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Oncogenic State and Cell Identity Combinatorially Dictate the Susceptibility of Cells within Glioma Development Hierarchy to IGF1R Targeting

Glioblastoma is the most malignant cancer in the brain and currently incurable. It is urgent to identify effective targets for this lethal disease. Inhibition of such targets should suppress the growth of cancer cells and, ideally also precancerous cells for early prevention, but minimally affect th...

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Autores principales: Tian, Anhao, Kang, Bo, Li, Baizhou, Qiu, Biying, Jiang, Wenhong, Shao, Fangjie, Gao, Qingqing, Liu, Rui, Cai, Chengwei, Jing, Rui, Wang, Wei, Chen, Pengxiang, Liang, Qinghui, Bao, Lili, Man, Jianghong, Wang, Yan, Shi, Yu, Li, Jin, Yang, Minmin, Wang, Lisha, Zhang, Jianmin, Hippenmeyer, Simon, Zhu, Junming, Bian, Xiuwu, Wang, Ying‐Jie, Liu, Chong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7610337/
https://www.ncbi.nlm.nih.gov/pubmed/33173731
http://dx.doi.org/10.1002/advs.202001724
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author Tian, Anhao
Kang, Bo
Li, Baizhou
Qiu, Biying
Jiang, Wenhong
Shao, Fangjie
Gao, Qingqing
Liu, Rui
Cai, Chengwei
Jing, Rui
Wang, Wei
Chen, Pengxiang
Liang, Qinghui
Bao, Lili
Man, Jianghong
Wang, Yan
Shi, Yu
Li, Jin
Yang, Minmin
Wang, Lisha
Zhang, Jianmin
Hippenmeyer, Simon
Zhu, Junming
Bian, Xiuwu
Wang, Ying‐Jie
Liu, Chong
author_facet Tian, Anhao
Kang, Bo
Li, Baizhou
Qiu, Biying
Jiang, Wenhong
Shao, Fangjie
Gao, Qingqing
Liu, Rui
Cai, Chengwei
Jing, Rui
Wang, Wei
Chen, Pengxiang
Liang, Qinghui
Bao, Lili
Man, Jianghong
Wang, Yan
Shi, Yu
Li, Jin
Yang, Minmin
Wang, Lisha
Zhang, Jianmin
Hippenmeyer, Simon
Zhu, Junming
Bian, Xiuwu
Wang, Ying‐Jie
Liu, Chong
author_sort Tian, Anhao
collection PubMed
description Glioblastoma is the most malignant cancer in the brain and currently incurable. It is urgent to identify effective targets for this lethal disease. Inhibition of such targets should suppress the growth of cancer cells and, ideally also precancerous cells for early prevention, but minimally affect their normal counterparts. Using genetic mouse models with neural stem cells (NSCs) or oligodendrocyte precursor cells (OPCs) as the cells‐of‐origin/mutation, it is shown that the susceptibility of cells within the development hierarchy of glioma to the knockout of insulin‐like growth factor I receptor (IGF1R) is determined not only by their oncogenic states, but also by their cell identities/states. Knockout of IGF1R selectively disrupts the growth of mutant and transformed, but not normal OPCs, or NSCs. The desirable outcome of IGF1R knockout on cell growth requires the mutant cells to commit to the OPC identity regardless of its development hierarchical status. At the molecular level, oncogenic mutations reprogram the cellular network of OPCs and force them to depend more on IGF1R for their growth. A new‐generation brain‐penetrable, orally available IGF1R inhibitor harnessing tumor OPCs in the brain is also developed. The findings reveal the cellular window of IGF1R targeting and establish IGF1R as an effective target for the prevention and treatment of glioblastoma.
