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Type 1 collagen as a potential niche component for CD133‐positive glioblastoma cells

干细胞 内斯汀 细胞外基质 干细胞标记物 Ⅰ型胶原 病理 细胞培养 癌症干细胞 癌变 生物 IV型胶原 免疫细胞化学 细胞 间充质干细胞 细胞生物学 化学 癌症 层粘连蛋白 神经干细胞 医学 生物化学 遗传学
作者
Hiroaki Motegi,Yuuta Kamoshima,Shunsuke Terasaka,Hiroyuki Kobayashi,Kiyohiro Houkin
出处
期刊:Neuropathology [Wiley]
卷期号:34 (4): 378-385 被引量:55
标识
DOI:10.1111/neup.12117
摘要

Cancer stem cells are thought to be closely related to tumor progression and recurrence, making them attractive therapeutic targets. Stem cells of various tissues exist within niches maintaining their stemness. Glioblastoma stem cells ( GSCs ) are located at tumor capillaries and the perivascular niche, which are considered to have an important role in maintaining GSCs . There were some extracellular matrices ( ECM ) on the perivascular connective tissue, including type 1 collagen. We here evaluated whether type 1 collagen has a potential niche for GSCs . Imunohistochemical staining of type 1 collagen and CD133 , one of the GSCs markers, on glioblastoma ( GBM ) tissues showed CD133 ‐positive cells were located in immediate proximity to type 1 collagen around tumor vessels. We cultured human GBM cell lines, U87MG and GBM cells obtained from fresh surgical tissues, T472 and T555, with serum‐containing medium ( SCM ) or serum‐free medium with some growth factors ( SFM ) and in non‐coated (Non‐coat) or type 1 collagen‐coated plates ( C ol). The RNA expression levels of CD133 and Nestin as stem cell markers in each condition were examined. The C ol condition not only with SFM but SCM made GBM cells more enhanced in RNA expression of CD133 , compared to Non‐coat/ SCM . Semi‐quantitative measurement of CD133 ‐positive cells by immunocytochemistry showed a statistically significant increase of CD133 ‐positive cells in C ol/ SFM . In addition, T472 cell line cultured in the C ol/ SFM had capabilities of sphere formation and tumorigenesis. Type 1 collagen was found in the perivascular area and showed a possibility to maintain GSCs . These findings suggest that type 1 collagen could be one important niche component for CD133 ‐positive GSCs and maintain GSCs in adherent culture.
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