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Tsuboi, Nobushige
Department of Neurological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences
Otani, Yoshihiro
Department of Neurological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences
Uneda, Atsuhito
Department of Neurological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences
Ishida, Joji
Department of Neurological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences
Suruga, Yasuki
Department of Neurological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences
Matsumoto, Yuji
Department of Neurological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences
Fujii, Kentaro
Department of Neurological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences
Kurozumi, Kazuhiko
Department of Neurosurgery, Hamamatsu University School of Medicine
Date, Isao
Department of Neurological Surgery, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences
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Michiue, Hiroyuki
Neutron Therapy Research Center, Okayama University
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Abstract | Background and Aims: Anti-angiogenic therapies prolong patient survival in some malignancies but not glioblastoma. We focused on the relationship between the differentiation of glioma stem like cells (GSCs) into tumor derived endothelial cells (TDECs) and, anti-angiogenic therapy resistance. Especially we aimed to elucidate the mechanisms of drug resistance of TDECs to anti-angiogenic inhibitors and identify novel anti-angiogenic drugs with clinical applications.
Results: The mouse GSCs, 005, were differentiated into TDECs under hypoxic conditions, and TDECs had endothelial cell characteristics independent of the vascular endothelial growth factor (VEGF) pathway. In vivo, inhibition of the VEGF pathway had no anti-tumor effect and increased the percentage of TDECs in the 005 mouse model. Novel anti-angiogenic drugs for glioblastoma were evaluated using a tube formation assay and a drug repositioning strategy with existing blood-brain barrier permeable drugs. Drug screening revealed that the antidepressant sertraline inhibited tube formation of TDECs. Sertraline was administered to differentiated TDECs in vitro and 005 mouse models in vivo to evaluate genetic changes by RNA-Seq and tumor regression effects by immunohistochemistry and MRI. Sertraline reduced Lama4 and Ang2 expressions of TDEC, which play an important role in non-VEGF-mediated angiogenesis in tumors. The combination of a VEGF receptor inhibitor axitinib, and sertraline improved survival and reduced tumor growth in the 005 mouse model. Conclusion: Collectively, our findings showed the diversity of tumor vascular endothelial cells across VEGF and non-VEGF pathways led to anti-angiogenic resistance. The combination of axitinib and sertraline can represent an effective anti-angiogenic therapy for glioblastoma with safe, low cost, and fast availability. |
Keywords | anti-angiogenic therapy
antidepressant sertraline
drug repositioning
glioblastoma
tumor derived endothelial cells
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Published Date | 2024-10-23
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Publication Title |
Cancer Medicine
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Volume | volume13
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Issue | issue20
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Publisher | Wiley
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Start Page | e70288
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ISSN | 2045-7634
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Content Type |
Journal Article
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language |
English
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OAI-PMH Set |
岡山大学
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Copyright Holders | © 2024 The Author(s).
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File Version | publisher
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Related Url | isVersionOf https://doi.org/10.1002/cam4.70288
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License | https://creativecommons.org/licenses/by/4.0/
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Citation | Tsuboi, N., Otani, Y., Uneda, A., Ishida, J., Suruga, Y., Matsumoto, Y., Fujimura, A., Fujii, K., Matsui, H., Kurozumi, K., Date, I. and Michiue, H. (2024), New Anti-Angiogenic Therapy for Glioblastoma With the Anti-Depressant Sertraline. Cancer Med, 13: e70288. https://doi.org/10.1002/cam4.70288
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