology, Okayama University kn-affil= affil-num=3 en-affil=Faculty of Environmental, Life, Natural Science, and Technology, Okayama University kn-affil= en-keyword=Autonomous mobile robot kn-keyword=Autonomous mobile robot en-keyword=topological map kn-keyword=topological map en-keyword=digital twin kn-keyword=digital twin END start-ver=1.4 cd-journal=joma no-vol=194 cd-vols= no-issue= article-no= start-page=118923 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Elucidation of mechanisms underlying the therapeutic effects of cordycepin on pulmonary hypertension, with a focus on cell senescence and gut microbiota en-subtitle= kn-subtitle= en-abstract= kn-abstract=Introduction: Pulmonary hypertension (PH) is a progressive cardiopulmonary disorder characterized by excessive pulmonary vascular remodeling and aberrant proliferation of pulmonary artery smooth muscle cells (PASMCs). Emerging evidence suggests that gut microbiota dysbiosis contributes to PH development. Cordycepin, a natural adenosine analogue derived from Cordyceps militaris, has demonstrated antiproliferative and microbiota-modulating properties; however, its mechanism of action in PH remains unclear.
Objective: Elucidate the mechanisms underlying the therapeutic effects of cordycepin on PH, focusing on cellular senescence and gut microbiota.
Methods: The effects of cordycepin on PH pathology were investigated by transcriptome analysis of PASMCs from patients, and metagenomic analysis of rodent PH models. Cellular senescence was analyzed in lung tissue from p16Ink4a-CreERT2 reporter mice and in rat bone marrow-derived macrophages (BMDMs).
Results: RNA sequencing analysis revealed activation of p53 signaling by cordycepin in PASMCs. Cordycepin suppressed CDK1 expression and TERT phosphorylation at threonine 249. It ameliorated vascular and cardiac remodeling in PH rat and mouse models. Cordycepin induced M1-like macrophage senescence in p16 Ink4a reporter mice lungs and rat BMDMs. Cordycepin significantly reshaped the gut microbiota, increasing beneficial genera (e.g. Alistipes and Acetatifactor) and reducing proinflammatory taxa (e.g., Ruminococcus), with modulating key metabolic pathways, including short-chain fatty acid, tryptophan, and vitamin K2 metabolism.
Conclusion: Cordycepin exerts multi-target therapeutic effects in PH by inhibiting PASMC proliferation via the p53?CDK1/pTERT axis, modulating gut microbiota-linked immunometabolism and induces proinflammatory macrophage senescence. These findings support cordycepin as a promising candidate for PH therapies targeting the vascular, immune, and gut?lung axes. en-copyright= kn-copyright= en-aut-name=LiGaopeng en-aut-sei=Li en-aut-mei=Gaopeng kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=ZhaoZhixin en-aut-sei=Zhao en-aut-mei=Zhixin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MachitaniMitsuhiro en-aut-sei=Machitani en-aut-mei=Mitsuhiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=IshikawaRyou en-aut-sei=Ishikawa en-aut-mei=Ryou kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=IshikawaKaori en-aut-sei=Ishikawa en-aut-mei=Kaori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=YokotaNaoya en-aut-sei=Yokota en-aut-mei=Naoya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=HabaReiji en-aut-sei=Haba en-aut-mei=Reiji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=NakamuraKazufumi en-aut-sei=Nakamura en-aut-mei=Kazufumi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=SunZhihong en-aut-sei=Sun en-aut-mei=Zhihong kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=KuraharaLin-Hai en-aut-sei=Kurahara en-aut-mei=Lin-Hai kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=HiranoKatsuya en-aut-sei=Hirano en-aut-mei=Katsuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= affil-num=1 en-affil=Department of Cardiovascular Physiology, Faculty of Medicine, Kagawa University kn-affil= affil-num=2 en-affil=Inner Mongolia Key Laboratory of Dairy Biotechnology and Engineering, Key Laboratory of Dairy Products Processing, Ministry of Agriculture and Rural Affairs, Key Laboratory of Dairy Biotechnology and Engineering, Ministry of Education, Inner Mongolia Agricultural University kn-affil= affil-num=3 en-affil=Division of Cancer Stem Cell, National Cancer Center Research Institute kn-affil= affil-num=4 en-affil=Department of Diagnostic Pathology, Kagawa University Hospital kn-affil= affil-num=5 en-affil=Department of General Medicine, Kagawa University Hospital kn-affil= affil-num=6 en-affil=Department of General Thoracic Surgery, Faculty of Medicine, Kagawa University kn-affil= affil-num=7 en-affil=Department of Diagnostic Pathology, Kagawa University Hospital kn-affil= affil-num=8 en-affil=Center for Advanced Heart Failure, Okayama University Hospital kn-affil= affil-num=9 en-affil=Inner Mongolia Key Laboratory of Dairy Biotechnology and Engineering, Key Laboratory of Dairy Products Processing, Ministry of Agriculture and Rural Affairs, Key Laboratory of Dairy Biotechnology and Engineering, Ministry of Education, Inner Mongolia Agricultural University kn-affil= affil-num=10 en-affil=Department of Cardiovascular Physiology, Faculty of Medicine, Kagawa University kn-affil= affil-num=11 en-affil=Department of Cardiovascular Physiology, Faculty of Medicine, Kagawa University kn-affil= en-keyword=Pulmonary hypertension kn-keyword=Pulmonary hypertension en-keyword=p53 kn-keyword=p53 en-keyword=CDK1 kn-keyword=CDK1 en-keyword=TERT kn-keyword=TERT en-keyword=p16 kn-keyword=p16 en-keyword=Microbiota kn-keyword=Microbiota END start-ver=1.4 cd-journal=joma no-vol=183 cd-vols= no-issue= article-no= start-page=156163 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202610 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Photochemical oxidative synthesis of carboxylic acids from aldehydes or alcohols with water via CH bromination en-subtitle= kn-subtitle= en-abstract= kn-abstract=The photoinduced oxidation of aldehydes or alcohols with water to give the corresponding carboxylic acids is described. This photochemical carboxylation proceeds via the in-situ generation of acyl-bromide intermediates upon irradiation with purple or UV LED light; these intermediates subsequently react with water to give the desired carboxylic acids. This mild photochemical reaction affords diverse carboxylic acids without peroxide generation or the need to use transition-metal catalysts and a stoichiometric amount of base, highlighting its potential utility for the synthesis of natural products and bioactive compounds. en-copyright= kn-copyright= en-aut-name=El-kholanyMohamed R. en-aut-sei=El-kholany en-aut-mei=Mohamed R. kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MiyamotoAtsuya en-aut-sei=Miyamoto en-aut-mei=Atsuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=FalconeMorgane en-aut-sei=Falcone en-aut-mei=Morgane kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TakamuraHiroyoshi en-aut-sei=Takamura en-aut-mei=Hiroyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KadotaIsao en-aut-sei=Kadota en-aut-mei=Isao kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=TanakaKenta en-aut-sei=Tanaka en-aut-mei=Kenta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=4 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=5 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=6 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= en-keyword=Carboxylation kn-keyword=Carboxylation en-keyword=Photochemical synthesis kn-keyword=Photochemical synthesis en-keyword=Csingle bondH bromination kn-keyword=Csingle bondH bromination en-keyword=Water kn-keyword=Water END start-ver=1.4 cd-journal=joma