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A novel in vitro model system for smooth muscle differentiation from human embryonic stem cell-derived mesenchymal cells

机译:从人胚胎干细胞来源的间充质细胞平滑肌分化的新型体外模型系统

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摘要

The objective of this study was to develop a novel in vitro model for smooth muscle cell (SMC) differentiation from human embryonic stem cell-derived mesenchymal cells (hES-MCs). We found that hES-MCs were differentiated to SMCs by transforming growth factor-beta (TGF-beta) in a dose- and time-dependent manner as demonstrated by the expression of SMC-specific genes smooth muscle alpha-actin, cal-ponin, and smooth muscle myosin heavy chain. Under normal growth conditions, however, the differentiation capacity of hES-MCs was very limited. hES-MC-derived SMCs had an elongated and spindle-shaped morphology and contracted in response to the induction of carbachol and KC1. KCl-induced calcium transient was also evident in these cells. Compared with the parental cells, TGF-beta-treated hES-MCs sustained the endothelial tube formation for a longer time due to the sustained SMC phenotype. Mechanistically, TGF-beta-induced differentiation was both Smad- and serum response factor/myocardin dependent. TGF-beta regulated myocardin expression via multiple signaling pathways including Smad2/3, p38 MAPK, and PI3K. Importantly, we found that a low level of myocardin was present in mesoderm prior to SMC lineage determination, and a high level of myocardin was not induced until the differentiation process was initiated. Taken together, our study characterized a novel SMC differentiation model that can be used for studying human SMC differentiation from mesoderm during vascular development.
机译:这项研究的目的是开发一种新的体外模型,用于从人胚胎干细胞衍生的间充质细胞(hES-MC)分化出平滑肌细胞(SMC)。我们发现hES-MCs通过以剂量和时间依赖性的方式转化生长因子-β(TGF-β)分化为SMC,如SMC特异性基因平滑肌α-肌动蛋白,钙网蛋白,和平滑肌肌球蛋白重链。然而,在正常生长条件下,hES-MCs的分化能力非常有限。 hES-MC衍生的SMC具有细长的纺锤形形态,并在对卡巴胆碱和KC1的诱导下收缩。在这些细胞中,氯化钾诱导的钙瞬变也很明显。与亲代细胞相比,由于持续的SMC表型,TGF-β处理的hES-MCs维持内皮管形成的时间更长。从机制上讲,TGF-β诱导的分化既依赖于Smad,也依赖于血清反应因子/心肌素。 TGF-β通过多种信号通路(包括Smad2 / 3,p38 MAPK和PI3K)调节心肌蛋白的表达。重要的是,我们发现在确定SMC谱系之前中胚层中存在低水平的心肌素,直到开始分化过程后才诱导高水平的心肌素。综上所述,我们的研究表征了一种新颖的SMC分化模型,该模型可用于研究人SMC在血管发育过程中从中胚层分化。

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