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Nanofiber Design for Human Stem Cell Culture

机译:用于人类干细胞培养的纳米纤维设计

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This review describes the recent developments in natural and synthetic nanofibers to support human stem cell (hSC) propagation and differentiation. Nanofibers are promising substrates for regenerative medicine because of their morphologies that structurally mimic the in vivo microenvironment, that is, the extracellular matrix (ECM). Cellular behavior, including attachment, proliferation, and differentiation, can be modulated by modifying nanofiber properties. Nanofibers that have been successfully used for the culture of including human pluripotent stem cells are classified as oligopeptide-immobilized nanofibers prepared from synthetic polymers,or natural polymers, and ECM-modified nanofibers. The combination of human ECM proteins or cell adhesion molecules and nanofibers with well-designed properties provides an alternative to traditional 2D media for the culture and maintenance of the pluripotency or the differentiation of hSCs. Nanofibers with macroporous networks could enhance cell infiltration. Three-dimensional nanofiber scaffolds offer an opportunity for functional tissue regeneration. This review explores the effects of nanofibers on human stem cell pluripotency and their fates.
机译:这篇综述描述了支持人类干细胞(hSC)繁殖和分化的天然和合成纳米纤维的最新发展。纳米纤维是有前景的再生医学基质,因为它们的形态在结构上模仿了体内的微环境,即细胞外基质(ECM)。细胞行为,包括附着,增殖和分化,可以通过改变纳米纤维的性质来调节。已经成功用于包括人多能干细胞的培养的纳米纤维被分类为由合成聚合物或天然聚合物和ECM修饰的纳米纤维制备的寡肽固定化纳米纤维。人类ECM蛋白或细胞粘附分子与具有精心设计特性的纳米纤维的结合,为传统2D培养基的培养和维持多能性或hSCs的分化提供了一种替代方法。具有大孔网络的纳米纤维可以增强细胞浸润。三维纳米纤维支架为功能性组织再生提供了机会。这篇综述探讨了纳米纤维对人类干细胞多能性及其命运的影响。

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