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Chemically-defined scaffolds created with electrospun synthetic nanofibers to maintain mouse embryonic stem cell culture under feeder-free conditions

机译:用电纺合成纳米纤维创建的化学定义支架,可在无饲养员的条件下维持小鼠胚胎干细胞培养

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摘要

Embryonic stem cells (ESCs) are useful resources for drug discovery, developmental biology and disease studies. Cellular microenvironmental cues play critical roles in regulating ESC functions, but it is challenging to control them with synthetic components. Nanofibers hold a potential to create artificial cellular cues for controlling cell adhesion and cell-cell interactions. Mouse ESC (mESC) were cultured on electro-spun nanofibers made from polymethylglutarimide (PMGI), which is a synthetic thermoplastic polymer stable under culture conditions. Both topology and the density of PMGI nanofibers were key factors. mESCs on nanofibers had a growth rate comparable to those cultured conventionally and retained their pluripotency. Furthermore, self-renewed ESCs differentiated into all three germ layers thereby providing a reliable way to expand mESCs without feeder cells.
机译:胚胎干细胞(ESC)是用于药物发现,发育生物学和疾病研究的有用资源。细胞微环境线索在调节ESC功能中起着关键作用,但是用合成成分控制它们具有挑战性。纳米纤维具有创造人工细胞线索以控制细胞粘附和细胞间相互作用的潜力。将小鼠ESC(mESC)培养在由聚甲基戊二酰亚胺(PMGI)制成的电纺纳米纤维上,该纤维是在培养条件下稳定的合成热塑性聚合物。拓扑结构和PMGI纳米纤维的密度都是关键因素。纳米纤维上的mESC具有与常规培养相当的生长速率,并保持了其多能性。此外,自我更新的胚胎干细胞分化为所有三个胚层,从而提供了一种无需饲养细胞即可扩增mESC的可靠方法。

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