首页> 外文期刊>Acta biomaterialia >Enhanced differentiation of human neural crest stem cells towards the Schwann cell lineage by aligned electrospun fiber matrix.
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Enhanced differentiation of human neural crest stem cells towards the Schwann cell lineage by aligned electrospun fiber matrix.

机译:通过对准的电纺纤维基质增强人神经嵴干细胞对施旺细胞谱系的分化。

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摘要

Human pluripotent stem cell-derived neural crest stem cells (NCSCs) provide a promising cell source for generating Schwann cells in the treatment of neurodegenerative diseases and traumatic injuries in the peripheral nervous system. Influencing cell behavior through a synthetic matrix topography has been shown to be an effective approach to directing stem cell proliferation and differentiation. Here we have investigated the effect of nanofiber topography on the differentiation of human embryonic stem cell-derived NCSCs towards the Schwann cell lineage. Using electrospun fibers of different diameters and alignments we demonstrated that aligned fiber matrices effectively induced cell alignment, and that fiber matrices with average diameters of 600nm and 1.6μm most effectively promoted NCSC differentiation towards the Schwann cell lineage compared with random fibers and two-dimensional tissue culture plates. More importantly, human NCSCs that were predifferentiated in Schwann cell medium for 2weeks exhibited higher sensitivity to the aligned fiber topography than undifferentiated NCSCs. This study provides an efficient protocol for Schwann cell derivation by combining an aligned nanofiber matrix and an optimized differentiation medium, and highlights the importance of matching extrinsic matrix signaling with cell intrinsic programming in a temporally specific manner.
机译:人多能干细胞衍生的神经嵴干细胞(NCSCs)提供了用于在治疗外周神经系统中的神经变性疾病和创伤损伤时产生施曼细胞的有前途的细胞来源。已经显示通过合成基质形貌的影响细胞行为是指导干细胞增殖和分化的有效方法。在这里,我们研究了纳米纤维形貌对人胚胎干细胞衍生NCSCs朝向施旺细胞谱系的分化的影响。使用不同直径的电纺纤维和对准,我们证明了对准的纤维矩阵有效地诱导电池对准,并且平均直径为600nm和1.6μm的纤维矩阵最有效地促进了与随机纤维和二维组织相比施曼细胞谱系的NCSC差异。文化盘子。更重要的是,在Schwann细胞培养基中预期的2周的人NCSCs对对准的纤维形貌具有更高的敏感性,而不是未分化的NCSCs。该研究通过组合对准的纳米纤维矩阵和优化的分化介质来为施旺细胞导出提供有效的协议,并突出以时间特异性方式匹配与细胞内联编程的外部矩阵信令的重要性。

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