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PNJ 支架促进神经胶质瘤干细胞样细胞富集和放射抗性的微环境调节。

PNJ scaffolds promote microenvironmental regulation of glioblastoma stem-like cell enrichment and radioresistance.

机构信息

Ivy Brain Tumor Center, Barrow Neurological Institute, 350 W Thomas Rd, Phoenix, AZ 85013, USA.

School of Biological and Health Systems Engineering, Arizona State University, PO Box 879709, Tempe, AZ 85287, USA.

出版信息

Biomater Sci. 2022 Feb 1;10(3):819-833. doi: 10.1039/d0bm01169j.

Abstract

Glioblastoma (GBM) brain tumors contain a subpopulation of self-renewing multipotent Glioblastoma stem-like cells (GSCs) that are believed to drive the near inevitable recurrence of GBM. We previously engineered temperature responsive scaffolds based on the polymer poly(-isopropylacrylamide--Jeffamine M-1000 acrylamide) (PNJ) for the purpose of enriching GSCs from patient-derived samples. Here, we used PNJ scaffolds to study microenvironmental regulation of self-renewal and radiation response in patient-derived GSCs representing classical and proneural subtypes. GSC self-renewal was regulated by the composition of PNJ scaffolds and varied with cell type. PNJ scaffolds protected against radiation-induced cell death, particularly in conditions that also promoted GSC self-renewal. Additionally, cells cultured in PNJ scaffolds exhibited increased expression of the transcription factor HIF2α, which was not observed in neurosphere culture, providing a potential mechanistic basis for differences in radio-resistance. Differences in PNJ regulation of HIF2α in irradiated and untreated conditions also offered evidence of stem plasticity. These data show PNJ scaffolds provide a unique biomaterial for evaluating dynamic microenvironmental regulation of GSC self-renewal, radioresistance, and stem plasticity.

摘要

胶质母细胞瘤 (GBM) 脑肿瘤中存在一小部分自我更新的多能胶质母细胞瘤干细胞 (GSCs),这些细胞被认为是导致 GBM 近乎不可避免复发的原因。我们之前基于聚合物聚 (异丙基丙烯酰胺-聚 (Jeffamine M-1000 丙烯酰胺)) (PNJ) 设计了温度响应支架,目的是从患者来源的样本中富集 GSCs。在这里,我们使用 PNJ 支架来研究代表经典和神经前体亚型的患者来源 GSCs 中自我更新和辐射反应的微环境调节。GSC 的自我更新受 PNJ 支架组成的调节,并且随细胞类型而变化。PNJ 支架可防止辐射诱导的细胞死亡,尤其是在促进 GSC 自我更新的条件下。此外,在 PNJ 支架中培养的细胞表现出转录因子 HIF2α 的表达增加,而在神经球培养中未观察到这种情况,为放射抗性的差异提供了潜在的机制基础。辐照和未处理条件下 PNJ 对 HIF2α 的调节差异也为干细胞可塑性提供了证据。这些数据表明,PNJ 支架为评估 GSC 自我更新、放射抗性和干细胞可塑性的动态微环境调节提供了独特的生物材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/120c/8939461/dd478f7c5993/nihms-1781781-f0002.jpg

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