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ID 68271
フルテキストURL
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著者
Fithroni, Abdul Basith Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University
Inoue, Haruki Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University
Zhou, Shengli Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University
Hakim, Taufik Fatwa Nur Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University
Tada, Takashi Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University
Suzuki, Minoru Institute for Integrated Radiation and Nuclear Science, Kyoto University
Sakurai, Yoshinori Institute for Integrated Radiation and Nuclear Science, Kyoto University
Ishimoto, Manabu J-BEAM, Inc.
Yamada, Naoyuki Nihon Fukushi Fuiin Holding, Co., Ltd.
Sauriasari, Rani Faculty of Pharmacy, Universitas Indonesia
Sauerwein, Wolfgang A. G. Deutsche Gesellschaft für Bor-Neutroneneinfangtherapie DGBNCT e.V., University Hospital Essen, Klinik für Strahlentherapie
Watanabe, Kazunori Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University ORCID Kaken ID publons researchmap
Ohtsuki, Takashi Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University ORCID Kaken ID publons researchmap
Matsuura, Eiji Graduate School of Interdisciplinary Science and Engineering in Health Systems, Okayama University ORCID Kaken ID publons researchmap
抄録
Boron (B) neutron capture therapy (BNCT) is a novel non-invasive targeted cancer therapy based on the nuclear capture reaction 10B (n, alpha) 7Li that enables the death of cancer cells without damaging neighboring normal cells. However, the development of clinically approved boron drugs remains challenging. We have previously reported on self-forming nanoparticles for drug delivery consisting of a biodegradable polymer, namely, “AB-type” Lactosome® nanoparticles (AB-Lac particles)- highly loaded with hydrophobic B compounds, namely o-Carborane (Carb) or 1,2-dihexyl-o-Carborane (diC6-Carb), and the latter (diC6-Carb) especially showed the “molecular glue” effect. Here we present in vivo and ex vivo studies with human pancreatic cancer (AsPC-1) cells to find therapeutically optimal formulas and the appropriate treatment conditions for these particles. The biodistribution of the particles was assessed by the tumor/normal tissue ratio (T/N) in terms of tumor/muscle (T/M) and tumor/blood (T/B) ratios using near-infrared fluorescence (NIRF) imaging with indocyanine green (ICG). The in vivo and ex vivo accumulation of B delivered by the injected AB-Lac particles in tumor lesions reached a maximum by 12 h post-injection. Irradiation studies conducted both in vitro and in vivo showed that AB-Lac particles-loaded with either 10B-Carb or 10B-diC6-Carb significantly inhibited the growth of AsPC-1 cancer cells or strongly inhibited their growth, with the latter method being significantly more effective. Surprisingly, a similar in vitro and in vivo irradiation study showed that ICG-labeled AB-Lac particles alone, i.e., without any 10B compounds, also revealed a significant inhibition. Therefore, we expect that our ICG-labeled AB-Lac particles-loaded with 10B compound(s) may be a novel and promising candidate for providing not only NIRF imaging for a practical diagnosis but also the dual therapeutic effects of induced cancer cell death, i.e., “theranostics”.
キーワード
boron neutron capture therapy (BNCT)
dual therapeutic effects
Lactosome ®
hydrophobic boron compound
neutron irradiation
theranostics
発行日
2025-01-06
出版物タイトル
Cells
14巻
1号
出版者
MDPI
開始ページ
60
ISSN
2073-4409
資料タイプ
学術雑誌論文
言語
英語
OAI-PMH Set
岡山大学
著作権者
© 2025 by the authors.
論文のバージョン
publisher
PubMed ID
DOI
Web of Science KeyUT
関連URL
isVersionOf https://doi.org/10.3390/cells14010060
ライセンス
https://creativecommons.org/licenses/by/4.0/
Citation
Fithroni, A.B.; Inoue, H.; Zhou, S.; Hakim, T.F.N.; Tada, T.; Suzuki, M.; Sakurai, Y.; Ishimoto, M.; Yamada, N.; Sauriasari, R.; et al. Novel Drug Delivery Particles Can Provide Dual Effects on Cancer “Theranostics” in Boron Neutron Capture Therapy. Cells 2025, 14, 60. https://doi.org/10.3390/cells14010060
助成機関名
Japan Agency for Medical Research and Development