no-vol= cd-vols= no-issue= article-no= start-page= end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=2026 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Switchable photoluminescence of europium(iii) complexes with chromonylhydrazones en-subtitle= kn-subtitle= en-abstract= kn-abstract=Europium(III) complexes bearing 4-hydroxy- or 4-methyl-NŒ-((6-methyl-4-oxo-4H-chromen-3-yl)methylene)benzohydrazide (HL1 or HL2) showed characteristic EuIII 5D0 ¨ 7FJ (J = 0?4) luminescence both in acetonitrile and in solid states with relatively high ƒ³tot values. The luminescence was quenched not only by adding triethylamine in acetonitrile, but also by heating the solid sample, and recovered by adding perchloric acid in solution or by diffusion of HCl vapor to the resulting solid sample. en-copyright= kn-copyright= en-aut-name=KameiAsahi en-aut-sei=Kamei en-aut-mei=Asahi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=SaitoDaisuke en-aut-sei=Saito en-aut-mei=Daisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=TakaharaKazuma en-aut-sei=Takahara en-aut-mei=Kazuma kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=NoseKeito en-aut-sei=Nose en-aut-mei=Keito kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=OkamotoHideki en-aut-sei=Okamoto en-aut-mei=Hideki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=YoshidaMasaki en-aut-sei=Yoshida en-aut-mei=Masaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=KatoMasako en-aut-sei=Kato en-aut-mei=Masako kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=SuzukiTakayoshi en-aut-sei=Suzuki en-aut-mei=Takayoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= affil-num=1 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Science, Hokkaido University kn-affil= affil-num=3 en-affil=Graduate School of Science, University of Hyogo kn-affil= affil-num=4 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=5 en-affil=Department of Chemistry, Faculty of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= affil-num=6 en-affil=Graduate School of Science, The University of Osaka kn-affil= affil-num=7 en-affil=School of Biological and Environmental Sciences, Kwansei Gakuin University kn-affil= affil-num=8 en-affil=Graduate School of Environmental, Life, Natural Science and Technology, Okayama University kn-affil= END start-ver=1.4 cd-journal=joma no-vol=68 cd-vols= no-issue=1 article-no= start-page=100726 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202602 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Roles of the aryl hydrocarbon receptor and its ligands in osteoclast differentiation and temporomandibular joint osteoarthritis en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background: The aryl hydrocarbon receptor (AhR) is a ligand-activated transcription factor that plays an essential role in skeletal homeostasis. Increasing evidence indicates that AhR critically regulates osteoclast differentiation and activity, thereby influencing bone mass, bone resorption, and susceptibility to skeletal diseases. Although AhR has also been implicated in osteoblast-lineage cells, its regulatory roles in osteoclasts and immune cells are less well understood but are increasingly recognized as central to bone remodeling. In particular, AhR signaling modulates immune cell subsets relevant to bone metabolism and governs the differentiation of bone marrow-derived macrophages into osteoclasts.
Highlight: This review summarizes the recent findings regarding the regulation of osteoclast differentiation by AhR and its ligands under both physiological and pathological conditions. Special emphasis is placed on the interaction between AhR and the RANKL signaling axis in osteoclasts, as well as on how exogenous and endogenous ligands, including benzo[a]pyrene (B[a]P) and 6-formylindolo[3,2-b]carbazole (FICZ), modulate bone resorption and subchondral bone remodeling in temporomandibular joint osteoarthritis. Furthermore, the role of macrophages as osteoclast progenitors and immunomodulators has been highlighted, positioning AhR as a critical intermediary that links environmental exposure, inflammation, and skeletal metabolism.
Conclusion: In this review, we outlined the diverse functions of AhR signaling and its ligands in oral and temporomandibular joint osteoarthritis. AhR plays a central role in bone remodeling. The harmful exogenous ligand B[a]P generally promotes bone loss, whereas the endogenous ligand FICZ exerts protective actions. These insights highlight AhR as a key regulatory switch linking the skeletal and immune systems and as a promising therapeutic target for bone-destructive disorders. en-copyright= kn-copyright= en-aut-name=IzawaTakashi en-aut-sei=Izawa en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HutamiIslamy Rahma en-aut-sei=Hutami en-aut-mei=Islamy Rahma kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YoshikawaYuri en-aut-sei=Yoshikawa en-aut-mei=Yuri kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=KozakiGohji en-aut-sei=Kozaki en-aut-mei=Gohji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=HamadaYusaku en-aut-sei=Hamada en-aut-mei=Yusaku kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=NambaYuki en-aut-sei=Namba en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=TaguchiMisa en-aut-sei=Taguchi en-aut-mei=Misa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=ChenJiamin en-aut-sei=Chen en-aut-mei=Jiamin kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=HabumugishaJanvier en-aut-sei=Habumugisha en-aut-mei=Janvier kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=KamiokaHiroshi en-aut-sei=Kamioka en-aut-mei=Hiroshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=Department of Orthodontics, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Department of Orthodontics, Universitas Islam Sultan Agung kn-affil= affil-num=3 en-affil=Department of Orthodontics, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Department of Orthodontics, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Department of Orthodontics, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=6 en-affil=Department of Orthodontics, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=7 en-affil=Department of Orthodontics, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=8 en-affil=Department of Orthodontics, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=9 en-affil=Department of Orthodontics, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=10 en-affil=Department of Orthodontics, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=Aryl hydrocarbon receptor (AhR) kn-keyword=Aryl hydrocarbon receptor (AhR) en-keyword=AhR ligands kn-keyword=AhR ligands en-keyword=Osteoclasts kn-keyword=Osteoclasts en-keyword=Arthritis kn-keyword=Arthritis en-keyword=Temporomandibular joint osteoarthritis kn-keyword=Temporomandibular joint osteoarthritis END start-ver=1.4 cd-journal=joma no-vol=19 cd-vols= no-issue=3 article-no= start-page=491 end-page=498 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260317 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Successful management and 10-year survival of a rectal neuroendocrine tumor with rare systemic metastases via a non-portal venous pathway en-subtitle= kn-subtitle= en-abstract= kn-abstract=Metastatic neuroendocrine tumors (NETs) typically involve the liver and lymph nodes. Metastases in the orbit, heart, and ovary are rare and present unique clinical challenges. We report a woman who was 70 years old at the time of initial presentation with liver metastases from a rectal neuroendocrine tumor. Following a right hepatectomy for liver metastases, she remained free of hepatic recurrence for 10 years. Notably, four years