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首页> 外文期刊>Stem Cell Research & Therapy >Enrichment differentiation of human induced pluripotent stem cells into sinoatrial node-like cells by combined modulation of BMP, FGF, and RA signaling pathways
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Enrichment differentiation of human induced pluripotent stem cells into sinoatrial node-like cells by combined modulation of BMP, FGF, and RA signaling pathways

机译:通过组合调制BMP,FGF和RA信号通路的组合调节将人诱导多能干细胞的富集分化为窦状物状细胞

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BACKGROUND:Biological pacemakers derived from pluripotent stem cell (PSC) have been considered as a potential therapeutic surrogate for sick sinus syndrome. So it is essential to develop highly efficient strategies for enrichment of sinoatrial node-like cells (SANLCs) as seed cells for biological pacemakers. It has been reported that BMP, FGF, and RA signaling pathways are involved in specification of different cardiomyocyte subtypes, pacemaker, ventricular, and atrial cells. We aimed to investigate whether combined modulation of BMP, FGF, and RA signaling pathways could enrich the differentiation of SANLC from human pluripotent stem cell (hiPSC).METHODS:During the differentiation process from human induced pluripotent stem cell to cardiomyocyte through small molecule-based temporal modulation of the Wnt signaling pathway, signaling of BMP, FGF, and RA was manipulated at cardiac mesoderm stage. qRT-PCR, immunofluorescence, flow cytometry, and whole cell patch clamp were used to identify the SANLC.RESULTS:qRT-PCR results showed that manipulating each one of bone morphogenetic protein (BMP), fibroblast growth factor (FGF), and retinoid acid (RA) signaling was effective for the upregulation of SANLC markers. Moreover, combined modulation of these three pathways displayed the best efficiency for the expression of SANLC markers, which was further confirmed at protein level using immunofluorescence and flow cytometry. Finally, the electrophysiological characteristics of upregulated SANLC were verified by patch clamp method.CONCLUSION:An efficient transgene-independent differentiation protocol for generating SANLC from hiPSC was developed, in which combined modulating BMP, FGF, and RA signaling at cardiac mesoderm stage generates SANLC at high efficiency. This may serve as a potential approach for biological pacemaker construction.
机译:背景:衍生自多能干细胞(PSC)的生物起步觉被认为是生病窦综合征的潜在治疗替代品。因此,必须为生物起搏器的种子细胞培养富集窦状细胞(SANLC)的高效策略。据报道,BMP,FGF和RA信号通路涉及不同心肌细胞亚型,起搏器,心室和心房细胞的规范。我们旨在研究BMP,FGF和RA信号传导途径的组合调节是否可以丰富SANLC的分化来自人类多能干细胞(HIPSC)。方法:在人类诱导多能干细胞通过小分子基于小分子的分化过程中的分化过程WNT信令途径的时间调制,BMP,FGF和RA的信号传导在心脏切片阶段进行操纵。使用QRT-PCR,免疫荧光,流式细胞术和全细胞膜夹鉴定SANLC.RESULTS:QRT-PCR结果表明,操纵骨形态发生蛋白(BMP),成纤维细胞生长因子(FGF)和类化酸的每一种(RA)信号传导对于SANLC标记的上调是有效的。此外,这三种途径的组合调节显示了SANLC标志物表达的最佳效率,其使用免疫荧光和流式细胞术在蛋白质水平下进一步证实。最后,通过膜夹法验证了上调SANLC的电生理学特性。结论:开发了用于从HIPSC产生SANLC的有效的转基因无关的分化方案,其中COLKIC Mesoderm阶段的组合调节BMP,FGF和RA信号产生SANLC高效率。这可以作为生物起搏器结构的潜在方法。

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