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Modeling Microenvironmental Regulation of Glioblastoma Stem Cells: A Biomaterials Perspective

机译:胶质母细胞瘤干细胞的微环境调节:生物材料观点

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摘要

Following diagnosis of a glioblastoma (GBM) brain tumor, surgical resection, chemotherapy, and radiation together yield a median patient survival of only 15 months. Importantly, standard treatments fail to address the dynamic regulation of the brain tumor microenvironment that actively supports tumor progression and treatment resistance. It is becoming increasingly recognized that specialized niches within the tumor microenvironment maintain a population of highly malignant glioblastoma stem-like cells (GSCs). GSCs are resistant to traditional chemotherapy and radiation therapy, suggesting that they may be responsible for the near universal rates of tumor recurrence and associated morbidity in GBM. Thus, disrupting microenvironmental support for GSCs could be critical to developing more effective GBM therapies. Three-dimensional culture models of the tumor microenvironment are powerful tools for identifying key biochemical and biophysical inputs that impact malignant behaviors. Such systems have been used effectively to identify conditions that regulate GSC proliferation, invasion, stem-specific phenotypes, and treatment resistance. Considering the significant role that GSC microenvironments play in regulating this tumorigenic subpopulation, these models may be essential for uncovering mechanisms that limit GSCs malignancy.
机译:在诊断胶质母细胞瘤(GBM)脑肿瘤,手术切除,化疗和辐射之后,共同产生中位数患者存活仅15个月。重要的是,标准治疗无法解决脑肿瘤微环境的动态调节,以积极支持肿瘤进展和治疗抗性。越来越认识到,肿瘤微环境中的专门核桃维持高度恶性胶质母细胞瘤干细胞(GSC)的群体。 GSCs对传统化疗和放射治疗有抵抗力,这表明它们可能对GBM的肿瘤复发和相关发病率的近乎普遍率负责。因此,破坏对GSC的微环境支持对于培养更有效的GBM疗法至关重要。肿瘤微环境的三维培养模型是识别影响恶性行为的关键生化和生物物理投入的强大工具。这些系统已被有效使用,以鉴定调节GSC增殖,侵袭,茎特异性表型和治疗抗性的条件。考虑到GSC微环境在调节这种致瘤亚贫困方面发挥的重要作用,这些模型对于揭示GSCs恶性肿瘤的机制可能是必不可少的。

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