after the right hepatectomy, she developed new metastases in the left orbit, right ventricle, and left ovary, with diplopia as the sole clinical symptom. This clinical course suggests a distinct metastatic pathway associated with the lower rectum that bypasses the portal circulation, consistent with the dual drainage system of the rectal region. Management involved a strategic multimodal approach that includes systemic therapy with everolimus and lanreotide as well as targeted surgical resectioning of the cardiac and ovarian lesions. The orbital lesion achieved a complete response through systemic therapy alone, preserving visual function. Currently, 10 years after the initial treatment, the patient maintains an excellent performance status (ECOG PS 0) while receiving peptide receptor radionuclide therapy (PRRT). This case demonstrates that recognizing atypical metastatic pathways and employing strategic multimodal therapies can achieve long-term survival and functional preservation in rectal NETs. en-copyright= kn-copyright= en-aut-name=HoriguchiShigeru en-aut-sei=Horiguchi en-aut-mei=Shigeru kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=MatsumotoKazuyuki en-aut-sei=Matsumoto en-aut-mei=Kazuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=MiyamotoKazuya en-aut-sei=Miyamoto en-aut-mei=Kazuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=MatsumiAkihiro en-aut-sei=Matsumi en-aut-mei=Akihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TerasawaHiroyuki en-aut-sei=Terasawa en-aut-mei=Hiroyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=FujiiYuki en-aut-sei=Fujii en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=TakagiKosei en-aut-sei=Takagi en-aut-mei=Kosei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=KuiseTakashi en-aut-sei=Kuise en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=TanakaTakehiro en-aut-sei=Tanaka en-aut-mei=Takehiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=OtsukaMotoyuki en-aut-sei=Otsuka en-aut-mei=Motoyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=Department of Gastroenterology and Hepatology, Okayama University Hospital kn-affil= affil-num=2 en-affil=Department of Gastroenterology and Hepatology, Okayama University Hospital kn-affil= affil-num=3 en-affil=Department of Gastroenterology and Hepatology, Okayama University Hospital kn-affil= affil-num=4 en-affil=Department of Gastroenterology and Hepatology, Okayama University Hospital kn-affil= affil-num=5 en-affil=Department of Gastroenterology and Hepatology, Okayama University Hospital kn-affil= affil-num=6 en-affil=Department of Gastroenterology and Hepatology, Okayama University Hospital kn-affil= affil-num=7 en-affil=Department of Gastroenterological Surgery, Dentistry, and Pharmaceutical Sciences, Okayama University Graduate School of Medicine kn-affil= affil-num=8 en-affil=Department of Gastroenterological Surgery, Okayama Red Cross Hospital kn-affil= affil-num=9 en-affil=Department of Pathology, Okayama University Hospital kn-affil= affil-num=10 en-affil=Department of Gastroenterology and Hepatology, Okayama University Hospital kn-affil= en-keyword=Rectal neuroendocrine tumor kn-keyword=Rectal neuroendocrine tumor en-keyword=Rare metastases kn-keyword=Rare metastases en-keyword=Multimodal treatment kn-keyword=Multimodal treatment END start-ver=1.4 cd-journal=joma no-vol=2026 cd-vols= no-issue=1 article-no= start-page=8863202 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202601 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Selective ARID1A Loss Restricted to the Undifferentiated Component of a Mismatch Repair]Deficient Gastric Carcinoma: A Case Report en-subtitle= kn-subtitle= en-abstract= kn-abstract=Mismatch repair-deficient (dMMR) gastric carcinomas often harbor ARID1A alteration, but a sharply demarcated undifferentiated/rhabdoid component with selective ARID1A loss is uncommon and may create a diagnostic dilemma. An 80-year-old man underwent esophagogastroduodenoscopy for anemia, which revealed a circumferential Borrmann Type 3 lesion in the gastric body, and distal gastrectomy was performed. Histologically, the tumor was composed predominantly of undifferentiated carcinoma with focal rhabdoid features and a minute well-differentiated adenocarcinoma component, with an abrupt transition between the two. Immunohistochemistry showed loss of nuclear MLH1 and PMS2 in both components, whereas loss of ARID1A expression was confined to the undifferentiated component; SMARCB1 (INI1), SMARCA2 (BRM), and SMARCA4 (BRG1) were retained. EBER in situ hybridization was negative. Because gene-level testing, MSI testing, and MLH1 promoter methylation analysis were not performed, the molecular basis of the dMMR phenotype and ARID1A loss could not be determined. The restricted scope of molecular testing limits the ability to draw broad or generalizable conclusions and to fully establish clinicopathological correlations. The value of this report is, therefore, not mechanistic proof but recognition of a practical morphologic-immunophenotypic observation: When a gastric carcinoma shows a sharply demarcated shift from differentiated to undifferentiated/rhabdoid morphology, dMMR should be considered, and selective ARID1A loss in the undifferentiated component may be associated with dedifferentiation. These findings should be interpreted with caution as preliminary, hypothesis-generating observations that require validation in larger studies with more extensive molecular profiling. en-copyright= kn-copyright= en-aut-name=OmoteRika en-aut-sei=Omote en-aut-mei=Rika kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=HamanoRyosuke en-aut-sei=Hamano en-aut-mei=Ryosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=OtsukaShinya en-aut-sei=Otsuka en-aut-mei=Shinya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TanakaTakehiro en-aut-sei=Tanaka en-aut-mei=Takehiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=YanaiHiroyuki en-aut-sei=Yanai en-aut-mei=Hiroyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= affil-num=1 en-affil=Department of Diagnostic Pathology, NHO Fukuyama Medical Center kn-affil= affil-num=2 en-affil=Department of Surgery, NHO Fukuyama Medical Center kn-affil= affil-num=3 en-affil=Department of Surgery, NHO Fukuyama Medical Center kn-affil= affil-num=4 en-affil=Department of Pathology, Okayama University Hospital kn-affil= affil-num=5 en-affil=Department of Pathology, Okayama University Hospital kn-affil= en-keyword=ARID1A kn-keyword=ARID1A en-keyword=carcinoma kn-keyword=carcinoma en-keyword=DNA mismatch repair deficiency kn-keyword=DNA mismatch repair deficiency en-keyword=rhabdoid features kn-keyword=rhabdoid features en-keyword=stomach neoplasms kn-keyword=stomach neoplasms en-keyword=SWI/SNF complex kn-keyword=SWI/SNF complex en-keyword=undifferentiated kn-keyword=undifferentiated END start-ver=1.4 cd-journal=joma no-vol=33 cd-vols= no-issue=4 article-no= start-page=829 end-page=838 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260416 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Differences in drug efficacy and prognosis between primary and metastatic sites for de novo stage IV breast cancer: an exploratory analysis of a phase III trial, JCOG1017 en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background Breast cancer is a highly heterogeneous disease, with biological factors like estrogen receptor, progesterone receptor, and HER2 receptor differing between primary and metastatic sites, potentially affecting treatment response.
This exploratory analysis aims to differentiate drug efficacy and long-term prognosis between these sites in stage IV breast cancer.
