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小儿脑胶质瘤细胞在共培养物中抑制神经发生,促进人神经祖细胞的表型转化、增殖和迁移。

Pediatric glioblastoma cells inhibit neurogenesis and promote astrogenesis, phenotypic transformation and migration of human neural progenitor cells within cocultures.

机构信息

Department of Chemical and Biomedical Engineering, Cleveland State University, Cleveland, OH 44115, USA.

Department of Mathematics, Cleveland State University, Cleveland, OH 44115, USA.

出版信息

Exp Cell Res. 2018 Jan 1;362(1):159-171. doi: 10.1016/j.yexcr.2017.11.013. Epub 2017 Nov 10.

Abstract

Neural progenitor cell (NPC) fate is influenced by a variety of biological cues elicited from the surrounding microenvironment and recent studies suggest their possible role in pediatric glioblastoma multiforme (GBM) development. Since a few GBM cells also display NPC characteristics, it is not clear whether NPCs transform to tumor cell phenotype leading to the onset of GBM formation, or NPCs migrate to developing tumor sites in response to paracrine signaling from GBM cells. Elucidating the paracrine interactions between GBM cells and NPCs in vivo is challenging due to the inherent complexity of the CNS. Here, we investigated the interactions between human NPCs (ReNcell) and human pediatric GBM-derived cells (SJ-GBM2) using a Transwell coculture setup to assess the effects of GBM cells on ReNcells (cytokine and chemokine release, viability, phenotype, differentiation, migration). Standalone ReNcell or GBM cultures served as controls. Qualitative and quantitative results from ELISA, Live/Dead and BrdU assays, immunofluorescence labeling, western blot analysis, and scratch test suggests that although ReNcell viability remained unaffected in the presence of pediatric GBM cells, their morphology, phenotype, differentiation patterns, neurite outgrowth, migration patterns (average speed, distance, number of cells) and GSK-3β expression were significantly influenced. The cumulative distance migrated by the cells in each condition was fit to Furth's formula, derived formally from Ornstein-Uhlenbeck process. ReNcell differentiation into neural lineage was compromised and astrogenesis promoted within cocultures. Such coculture platform could be extended to identify the specific molecules contributing to the observed phenomena, to investigate whether NPCs could be transplanted to replace lesions of excised tumor sites, and to elucidate the underlying molecular pathways involved in GBM-NPC interactions within the tumor microenvironment.

摘要

神经祖细胞 (NPC) 的命运受到周围微环境中各种生物线索的影响,最近的研究表明它们可能在小儿多形性胶质母细胞瘤 (GBM) 的发展中起作用。由于一些 GBM 细胞也显示出 NPC 特征,因此尚不清楚 NPC 是转化为肿瘤细胞表型导致 GBM 形成的起始,还是 NPC 响应 GBM 细胞的旁分泌信号迁移到正在发育的肿瘤部位。由于中枢神经系统固有的复杂性,体内阐明 GBM 细胞与 NPC 之间的旁分泌相互作用具有挑战性。在这里,我们使用 Transwell 共培养设置研究了人 NPC(ReNcell)与人小儿 GBM 衍生细胞(SJ-GBM2)之间的相互作用,以评估 GBM 细胞对 ReNcell 的影响(细胞因子和趋化因子释放、活力、表型、分化、迁移)。单独的 ReNcell 或 GBM 培养作为对照。来自 ELISA、Live/Dead 和 BrdU 测定、免疫荧光标记、Western blot 分析和划痕试验的定性和定量结果表明,尽管在存在小儿 GBM 细胞的情况下 ReNcell 的活力保持不变,但它们的形态、表型、分化模式、神经突生长、迁移模式(平均速度、距离、细胞数量)和 GSK-3β 表达受到显著影响。在每种条件下迁移的细胞的累积迁移距离适合 Furth 公式,该公式正式源自 Ornstein-Uhlenbeck 过程。ReNcell 在共培养物中的向神经谱系分化受损,星形胶质细胞发生被促进。这种共培养平台可以扩展到识别导致观察到的现象的特定分子,以研究 NPC 是否可以被移植以替代切除肿瘤部位的病变,并阐明肿瘤微环境中 GBM-NPC 相互作用中涉及的潜在分子途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4556/5741502/c7601fef002b/nihms921815f1.jpg

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