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spelling pubmed-76103372020-11-09 Oncogenic State and Cell Identity Combinatorially Dictate the Susceptibility of Cells within Glioma Development Hierarchy to IGF1R Targeting Tian, Anhao Kang, Bo Li, Baizhou Qiu, Biying Jiang, Wenhong Shao, Fangjie Gao, Qingqing Liu, Rui Cai, Chengwei Jing, Rui Wang, Wei Chen, Pengxiang Liang, Qinghui Bao, Lili Man, Jianghong Wang, Yan Shi, Yu Li, Jin Yang, Minmin Wang, Lisha Zhang, Jianmin Hippenmeyer, Simon Zhu, Junming Bian, Xiuwu Wang, Ying‐Jie Liu, Chong Adv Sci (Weinh) Full Papers Glioblastoma is the most malignant cancer in the brain and currently incurable. It is urgent to identify effective targets for this lethal disease. Inhibition of such targets should suppress the growth of cancer cells and, ideally also precancerous cells for early prevention, but minimally affect their normal counterparts. Using genetic mouse models with neural stem cells (NSCs) or oligodendrocyte precursor cells (OPCs) as the cells‐of‐origin/mutation, it is shown that the susceptibility of cells within the development hierarchy of glioma to the knockout of insulin‐like growth factor I receptor (IGF1R) is determined not only by their oncogenic states, but also by their cell identities/states. Knockout of IGF1R selectively disrupts the growth of mutant and transformed, but not normal OPCs, or NSCs. The desirable outcome of IGF1R knockout on cell growth requires the mutant cells to commit to the OPC identity regardless of its development hierarchical status. At the molecular level, oncogenic mutations reprogram the cellular network of OPCs and force them to depend more on IGF1R for their growth. A new‐generation brain‐penetrable, orally available IGF1R inhibitor harnessing tumor OPCs in the brain is also developed. The findings reveal the cellular window of IGF1R targeting and establish IGF1R as an effective target for the prevention and treatment of glioblastoma. John Wiley and Sons Inc. 2020-10-01 /pmc/articles/PMC7610337/ /pubmed/33173731 http://dx.doi.org/10.1002/advs.202001724 Text en © 2020 The Authors. Published by Wiley‐VCH GmbH This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Tian, Anhao
Kang, Bo
Li, Baizhou
Qiu, Biying
Jiang, Wenhong
Shao, Fangjie
Gao, Qingqing
Liu, Rui
Cai, Chengwei
Jing, Rui
Wang, Wei
Chen, Pengxiang
Liang, Qinghui
Bao, Lili
Man, Jianghong
Wang, Yan
Shi, Yu
Li, Jin
Yang, Minmin
Wang, Lisha
Zhang, Jianmin
Hippenmeyer, Simon
Zhu, Junming
Bian, Xiuwu
Wang, Ying‐Jie
Liu, Chong
Oncogenic State and Cell Identity Combinatorially Dictate the Susceptibility of Cells within Glioma Development Hierarchy to IGF1R Targeting
title Oncogenic State and Cell Identity Combinatorially Dictate the Susceptibility of Cells within Glioma Development Hierarchy to IGF1R Targeting
title_full Oncogenic State and Cell Identity Combinatorially Dictate the Susceptibility of Cells within Glioma Development Hierarchy to IGF1R Targeting
title_fullStr Oncogenic State and Cell Identity Combinatorially Dictate the Susceptibility of Cells within Glioma Development Hierarchy to IGF1R Targeting
title_full_unstemmed Oncogenic State and Cell Identity Combinatorially Dictate the Susceptibility of Cells within Glioma Development Hierarchy to IGF1R Targeting
title_short Oncogenic State and Cell Identity Combinatorially Dictate the Susceptibility of Cells within Glioma Development Hierarchy to IGF1R Targeting
title_sort oncogenic state and cell identity combinatorially dictate the susceptibility of cells within glioma development hierarchy to igf1r targeting
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7610337/
https://www.ncbi.nlm.nih.gov/pubmed/33173731
http://dx.doi.org/10.1002/advs.202001724
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