Methods Patients from JCOG1017, a phase III trial evaluating the role of primary tumor resection, who received primary systemic therapy (PST) were evaluated at three months. In this analysis, treatment response was assessed separately in primary and metastatic sites. Patients were categorized into four groups: discordant I (primary non-PD, metastatic PD), concordant I (both PD), discordant II (primary PD, metastatic non-PD), and concordant II (both non-PD).
Results Among 271 patients, overall discordance proportion of treatment response between primary and metastatic sites was 25.1%. Group distribution was 24.7% (discordant I), 9.6% (concordant I), 0.4% (discordant II), and 65.3% (concordant II). Discordance was more frequent in luminal (28.9%), triple-negative (25.0%), and luminal-HER2 (22.0%) subtypes than in HER2-enriched (11.1%). Survival analysis showed prognostic differences: concordant II, with both sites non-PD, demonstrated the most favorable outcome compared with discordant I (HR 0.556; 95% confidence interval, 0.396?0.782).
Conclusions One-fourth of patients exhibited discordant responses between primary and metastatic sites in early treatment phases. These discrepancies were associated with survival differences, emphasizing the importance of evaluating both primary and metastatic lesions when assessing efficacy and determining treatment strategies in de novo stage IV breast cancer. en-copyright= kn-copyright= en-aut-name=TanakaKiyo en-aut-sei=Tanaka en-aut-mei=Kiyo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=ShimomuraAkihiko en-aut-sei=Shimomura en-aut-mei=Akihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=IshitobiMakoto en-aut-sei=Ishitobi en-aut-mei=Makoto kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=YamanakaTakashi en-aut-sei=Yamanaka en-aut-mei=Takashi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=TsukiokiTakahiro en-aut-sei=Tsukioki en-aut-mei=Takahiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=IwataHiroji en-aut-sei=Iwata en-aut-mei=Hiroji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=HaraFumikata en-aut-sei=Hara en-aut-mei=Fumikata kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=FujisawaTomomi en-aut-sei=Fujisawa en-aut-mei=Tomomi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=SasakiKeita en-aut-sei=Sasaki en-aut-mei=Keita kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=SadachiRyo en-aut-sei=Sadachi en-aut-mei=Ryo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=KajikawaRiku en-aut-sei=Kajikawa en-aut-mei=Riku kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=SakaiTakehiko en-aut-sei=Sakai en-aut-mei=Takehiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=SagaraYasuaki en-aut-sei=Sagara en-aut-mei=Yasuaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=ShigematsuHideo en-aut-sei=Shigematsu en-aut-mei=Hideo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=OzakiYukinori en-aut-sei=Ozaki en-aut-mei=Yukinori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=NozawaKazuki en-aut-sei=Nozawa en-aut-mei=Kazuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=SudoKazuki en-aut-sei=Sudo en-aut-mei=Kazuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=NaitoYoichi en-aut-sei=Naito en-aut-mei=Yoichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= en-aut-name=TerataKaori en-aut-sei=Terata en-aut-mei=Kaori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=19 ORCID= en-aut-name=IshibaToshiyuki en-aut-sei=Ishiba en-aut-mei=Toshiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=20 ORCID= en-aut-name=FukudaHaruhiko en-aut-sei=Fukuda en-aut-mei=Haruhiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=21 ORCID= en-aut-name=ShienTadahiko en-aut-sei=Shien en-aut-mei=Tadahiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=22 ORCID= affil-num=1 en-affil=Department of Breast Surgery, Toranomon Hospital kn-affil= affil-num=2 en-affil=Department of Breast and Medical Oncology, National Center for Global Health and Medicine kn-affil= affil-num=3 en-affil=Department of Breast Surgery, Osaka Habikino Medical Center kn-affil= affil-num=4 en-affil=Department of Breast Surgery, Kanagawa Cancer Center kn-affil= affil-num=5 en-affil=Department of Breast and Endocrine Surgery, Okayama University Hospital kn-affil= affil-num=6 en-affil=Department of Advanced Clinical Research and Development, Nagoya City University Graduate School of Medical Sciences kn-affil= affil-num=7 en-affil=Department of Breast Oncology, Aichi Cancer Center kn-affil= affil-num=8 en-affil=Department of Breast Oncology, Gunma Prefectural Cancer Center kn-affil= affil-num=9 en-affil=Clinical Oncology Group Data Center/Operations Office, National Cancer Center Hospital kn-affil= affil-num=10 en-affil=Clinical Oncology Group Data Center/Operations Office, National Cancer Center Hospital kn-affil= affil-num=11 en-affil=Clinical Oncology Group Data Center/Operations Office, National Cancer Center Hospital kn-affil= affil-num=12 en-affil=Department of Breast Medical Oncology, The Cancer Institute Hospital of Japanese Foundation for Cancer Research kn-affil= affil-num=13 en-affil=Department of Breast Surgery, Sagara Hospital kn-affil= affil-num=14 en-affil=Department of Breast Surgery, Hiroshima University Hospital kn-affil= affil-num=15 en-affil=Department of Breast Medical Oncology, The Cancer Institute Hospital of Japanese Foundation for Cancer Research kn-affil= affil-num=16 en-affil=Department of Advanced Clinical Research and Development, Nagoya City University Graduate School of Medical Sciences kn-affil= affil-num=17 en-affil=Department of Medical Oncology, National Cancer Center Hospital kn-affil= affil-num=18 en-affil=Department of General Internal Medicine, National Cancer Center Hospital East kn-affil= affil-num=19 en-affil=Department of Breast and Endocrine Surgery, Akita University Hospital kn-affil= affil-num=20 en-affil=Department of Breast Surgery, Institute of Science Tokyo Hospital kn-affil= affil-num=21 en-affil=Clinical Oncology Group Data Center/Operations Office, National Cancer Center Hospital kn-affil= affil-num=22 en-affil=Department of Breast and Endocrine Surgery, Okayama University Hospital kn-affil= en-keyword=Discordance of treatment response between primary and metastatic sites kn-keyword=Discordance of treatment response between primary and metastatic sites en-keyword=De novo stage IV breast cancer kn-keyword=De novo stage IV breast cancer en-keyword=Primary systemic therapy kn-keyword=Primary systemic therapy en-keyword=Overall survival kn-keyword=Overall survival END start-ver=1.4 cd-journal=joma no-vol=31 cd-vols= no-issue=3 article-no= start-page=528 end-page=536 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260122 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Clinical complete response and predictive factors in HER2-positive early breast cancer treated with neoadjuvant chemotherapy aimed at omission of surgery: an exploratory analysis of the JCOG1806 trial en-subtitle= kn-subtitle= en-abstract= kn-abstract=Purpose The JCOG1806 trial (jRCTs031190129) is underway to evaluate the omission of surgery in patients with human epidermal growth factor receptor (HER2)-positive early breast cancer who have a clinical complete response (cCR) after primary systemic therapy (PST). We aimed to assess the cCR rate in this trial and identify predictive factors.
