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首页> 外文期刊>Journal of applied physiology >Cyclic strain induces mouse embryonic stem cell differentiation into vascular smooth muscle cells by activating PDGF receptor beta
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Cyclic strain induces mouse embryonic stem cell differentiation into vascular smooth muscle cells by activating PDGF receptor beta

机译:循环应变通过激活PDGF受体β诱导小鼠胚胎干细胞分化为血管平滑肌细胞

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Embryonic stem (ES) cells are exposed to fluid-mechanical forces, such as cyclic strain and shear stress, during the process of embryonic development but much remains to be elucidated concerning the role of fluid- mechanical forces in ES cell differentiation. Here, we show that cyclic strain induces vascular smooth muscle cell (VSMC) differentiation in murine ES cells. Flk-1-positive (Flk-1(+)) ES cells seeded on flexible silicone membranes were subjected to controlled levels of cyclic strain and examined for changes in cell proliferation and expression of various cell lineage markers. When exposed to cyclic strain (4-12% strain, 1 Hz, 24 h), the Flk-1(+) ES cells significantly increased in cell number and became oriented perpendicular to the direction of strain. There were dose-dependent increases in the VSMC markers smooth muscle alpha-actin and smooth muscle-myosin heavy chain at both the protein and gene expression level in response to cyclic strain, whereas expression of the vascular endothelial cell marker Flk-1 decreased, and there were no changes in the other endothelial cell markers (Flt-1, VE-cadherin, and platelet endothelial cell adhesion molecule 1), the blood cell marker CD3, or the epithelial marker keratin. The PDGF receptor beta(PDGFR beta) kinase inhibitor AG-1296 completely blocked the cyclic strain-induced increase in cell number and VSMC marker expression. Cyclic strain immediately caused phosphorylation of PDGFR beta in a dose-dependent manner, but neutralizing antibody against PDGF-BB did not block the PDGFR beta phosphorylation. These results suggest that cyclic strain activates PDGFR beta in a ligand-independent manner and that the activation plays a critical role in VSMC differentiation from Flk-1(+) ES cells.
机译:胚胎干(ES)细胞在胚胎发育过程中暴露于流体机械力,例如循环应变和剪切应力,但关于流体机械力在ES细胞分化中的作用还有很多待阐明。在这里,我们显示循环应变诱导小鼠ES细胞中的血管平滑肌细胞(VSMC)分化。 Flk-1阳性(Flk-1(+))ES细胞播种在柔性硅胶膜上,使其受到受控水平的循环应变,并检查细胞增殖和各种细胞谱系标记物表达的变化。当暴露于循环应变(4-12%应变,1 Hz,24 h)时,Flk-1(+)ES细胞的细胞数量显着增加,并垂直于应变方向定向。 VSMC标志物平滑肌α-肌动蛋白和平滑肌-肌球蛋白重链在蛋白质和基因表达水平上均呈剂量依赖性增加,以响应循环应变,而血管内皮细胞标志物Flk-1的表达下降,并且其他内皮细胞标记(Flt-1,VE-钙粘着蛋白和血小板内皮细胞粘附分子1),血细胞标记CD3或上皮标记角蛋白没有变化。 PDGF受体beta(PDGFR beta)激酶抑制剂AG-1296完全阻断了循环菌株诱导的细胞数量和VSMC标记物表达的增加。循环应变立即以剂量依赖的方式引起PDGFRβ的磷酸化,但抗PDGF-BB的中和抗体并未阻断PDGFRβ的磷酸化。这些结果表明,循环应变以不依赖配体的方式激活PDGFRβ,并且该激活在VSMC从Flk-1(+)ES细胞分化中起关键作用。

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