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Glioma stem cells and their roles within the hypoxic tumor microenvironment.


ABSTRACT: Tumor microenvironments are the result of cellular alterations in cancer that support unrestricted growth and proliferation and result in further modifications in cell behavior, which are critical for tumor progression. Angiogenesis and therapeutic resistance are known to be modulated by hypoxia and other tumor microenvironments, such as acidic stress, both of which are core features of the glioblastoma microenvironment. Hypoxia has also been shown to promote a stem-like state in both non-neoplastic and tumor cells. In glial tumors, glioma stem cells (GSCs) are central in tumor growth, angiogenesis, and therapeutic resistance, and further investigation of the interplay between tumor microenvironments and GSCs is critical to the search for better treatment options for glioblastoma. Accordingly, we summarize the impact of hypoxia and acidic stress on GSC signaling and biologic phenotypes, and potential methods to inhibit these pathways.

SUBMITTER: Boyd NH 

PROVIDER: S-EPMC7738846 | biostudies-literature | 2021

REPOSITORIES: biostudies-literature

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Glioma stem cells and their roles within the hypoxic tumor microenvironment.

Boyd Nathaniel H NH   Tran Anh Nhat AN   Bernstock Joshua D JD   Etminan Tina T   Jones Amber B AB   Gillespie G Yancey GY   Friedman Gregory K GK   Hjelmeland Anita B AB  

Theranostics 20210101 2


Tumor microenvironments are the result of cellular alterations in cancer that support unrestricted growth and proliferation and result in further modifications in cell behavior, which are critical for tumor progression. Angiogenesis and therapeutic resistance are known to be modulated by hypoxia and other tumor microenvironments, such as acidic stress, both of which are core features of the glioblastoma microenvironment. Hypoxia has also been shown to promote a stem-like state in both non-neopla  ...[more]

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