Methods HER2-positivity was defined as an immunohistochemistry (IHC) score of 3?+?or in situ hybridization-positivity. A cCR was defined as the absence of detectable lesions upon palpation, contrast-enhanced magnetic resonance imaging, and ultrasonography; biopsy-based confirmation was optional in hormone receptor (HR)-negative cases and mandatory in HR-positive cases. Multivariate logistic regression analyses were used to identify predictors of a cCR.
Results The cCR rate was 57.6% (196/340 patients; 95% confidence interval [CI]: 52.2?63.0%). Strongly estrogen-receptor (ER)-positive tumors (??10%) were significantly less likely to have a cCR than ER-negative tumors (odds ratio [OR], 0.41; 95% CI: 0.20?0.81). IHC 3?+?tumors had higher cCR rates than IHC 1?+?or 2?+?tumors (OR, 2.19; 95% CI: 1.01?4.74). Compared with histological grade I tumors, cCR odds were higher in grade II (OR: 2.92; 95% CI: 1.07?7.93) and III (OR: 4.90; 95% CI: 1.76?13.7) tumors. Among patients without a cCR patients undergoing surgery, 22.2% were diagnosed with ypT0 tumors upon analysis of surgical specimens.
Conclusion ER-negativity, an IHC score of 3?+?, and a higher histological grade were independent predictors of a cCR. Identifying these features may improve the feasibility and safety of surgery omission for patients with HER2-positive early breast cancer. en-copyright= kn-copyright= en-aut-name=ShigematsuHideo en-aut-sei=Shigematsu en-aut-mei=Hideo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FujisawaTomomi en-aut-sei=Fujisawa en-aut-mei=Tomomi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=HaraFumikata en-aut-sei=Hara en-aut-mei=Fumikata kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=IwataHiroji en-aut-sei=Iwata en-aut-mei=Hiroji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=IshibaToshiyuki en-aut-sei=Ishiba en-aut-mei=Toshiyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=OzakiYukinori en-aut-sei=Ozaki en-aut-mei=Yukinori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=SakaiTakehiko en-aut-sei=Sakai en-aut-mei=Takehiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=SagaraYasuaki en-aut-sei=Sagara en-aut-mei=Yasuaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=ShimomuraAkihiko en-aut-sei=Shimomura en-aut-mei=Akihiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=SudoKazuki en-aut-sei=Sudo en-aut-mei=Kazuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=TerataKaori en-aut-sei=Terata en-aut-mei=Kaori kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=NaitoYoichi en-aut-sei=Naito en-aut-mei=Yoichi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=NozawaKazuki en-aut-sei=Nozawa en-aut-mei=Kazuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= en-aut-name=SasakiKeita en-aut-sei=Sasaki en-aut-mei=Keita kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=14 ORCID= en-aut-name=MitomeNoriko en-aut-sei=Mitome en-aut-mei=Noriko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=15 ORCID= en-aut-name=SadachiRyo en-aut-sei=Sadachi en-aut-mei=Ryo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=16 ORCID= en-aut-name=ShibataTaro en-aut-sei=Shibata en-aut-mei=Taro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=17 ORCID= en-aut-name=ShienTadahiko en-aut-sei=Shien en-aut-mei=Tadahiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=18 ORCID= affil-num=1 en-affil=Department of Surgical Oncology, Research Institute for Radiation Biology and Medicine, Hiroshima University Hospital kn-affil= affil-num=2 en-affil=Gunma Prefectural Cancer Center kn-affil= affil-num=3 en-affil=Aichi Cancer Center kn-affil= affil-num=4 en-affil=Graduate School of Medical Sciences, Nagoya City University kn-affil= affil-num=5 en-affil=Institute of Science Tokyo Hospital kn-affil= affil-num=6 en-affil=Cancer Institute Hospital of the Japanese Foundation for Cancer Research kn-affil= affil-num=7 en-affil=Cancer Institute Hospital of the Japanese Foundation for Cancer Research kn-affil= affil-num=8 en-affil=Hakuaikai Sagara Hospital kn-affil= affil-num=9 en-affil=National Center for Global Health and Medicine kn-affil= affil-num=10 en-affil=National Cancer Center Hospital kn-affil= affil-num=11 en-affil=Akita University Hospital kn-affil= affil-num=12 en-affil=National Cancer Center Hospital East kn-affil= affil-num=13 en-affil=Graduate School of Medical Sciences, Nagoya City University kn-affil= affil-num=14 en-affil=Japan Clinical Oncology Group Data Center/Operations Office, National Cancer Center Hospital kn-affil= affil-num=15 en-affil=Japan Clinical Oncology Group Data Center/Operations Office, National Cancer Center Hospital kn-affil= affil-num=16 en-affil=Japan Clinical Oncology Group Data Center/Operations Office, National Cancer Center Hospital kn-affil= affil-num=17 en-affil=Japan Clinical Oncology Group Data Center/Operations Office, National Cancer Center Hospital kn-affil= affil-num=18 en-affil=Okayama University Hospital kn-affil= en-keyword=Breast cancer kn-keyword=Breast cancer en-keyword=Primary systemic therapy kn-keyword=Primary systemic therapy en-keyword=HER2 kn-keyword=HER2 en-keyword=cCR kn-keyword=cCR en-keyword=Omission of surgery kn-keyword=Omission of surgery END start-ver=1.4 cd-journal=joma no-vol=208 cd-vols= no-issue=6 article-no= start-page=2124 end-page=2133 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260415 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Decreased renal function predicts severe cytokine release syndrome after CAR-T-cell therapy for large B-cell lymphoma en-subtitle= kn-subtitle= en-abstract= kn-abstract=Cytokine release syndrome (CRS) remains a major toxicity of chimeric antigen receptor (CAR) T-cell therapy in large B-cell lymphoma (LBCL), and robust pre-infusion predictors are needed for risk-adapted management. We retrospectively analysed LBCL patients in the Japanese nationwide registry who underwent CD19 CAR-T-cell therapy between 2019 and 2024. Among 900 patients (median age 62?years), cumulative incidences of CRS within 30?days after infusion were 75.0% for any grade, 20.8% for grade???2 and 14.0% for grade???3. In multivariable analysis, lower estimated glomerular filtration rate (eGFR) (adjusted hazard ratio [aHR] 1.108 per 10?mL/min per 1.73?m2 decrease; 95% confidence interval [CI] 1.015?1.209; p?=?0.022), higher ferritin (aHR 1.006 per 100?ng/mL; 95% CI 1.001?1.010; p?=?0.016), C-reactive protein (CRP) (aHR 1.142 per mg/dL; 95% CI 1.091?1.195; p? Methods: Male C57BL/6?N mice served as observers, while demonstrator mice were assigned to one of four conditions: (1) an environment enriched with objects, (2) an igloo, (3) a tube, or (4) social isolation. Observers were continuously exposed to these adjacent cages for 21 days. Subsequently, a comprehensive battery of behavioral tests was conducted to assess general health, anxiety-like behavior, spatial memory, social behavior, and depression-like behavior.
