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首页> 外文期刊>ACS applied materials & interfaces >Stretchable Piezoelectric Substrate Providing Pulsatile Mechanoelectric Cues for Cardiomyogenic Differentiation of Mesenchymal Stem Cells
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Stretchable Piezoelectric Substrate Providing Pulsatile Mechanoelectric Cues for Cardiomyogenic Differentiation of Mesenchymal Stem Cells

机译:可伸展压电基板,为间充质干细胞的心肌细胞分化提供脉动力学电影

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Ex vivo induction of cardiomyogenic differentiation of mesenchymal stem cells (MSCs) before implantation would composite NRs aligned NRs potentiate therapeutic efficacy of stem cell therapies for ischemic heart diseases because MSCs rarely undergo cardiomyogenic differentiation following implantation. In cardiac microenvironments, electric pulse and cyclic mechanical strain are sequentially produced. However, no study has applied the pulsatile mechanoelectric cues (PMEC) to stimulate cardiomyogenic differentiation of MSCs ex vivo. In this study, we developed a stretchable piezoelectric substrate (SPS) that can provide PMEC to human MSCs (hMSCs) for cardiomyogenic differentiation ex vivo. Our data showed that hMSCs subjected to PMEC by SPS underwent promoted cardiac phenotype development: cell alignment and the expression of cardiac markers (i.e., cardiac transcription factors, structural proteins, ion channel proteins, and gap junction proteins). The enhanced cardiac phenotype development was mediated by the upregulation of cardiomyogenic differentiation-related autocrine factor expression, focal adhesion kinase, and extracellular signal-regulated kinases signaling pathways. Thus, SPS providing electrical and mechanical regulation of stem cells may be utilized to potentiate hMSC therapies for myocardial infarction and provide a tool for the study of stem cell biology.
机译:在植入前的间充质干细胞(MSCs)的心细胞病分化的前体内诱导将复合NRS对齐NRS对缺血性心脏病治疗干细胞疗法的疗效治疗疗效,因为MSCs很少经历植入后的心肌分化。在心脏微环境中,依次产生电脉冲和循环机械应变。然而,没有研究施加了脉动力学电影(PMEC)以刺激MSCs离体的心肌细胞分化。在这项研究中,我们开发了一种可拉伸的压电基板(SPS),其可以为人体MSCs(HMSCs)提供用于心肌细胞分化的人MSCs(HMSC)。我们的数据显示,SPS经过PMEC的HMSC促进了心脏表型开发:细胞对准和心脏标志物的表达(即心脏转录因子,结构蛋白质,离子通道蛋白质和间隙结蛋白)。增强的心脏表型开发是由心肌分化相关的自分泌因子表达,局灶性粘附激酶和细胞外信号调节激酶信号传导途径的上调介导的。因此,提供干细胞的电气和机械调节的SP可以用于使HMSC疗法能够进行心肌梗塞,并为干细胞生物学提供一种工具。

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