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Pericytes augment glioblastoma cell resistance to temozolomide through CCL5-CCR5 paracrine signaling

Glioblastoma (GBM) is a prevalent and highly lethal form of glioma, with rapid tumor progression and frequent recurrence. Excessive outgrowth of pericytes in GBM governs the ecology of the perivascular niche, but their function in mediating chemoresistance has not been fully explored. Herein, we unc...

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Autores principales: Zhang, Xiao-Ning, Yang, Kai-Di, Chen, Cong, He, Zhi-Cheng, Wang, Qiang-Hu, Feng, Hua, Lv, Sheng-Qing, Wang, Yan, Mao, Min, Liu, Qing, Tan, Yao-Yao, Wang, Wen-Ying, Li, Tian-Ran, Che, Lin-Rong, Qin, Zhong-Yi, Wu, Ling-Xiang, Luo, Min, Luo, Chun-Hua, Liu, Yu-Qi, Yin, Wen, Wang, Chao, Guo, Hai-Tao, Li, Qing-Rui, Wang, Bin, Chen, Wei, Wang, Shuang, Shi, Yu, Bian, Xiu-Wu, Ping, Yi-Fang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Singapore 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8486800/
https://www.ncbi.nlm.nih.gov/pubmed/34239070
http://dx.doi.org/10.1038/s41422-021-00528-3
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author Zhang, Xiao-Ning
Yang, Kai-Di
Chen, Cong
He, Zhi-Cheng
Wang, Qiang-Hu
Feng, Hua
Lv, Sheng-Qing
Wang, Yan
Mao, Min
Liu, Qing
Tan, Yao-Yao
Wang, Wen-Ying
Li, Tian-Ran
Che, Lin-Rong
Qin, Zhong-Yi
Wu, Ling-Xiang
Luo, Min
Luo, Chun-Hua
Liu, Yu-Qi
Yin, Wen
Wang, Chao
Guo, Hai-Tao
Li, Qing-Rui
Wang, Bin
Chen, Wei
Wang, Shuang
Shi, Yu
Bian, Xiu-Wu
Ping, Yi-Fang
author_facet Zhang, Xiao-Ning
Yang, Kai-Di
Chen, Cong
He, Zhi-Cheng
Wang, Qiang-Hu
Feng, Hua
Lv, Sheng-Qing
Wang, Yan
Mao, Min
Liu, Qing
Tan, Yao-Yao
Wang, Wen-Ying
Li, Tian-Ran
Che, Lin-Rong
Qin, Zhong-Yi
Wu, Ling-Xiang
Luo, Min
Luo, Chun-Hua
Liu, Yu-Qi
Yin, Wen
Wang, Chao
Guo, Hai-Tao
Li, Qing-Rui
Wang, Bin
Chen, Wei
Wang, Shuang
Shi, Yu
Bian, Xiu-Wu
Ping, Yi-Fang
author_sort Zhang, Xiao-Ning
collection PubMed
description Glioblastoma (GBM) is a prevalent and highly lethal form of glioma, with rapid tumor progression and frequent recurrence. Excessive outgrowth of pericytes in GBM governs the ecology of the perivascular niche, but their function in mediating chemoresistance has not been fully explored. Herein, we uncovered that pericytes potentiate DNA damage repair (DDR) in GBM cells residing in the perivascular niche, which induces temozolomide (TMZ) chemoresistance. We found that increased pericyte proportion correlates with accelerated tumor recurrence and worse prognosis. Genetic depletion of pericytes in GBM xenografts enhances TMZ-induced cytotoxicity and prolongs survival of tumor-bearing mice. Mechanistically, C-C motif chemokine ligand 5 (CCL5) secreted by pericytes activates C-C motif chemokine receptor 5 (CCR5) on GBM cells to enable DNA-dependent protein kinase catalytic subunit (DNA-PKcs)-mediated DDR upon TMZ treatment. Disrupting CCL5-CCR5 paracrine signaling through the brain-penetrable CCR5 antagonist maraviroc (MVC) potently inhibits pericyte-promoted DDR and effectively improves the chemotherapeutic efficacy of TMZ. GBM patient-derived xenografts with high CCL5 expression benefit from combined treatment with TMZ and MVC. Our study reveals the role of pericytes as an extrinsic stimulator potentiating DDR signaling in GBM cells and suggests that targeting CCL5-CCR5 signaling could be an effective therapeutic strategy to improve chemotherapeutic efficacy against GBM.