Results: In the objects condition, a decrease in time spent in the light compartment of the light/dark box indicated an increase in anxiety-like behavior. In the isolation condition, the mean duration per social interaction was shortened, suggesting a qualitative change in social behavior. The igloo condition resulted in reduced immobility time in the forced swim test, suggesting a possible alteration in stress coping behavior. Furthermore, increased nociceptive sensitivity was observed in the hot plate test under both the objects and isolation conditions.
Conclusion: Although the envy-like stress paradigm did not affect many behavioral indices, it did cause condition-dependent and limited behavioral changes. This suggests that the paradigm may serve as a novel model for capturing psychological and context-dependent social stress, which differs from conventional physical stress models. Elucidating the neural basis of this paradigm is expected to contribute to the understanding of how social comparison affects mental health in modern society. en-copyright= kn-copyright= en-aut-name=UenoHiroshi en-aut-sei=Ueno en-aut-mei=Hiroshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TanakaYoshihiro en-aut-sei=Tanaka en-aut-mei=Yoshihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KitanoEriko en-aut-sei=Kitano en-aut-mei=Eriko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TakahashiYu en-aut-sei=Takahashi en-aut-mei=Yu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MoriSachiko en-aut-sei=Mori en-aut-mei=Sachiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MurakamiShinji en-aut-sei=Murakami en-aut-mei=Shinji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=WaniKenta en-aut-sei=Wani en-aut-mei=Kenta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MatsumotoYosuke en-aut-sei=Matsumoto en-aut-mei=Yosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=OkamotoMotoi en-aut-sei=Okamoto en-aut-mei=Motoi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=IshiharaTakeshi en-aut-sei=Ishihara en-aut-mei=Takeshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=Department of Medical Technology, Kawasaki University of Medical Welfare kn-affil= affil-num=2 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=3 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=4 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=5 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=6 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=7 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=8 en-affil=Department of Neuropsychiatry, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=9 en-affil=Department of Medical Technology, Graduate School of Health Sciences, Okayama University kn-affil= affil-num=10 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= en-keyword=envy-like stress kn-keyword=envy-like stress en-keyword=social comparison kn-keyword=social comparison en-keyword=psychosocial stress kn-keyword=psychosocial stress en-keyword=mouse model kn-keyword=mouse model en-keyword=anxiety-like behavior kn-keyword=anxiety-like behavior END start-ver=1.4 cd-journal=joma no-vol=16 cd-vols= no-issue=1 article-no= start-page=15771 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260402 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Adolescent envy-like social comparison stress induces HPA axis hypoactivity and anxiety in female mice: implications for somatic symptom disorder en-subtitle= kn-subtitle= en-abstract= kn-abstract=Adolescence is a critical developmental window marked by heightened neuroplasticity and maturation of the stress response system, conferring vulnerability to psychosocial stress. Chronic stress during this period increases the risk of anxiety and depressive disorders and may contribute to somatic symptom disorder (SSD), which is characterized by medically unexplained physical complaints and shows a striking female predominance. The impact of envy-like stress arising from social comparison, a pervasive psychosocial factor in modern society, remains poorly understood. Male and female C57BL/6N mice were exposed to chronic envy-like stress from postnatal day (P)21 to P52 by housing them adjacent to enriched cages, while control mice were housed without such exposure. From P52 onward, mice underwent behavioral testing of anxiety-like behavior, exploratory activity, social interaction, spatial working memory, motor coordination, nociception, and depression-like behavior. Serum corticosterone and adrenocorticotropic hormone (ACTH) concentrations were measured to assess hypothalamic?pituitary?adrenal (HPA) axis function. Envy-like stress induced sex-specific phenotypes. Male mice exhibited hyperactivity, reduced social interaction, and impaired spatial working memory. In contrast, female mice displayed robust increases in anxiety-like behavior, impaired motor coordination, and significant reductions in basal corticosterone and ACTH levels. Chronic envy-like stress during adolescence elicits distinct, sex-dependent behavioral and endocrine alterations. The phenotype observed in female mice?characterized by heightened anxiety and lower basal HPA axis hormone levels?shares some biological features with clinical observations in SSD. This model may serve as a starting point for elucidating the mechanisms linking psychosocial stress and somatic symptoms in a sex-dependent manner. en-copyright= kn-copyright= en-aut-name=UenoHiroshi en-aut-sei=Ueno en-aut-mei=Hiroshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=TanakaYoshihiro en-aut-sei=Tanaka en-aut-mei=Yoshihiro kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KitanoEriko en-aut-sei=Kitano en-aut-mei=Eriko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TakahashiYu en-aut-sei=Takahashi en-aut-mei=Yu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MoriSachiko en-aut-sei=Mori en-aut-mei=Sachiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MurakamiShinji en-aut-sei=Murakami en-aut-mei=Shinji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=WaniKenta en-aut-sei=Wani en-aut-mei=Kenta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=MatsumotoYosuke en-aut-sei=Matsumoto en-aut-mei=Yosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=OkamotoMotoi en-aut-sei=Okamoto en-aut-mei=Motoi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=IshiharaTakeshi en-aut-sei=Ishihara en-aut-mei=Takeshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= affil-num=1 en-affil=Department of Medical Technology, Kawasaki University of Medical Welfare kn-affil= affil-num=2 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=3 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=4 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=5 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=6 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=7 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=8 en-affil=Department of Neuropsychiatry, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=9 en-affil=Department of Medical Technology, Graduate School of Health Sciences, Okayama University kn-affil= affil-num=10 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= en-keyword=Envy-like stress kn-keyword=Envy-like stress en-keyword=Social comparison kn-keyword=Social comparison en-keyword=Adolescence kn-keyword=Adolescence en-keyword=HPA axis kn-keyword=HPA axis en-keyword=Somatic symptom disorder (SSD) kn-keyword=Somatic symptom disorder (SSD) en-keyword=Sex differences kn-keyword=Sex differences en-keyword=Psychosocial stress kn-keyword=Psychosocial stress END start-ver=1.4 cd-journal=joma no-vol=15 cd-vols= no-issue=1 article-no= start-page=44248 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2025 dt-pub=20251219 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Post-weaning maternal presence exerts a protective effect against social isolation-induced behavioural alterations in mice en-subtitle= kn-subtitle= en-abstract= kn-abstract=Parental gwatchful presenceh is considered an important factor influencing