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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Influence of hypoxia on the stemness of umbilical cord matrix‐derived mesenchymal stem cells cultured on chitosan films
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Influence of hypoxia on the stemness of umbilical cord matrix‐derived mesenchymal stem cells cultured on chitosan films

机译:缺氧对壳聚糖薄膜培养脐带基质衍生间充质干细胞茎的影响

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ABSTRACT Chitosan is attractive as a substrate for stem cell expansion because it improves stemness through formation of spheroids. Hypoxia has also been proposed as a strategy to enhance stemness and survival of stem cells after in vivo implantation. This study was therefore designed to evaluate the influence of hypoxia on chitosan‐induced behavior of stem cells. Umbilical cord matrix‐derived stem cells were cultured on chitosan film or standard plate under normoxia and hypoxia, for 3 and 7 days. Based on immunophenotyping, chitosan strongly suppresses the expression of CD90 and CD105 cell surface markers, changes partially reversed by combined exposure to hypoxia. Hypoxia generally increased the volume and number of spheroids formed on chitosan, but the cellularity of cultures on chitosan films remained lower than that of standard plates. After 7 days of culture, the expression of stemness related genes ( Oct4 , Sox2 , and Nanog ) was best stimulated by combined exposure to chitosan and hypoxia. Based on our results, conditioning stem cells for 7 days on chitosan films under hypoxic conditions is recommended to enhance the stemness of stem cells, and minimize cell loss due to lack of attachment on chitosan. ? 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 501–511, 2018.
机译:摘要壳聚糖作为干细胞膨胀的基材是有吸引力的,因为它通过形成球状体来改善茎。还提出了缺氧作为增强体内植入后干细胞茎和存活的策略。因此,本研究旨在评估缺氧对干细胞壳聚糖诱导的行为的影响。在常氧和缺氧下的壳聚糖薄膜或标准板上培养脐带基质衍生的干细胞3和7天。基于免疫蛋白酶型,壳聚糖强烈抑制CD90和CD105细胞表面标志物的表达,通过组合暴露于缺氧部分逆转。缺氧通常增加壳聚糖上形成的球状体积和数量,但壳聚糖膜上的培养物的细胞性仍然低于标准板的细胞性。经过7天的培养后,通过在壳聚糖和缺氧的组合接触的情况下最好地刺激茎与茎相关基因(OCT4,SOX2和NANOG)的表达。基于我们的结果,建议在脱氧条件下调节干细胞7天的壳聚糖膜,以增强干细胞的茎,并最大限度地减少壳聚糖缺乏附着的细胞损失。还2017年Wiley期刊,Inc。J生物保解率B部分B:苹果生物摩特,106B:501-511,2018。

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