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spelling pubmed-84868002021-10-07 Pericytes augment glioblastoma cell resistance to temozolomide through CCL5-CCR5 paracrine signaling Zhang, Xiao-Ning Yang, Kai-Di Chen, Cong He, Zhi-Cheng Wang, Qiang-Hu Feng, Hua Lv, Sheng-Qing Wang, Yan Mao, Min Liu, Qing Tan, Yao-Yao Wang, Wen-Ying Li, Tian-Ran Che, Lin-Rong Qin, Zhong-Yi Wu, Ling-Xiang Luo, Min Luo, Chun-Hua Liu, Yu-Qi Yin, Wen Wang, Chao Guo, Hai-Tao Li, Qing-Rui Wang, Bin Chen, Wei Wang, Shuang Shi, Yu Bian, Xiu-Wu Ping, Yi-Fang Cell Res Article Glioblastoma (GBM) is a prevalent and highly lethal form of glioma, with rapid tumor progression and frequent recurrence. Excessive outgrowth of pericytes in GBM governs the ecology of the perivascular niche, but their function in mediating chemoresistance has not been fully explored. Herein, we uncovered that pericytes potentiate DNA damage repair (DDR) in GBM cells residing in the perivascular niche, which induces temozolomide (TMZ) chemoresistance. We found that increased pericyte proportion correlates with accelerated tumor recurrence and worse prognosis. Genetic depletion of pericytes in GBM xenografts enhances TMZ-induced cytotoxicity and prolongs survival of tumor-bearing mice. Mechanistically, C-C motif chemokine ligand 5 (CCL5) secreted by pericytes activates C-C motif chemokine receptor 5 (CCR5) on GBM cells to enable DNA-dependent protein kinase catalytic subunit (DNA-PKcs)-mediated DDR upon TMZ treatment. Disrupting CCL5-CCR5 paracrine signaling through the brain-penetrable CCR5 antagonist maraviroc (MVC) potently inhibits pericyte-promoted DDR and effectively improves the chemotherapeutic efficacy of TMZ. GBM patient-derived xenografts with high CCL5 expression benefit from combined treatment with TMZ and MVC. Our study reveals the role of pericytes as an extrinsic stimulator potentiating DDR signaling in GBM cells and suggests that targeting CCL5-CCR5 signaling could be an effective therapeutic strategy to improve chemotherapeutic efficacy against GBM. Springer Singapore 2021-07-08 2021-10 /pmc/articles/PMC8486800/ /pubmed/34239070 http://dx.doi.org/10.1038/s41422-021-00528-3 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Zhang, Xiao-Ning
Yang, Kai-Di
Chen, Cong
He, Zhi-Cheng
Wang, Qiang-Hu
Feng, Hua
Lv, Sheng-Qing
Wang, Yan
Mao, Min
Liu, Qing
Tan, Yao-Yao
Wang, Wen-Ying
Li, Tian-Ran
Che, Lin-Rong
Qin, Zhong-Yi
Wu, Ling-Xiang
Luo, Min
Luo, Chun-Hua
Liu, Yu-Qi
Yin, Wen
Wang, Chao
Guo, Hai-Tao
Li, Qing-Rui
Wang, Bin
Chen, Wei
Wang, Shuang
Shi, Yu
Bian, Xiu-Wu
Ping, Yi-Fang
Pericytes augment glioblastoma cell resistance to temozolomide through CCL5-CCR5 paracrine signaling
title Pericytes augment glioblastoma cell resistance to temozolomide through CCL5-CCR5 paracrine signaling
title_full Pericytes augment glioblastoma cell resistance to temozolomide through CCL5-CCR5 paracrine signaling
title_fullStr Pericytes augment glioblastoma cell resistance to temozolomide through CCL5-CCR5 paracrine signaling
title_full_unstemmed Pericytes augment glioblastoma cell resistance to temozolomide through CCL5-CCR5 paracrine signaling
title_short Pericytes augment glioblastoma cell resistance to temozolomide through CCL5-CCR5 paracrine signaling
title_sort pericytes augment glioblastoma cell resistance to temozolomide through ccl5-ccr5 paracrine signaling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8486800/
https://www.ncbi.nlm.nih.gov/pubmed/34239070
http://dx.doi.org/10.1038/s41422-021-00528-3
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