behavioural and emotional development in offspring across mammalian species, including humans. However, the effects of such parental presence remain insufficiently understood, even in human studies. In laboratory mice, offspring are typically weaned at approximately three weeks of age, leaving the impact of post-weaning maternal presence on behavioural development largely unexplored. This study aimed to investigate whether maternal presence in an adjacent cage after weaning can attenuate behavioural effects of social isolation stress in mice. Furthermore, we sought to assess whether this experimental paradigm could serve as a novel animal model for studying the effects of parental watchful presence, with potential relevance to human parent?child relationship research. Mouse pups were weaned at postnatal day 21 and housed either adjacent to their mother (maternal presence group) or without maternal presence (control group). The pups were subsequently housed either in groups with littermates or individually until eight weeks of age. After maturation, behavioural tests were conducted to assess locomotor activity, anxiety-like behaviour, social behaviour, and depression-like behaviour. In group-housed mice, maternal presence did not influence behavioural outcomes. However, in individually housed mice, maternal presence partially attenuated social isolation-induced behavioural alterations, suggesting a subtle protective effect, including hyperlocomotion, reduced anxiety-like behaviour, and abnormal social interactions. Our findings demonstrate that maternal presence during the post-weaning period can offer a protective effect against certain behavioural abnormalities induced by social isolation stress in mice.@This simple adjacent-cage paradigm provides a novel and practical model for elucidating the impact of parental watchful presence on behavioural and emotional development, offering insights relevant to the understanding of parent?child relationships in humans. en-copyright= kn-copyright= en-aut-name=UenoHiroshi en-aut-sei=Ueno en-aut-mei=Hiroshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=KitanoEriko en-aut-sei=Kitano en-aut-mei=Eriko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=TakahashiYu en-aut-sei=Takahashi en-aut-mei=Yu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=MoriSachiko en-aut-sei=Mori en-aut-mei=Sachiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=MurakamiShinji en-aut-sei=Murakami en-aut-mei=Shinji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=WaniKenta en-aut-sei=Wani en-aut-mei=Kenta kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=MatsumotoYosuke en-aut-sei=Matsumoto en-aut-mei=Yosuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=OkamotoMotoi en-aut-sei=Okamoto en-aut-mei=Motoi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=IshiharaTakeshi en-aut-sei=Ishihara en-aut-mei=Takeshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= affil-num=1 en-affil=Department of Medical Technology, Kawasaki University of Medical Welfare kn-affil= affil-num=2 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=3 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=4 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=5 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=6 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= affil-num=7 en-affil=Department of Neuropsychiatry, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=8 en-affil=Department of Medical Technology, Graduate School of Health Sciences, Okayama University kn-affil= affil-num=9 en-affil=Department of Psychiatry, Kawasaki Medical School kn-affil= en-keyword=Maternal presence kn-keyword=Maternal presence en-keyword=Social isolation kn-keyword=Social isolation en-keyword=Post-weaning period kn-keyword=Post-weaning period en-keyword=Resilience kn-keyword=Resilience en-keyword=Mice kn-keyword=Mice END start-ver=1.4 cd-journal=joma no-vol=31 cd-vols= no-issue=6 article-no= start-page=1063 end-page=1074 dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260421 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Barriers and facilitators for online genetic care for hereditary cancer in Japan: findings from surveys of both clients and medical professionals en-subtitle= kn-subtitle= en-abstract= kn-abstract=Background Online genetic care can offer a promising solution to the shortage of qualified medical professionals in genetic medicine, which leads to regional disparities in access. However, despite global adoption, its use in Japan remains limited.
Methods Two questionnaire surveys were conducted to investigate potential needs and barriers regarding online genetic care: one involving 858 medical professionals (738 physicians and 120 genetic counselors or nurses), and the other involving 443 clients who received in-person genetic counseling.
Results Only 14.0% of the medical professionals had experience with online genetic care, although 85.9% of the professionals engaged in cancer genetics were willing to consider providing it in the future. Notably, a discrepancy was found regarding hospital selection: clients prioritized access to specialized medical care, whereas professionals assumed clients valued accessibility for family members. Professionals expressed greater concerns about adequacy of online communication, client environments and internet security. Among clients, 89.1% estimated they would sufficiently understand and accept total content of counseling session if were conducted online. Older age and infrequent internet use were associated with lower acceptance and higher anxiety regarding online methods. Concerns about ability to use the necessary technology affected clientsf willingness to encourage online care for their relatives.
Conclusion Online genetic care shows high potential for client acceptance and can effectively address regional disparities in Japan. To bridge the gap between client needs and professional perceptions and to overcome the digital divide, it is necessary to develop secure, accessible systems and provide education for both patients and healthcare providers. en-copyright= kn-copyright= en-aut-name=UenoSayaka en-aut-sei=Ueno en-aut-mei=Sayaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=UrakawaYusaku en-aut-sei=Urakawa en-aut-mei=Yusaku kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=KatoFumino en-aut-sei=Kato en-aut-mei=Fumino kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=UekiArisa en-aut-sei=Ueki en-aut-mei=Arisa kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=KanekoKeika en-aut-sei=Kaneko en-aut-mei=Keika kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=MatsumotoKoji en-aut-sei=Matsumoto en-aut-mei=Koji kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=SugawaraHiromi en-aut-sei=Sugawara en-aut-mei=Hiromi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= en-aut-name=TakeuchiSayoko en-aut-sei=Takeuchi en-aut-mei=Sayoko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=8 ORCID= en-aut-name=YoshidaReiko en-aut-sei=Yoshida en-aut-mei=Reiko kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=9 ORCID= en-aut-name=KakutaMiho en-aut-sei=Kakuta en-aut-mei=Miho kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=10 ORCID= en-aut-name=AkagiKiwamu en-aut-sei=Akagi en-aut-mei=Kiwamu kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=11 ORCID= en-aut-name=TamuraKazuo en-aut-sei=Tamura en-aut-mei=Kazuo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=12 ORCID= en-aut-name=HirasawaAkira en-aut-sei=Hirasawa en-aut-mei=Akira kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=13 ORCID= affil-num=1 en-affil=Department of Clinical Genomic Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=2 en-affil=Department of Clinical Genomic Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=3 en-affil= kn-affil= affil-num=4 en-affil=Division of Clinical Genetic Oncology, Cancer Institute Hospital, Japanese Foundation for Cancer Research kn-affil= affil-num=5 en-affil=Division of Clinical Genetic Oncology, Cancer