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首页> 外文期刊>Surgery >Cyclic strain induces vascular smooth muscle cell differentiation from murine embryonic mesenchymal progenitor cells.
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Cyclic strain induces vascular smooth muscle cell differentiation from murine embryonic mesenchymal progenitor cells.

机译:循环应变诱导小鼠胚胎间充质祖细胞分化为血管平滑肌细胞。

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BACKGROUND: Hemodynamic forces play a crucial role in regulating vascular cell phenotype. However, the underlying molecular mechanisms are largely unknown. The objective of this study was to test our hypothesis that cyclic strain could affect smooth muscle cell (SMC) differentiation. METHODS: A murine embryonic mesenchymal progenitor cell line (C3H/10T1/2) was cultured with or without cyclic strain for 6 days. Changes in cell morphology were studied with fluorescence dye Calcein-AM staining. Expression of specific SMC markers, smooth muscle specific alpha-actin (alpha-SMA), and smooth muscle myosin heavy chain (SMMHC), was determined by real-time polymerase chain reaction (PCR) and Western blot. Transforming growth factor- beta (TGF-beta) was used as a positive control. RESULTS: With cyclic strain, CH3/10T1/2 cells demonstrated spindle-shaped morphology and parallel alignment. Cells exposed to cyclic strain illustrated significantly increased mRNA levels of alpha-SMA and SMMHC by 3- and 2-fold, respectively, compared with static cells (P<.05). In addition, cells cultured under cyclic strain with TGF-beta (2 ng/ml) supplementation demonstrated increased mRNA levels of alpha-SMA and SMMHC by 10- and 2-fold, respectively, compared with static cells (P<.05). Furthermore, protein levels of alpha-SMA and SMMHC were also significantly increased by more than 3-fold in cyclic strain-treated cells compared with static cultures (P<.05). TGF-beta synergistically enhanced the effect of cyclic strain on alpha-SMA mRNA expression in CH3/10T1/2 cells. CONCLUSIONS: This is the first study to demonstrate that cyclic strain significantly induces expression of two of the most important SMC markers in a murine embryonic mesenchymal progenitor cell line. Cyclic strain and TGF-beta have a synergistic effect on alpha-SMA mRNA expression.
机译:背景:血流动力学力在调节血管细胞表型中起着至关重要的作用。但是,基本的分子机制尚不清楚。这项研究的目的是检验我们的假设,即循环应变可能影响平滑肌细胞(SMC)分化。方法:在有或没有循环毒株的情况下,将鼠胚胎间充质祖细胞系(C3H / 10T1 / 2)培养6天。用荧光染料钙黄绿素-AM染色研究细胞形态的变化。通过实时聚合酶链反应(PCR)和Western印迹法确定特异性SMC标记,平滑肌特异性α-肌动蛋白(alpha-SMA)和平滑肌肌球蛋白重链(SMMHC)的表达。转化生长因子-β(TGF-β)用作阳性对照。结果:在循环应变下,CH3 / 10T1 / 2细胞表现出纺锤形的形态和平行排列。与静态细胞相比,暴露于周期性应变的细胞表明,α-SMA和SMMHC的mRNA水平分别显着提高了3倍和2倍(P <0.05)。此外,与TGF-β(2 ng / ml)补充在环状菌株下培养的细胞,与静态细胞相比,α-SMA和SMMHC的mRNA水平分别提高了10倍和2倍(P <0.05)。此外,与静态培养相比,在经循环应变处理的细胞中,α-SMA和SMMHC的蛋白质水平也显着提高了3倍以上(P <0.05)。 TGF-β协同增强了循环应变对CH3 / 10T1 / 2细胞中α-SMAmRNA表达的影响。结论:这是第一项证明循环应变显着诱导鼠胚间充质祖细胞系中两个最重要的SMC标记物表达的研究。环状菌株和TGF-β对α-SMAmRNA表达具有协同作用。

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