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首页> 外文期刊>Frontiers of materials science >Neurogenic differentiation of human umbilical cord mesenchymal stem cells on aligned electrospun polypyrrole/polylactide composite nanofibers with electrical stimulation
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Neurogenic differentiation of human umbilical cord mesenchymal stem cells on aligned electrospun polypyrrole/polylactide composite nanofibers with electrical stimulation

机译:在电刺激下排列的电纺聚吡咯/聚丙交酯复合纳米纤维上人脐带间充质干细胞的神经源性分化

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摘要

Adult central nervous system (CNS) tissue has a limited capacity to recover after trauma or disease. Recent medical cell therapy using polymeric biomaterialloaded stem cells with the capability of differentiation to specific neural population has directed focuses toward the recovery of CNS. Fibers that can provide topographical, biochemical and electrical cues would be attractive for directing the differentiation of stem cells into electro-responsive cells such as neuronal cells. Here we report on the fabrication of an electrospun polypyrrole/polylactide composite nanofiber film that direct or determine the fate of mesenchymal stem cells (MSCs), via combination of aligned surface topography, and electrical stimulation (ES). The surface morphology, mechanical properties and electric properties of the film were characterized. Comparing with that on random surface film, expression of neurofilament-lowest and nestin of human umbilical cord mesenchymal stemcells (huMSCs) cultured on film with aligned surface topography and ES were obviously enhanced. These results suggest that aligned topography combining with ES facilitates the neurogenic differentiation of huMSCs and the aligned conductive film can act as a potential nerve scaffold.
机译:成人中枢神经系统(CNS)组织在受到创伤或疾病后恢复的能力有限。最近的医学细胞疗法使用了具有聚合能力的特定生物群的能力的聚合物生物材料加载的干细胞,将注意力集中在中枢神经系统的恢复上。能够提供地形,生化和电学线索的纤维对于引导干细胞向电响应细胞(如神经元细胞)的分化具有吸引力。在这里,我们报告的电纺聚吡咯/聚丙交酯复合纳米纤维膜的制造,通过对齐的表面形貌和电刺激(ES)的组合来指导或确定间充质干细胞(MSC)的命运。表征了膜的表面形态,机械性能和电性能。与随机表面膜相比,培养的人脐带间充质干细胞(huMSCs)的神经丝最低和巢蛋白的表达在表面形貌和ES一致的膜上得到了明显增强。这些结果表明,对齐的地形与ES结合可促进huMSC的神经源性分化,并且对齐的导电膜可以充当潜在的神经支架。

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