Institute Hospital, Japanese Foundation for Cancer Research kn-affil= affil-num=6 en-affil=Division of Clinical Genetics, Hyogo Cancer Center kn-affil= affil-num=7 en-affil=Division of Clinical Genetics, Hyogo Cancer Center kn-affil= affil-num=8 en-affil=Department of Clinical Genomic Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= affil-num=9 en-affil=Department of Medical Genetics and Genomics, Saitama Cancer Center kn-affil= affil-num=10 en-affil=Center for Genomic Diagnosis, International University of Health and Welfare (IUHW) Narita Hospital kn-affil= affil-num=11 en-affil=Center for Genomic Diagnosis, International University of Health and Welfare (IUHW) Narita Hospital kn-affil= affil-num=12 en-affil=Center for Genomic Diagnosis, International University of Health and Welfare (IUHW) Narita Hospital kn-affil= affil-num=13 en-affil=Department of Clinical Genomic Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences kn-affil= en-keyword=Hereditary cancer kn-keyword=Hereditary cancer en-keyword=Remote medical care kn-keyword=Remote medical care en-keyword=Barriers to online genetic care kn-keyword=Barriers to online genetic care en-keyword=Facilitators for online genetic care kn-keyword=Facilitators for online genetic care END start-ver=1.4 cd-journal=joma no-vol=827 cd-vols= no-issue= article-no= start-page=154001 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=202608 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Staphylococcus aureus activates dendrite elongation in dendritic cells en-subtitle= kn-subtitle= en-abstract= kn-abstract=Dendritic cells (DCs) are thought to extend dendrites to enhance the efficiency of antigen uptake and presentation. We previously reported that short-chain fatty acids (SCFAs), such as butyrate and valerate, promote dendrite extension in DCs. In this study, we found that the human pathogen Staphylococcus aureus also induces dendrite extension in DCs and investigated the underlying mechanisms. Dendrite extension in DC2.4?cells was induced not only by live S. aureus but also by heat-killed bacteria and purified peptidoglycan (PGN). DC2.4?cells lacking TLR2 or its adaptor protein MyD88 extend dendrites in response to SCFAs, but failed to extend dendrites in response to S. aureus. Furthermore, inhibitors of ERK, PI3K, and Cdc42 suppressed dendrite extension triggered by S. aureus. Co-stimulation with S. aureus and butyrate enhanced dendrite extension beyond either stimulus alone. DC2.4?cells co-stimulated with S. aureus and butyrate also showed increased uptake of insoluble beads and, upon co-culture with T cells, induced elevated production of IL-17 and IL-10 by T cells. Collectively, these findings suggest that S. aureus activates ERK/PI3K/Cdc42 signaling through TLR2 recognition of PGN to drive dendrite extension in DCs. In addition, S. aureus promotes dendrite extension in DCs via a pathway distinct from that of SCFAs, thereby acting cooperatively with SCFAs to enhance immune responses. en-copyright= kn-copyright= en-aut-name=KobataKai en-aut-sei=Kobata en-aut-mei=Kai kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=FurutaKazuyuki en-aut-sei=Furuta en-aut-mei=Kazuyuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=IkeyaYuki en-aut-sei=Ikeya en-aut-mei=Yuki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=ChishakiYohei en-aut-sei=Chishaki en-aut-mei=Yohei kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=IshikawaKazuya en-aut-sei=Ishikawa en-aut-mei=Kazuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=KaitoChikara en-aut-sei=Kaito en-aut-mei=Chikara kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= affil-num=1 en-affil=Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=2 en-affil=Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=4 en-affil=Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=5 en-affil=Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= affil-num=6 en-affil=Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama University kn-affil= en-keyword=Staphylococcus aureus kn-keyword=Staphylococcus aureus en-keyword=Dendritic cells kn-keyword=Dendritic cells en-keyword=Dendrite elongation kn-keyword=Dendrite elongation en-keyword=Peptidoglycan: TLR2/MyD88 signaling kn-keyword=Peptidoglycan: TLR2/MyD88 signaling en-keyword=ERK/PI3K/Cdc42 pathway kn-keyword=ERK/PI3K/Cdc42 pathway en-keyword=Short-chain fatty acids (SCFAs) kn-keyword=Short-chain fatty acids (SCFAs) en-keyword=Butyrate kn-keyword=Butyrate en-keyword=Host?microbe interactions kn-keyword=Host?microbe interactions en-keyword=Antigen presentation kn-keyword=Antigen presentation en-keyword=T-cell activation kn-keyword=T-cell activation en-keyword=IL-17 kn-keyword=IL-17 en-keyword=IL-10 kn-keyword=IL-10 END start-ver=1.4 cd-journal=joma no-vol=43 cd-vols= no-issue=2 article-no= start-page=25 end-page= dt-received= dt-revised= dt-accepted= dt-pub-year=2026 dt-pub=20260319 dt-online= en-article= kn-article= en-subject= kn-subject= en-title= kn-title=Machine learning prediction of the Madden?Julian oscillation using reservoir computing en-subtitle= kn-subtitle= en-abstract= kn-abstract=The prediction of the Madden?Julian Oscillation (MJO), a massive tropical weather event with global socio-economic impacts, has been infamously difficult with physics-based weather prediction models. We employ the reservoir computing, a brain-inspired machine-learning technique, to construct a machine learning model that forecasts the real-time multivariate MJO index (RMM), a macroscopic variable that represents the state of the MJO. The training data was refined by development of a novel real-time band-pass filter that extracts the recurrency of MJO signals only from the past raw atmospheric data, and by selection of a suitable time-delay coordinate of the RMM that enhances the recurrency of the input data. The constructed model demonstrated the skill to forecast the time sequence of the RMM for a month from pre-developmental stages of the MJO. Examination of best-performing cases suggested that RMM sequences may be predicted for over two months in some cases. These results imply that inherent predictability limit of the MJO is longer than that has been estimated from physics-based weather prediction models. en-copyright= kn-copyright= en-aut-name=SuematsuTamaki en-aut-sei=Suematsu en-aut-mei=Tamaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=1 ORCID= en-aut-name=NakaiKengo en-aut-sei=Nakai en-aut-mei=Kengo kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=2 ORCID= en-aut-name=YonedaTsuyoshi en-aut-sei=Yoneda en-aut-mei=Tsuyoshi kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=3 ORCID= en-aut-name=TakasukaDaisuke en-aut-sei=Takasuka en-aut-mei=Daisuke kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=4 ORCID= en-aut-name=JinnoTakuya en-aut-sei=Jinno en-aut-mei=Takuya kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=5 ORCID= en-aut-name=SaikiYoshitaka en-aut-sei=Saiki en-aut-mei=Yoshitaka kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=6 ORCID= en-aut-name=MiuraHiroaki en-aut-sei=Miura en-aut-mei=Hiroaki kn-aut-name= kn-aut-sei= kn-aut-mei= aut-affil-num=7 ORCID= affil-num=1 en-affil=RIKEN Center for Computational Science kn-affil= affil-num=2 en-affil=Graduate School of Environmental Life, Natural Science and Technology, Okayama University kn-affil= affil-num=3 en-affil=Graduate School of Economics, Hitotsubashi University kn-affil= affil-num=4 en-affil=Department of Geophysics, Tohoku University kn-affil= affil-num=5 en-affil=Graduate School of Science, The University of Tokyo kn-affil= affil-num=6 en-affil=Graduate School of Business Administration, Hitotsubashi University kn-affil= affil-num=7 en-affil=Graduate School of Science, The University of Tokyo kn-affil= en-keyword=Reservoir computing kn-keyword=Reservoir computing en-keyword=Machine learning kn-keyword=Machine learning en-keyword=Madden?Julian Oscillation kn-keyword=Madden?Julian Oscillation en-keyword=Sub-seasonal forecast kn-keyword=Sub-seasonal forecast END