Kurpinski Kyle, Chu Julia, Wang Daojing, Li Song
Cell Mol Bioeng. 2009 Dec;2(4):606-614. doi: 10.1007/s12195-009-0090-6. Epub 2009 Oct 24.
Mesenchymal stem cells (MSCs) are a potential source of smooth muscle cells (SMCs) for constructing tissue-engineered vascular grafts. However, the details of how specific combinations of vascular microenvironmental factors regulate MSCs are not well understood. Previous studies have suggested that both mechanical stimulation with uniaxial cyclic strain and chemical stimulation with transforming growth factor-beta1 (TGF-beta1) can induce smooth muscle markers in MSCs. In this study, we investigated the combined effects of uniaxial cyclic strain and TGF-beta1 stimulation on MSCs. By using a proteomic analysis, we found differential regulation of several proteins and genes, such as the up-regulation of TGF-beta1-induced protein ig-h3 (BGH3) protein levels by TGF-beta1 and up-regulation of calponin 3 protein level by cyclic strain. At the gene expression level, BGH3 was induced by TGF-beta1, but calponin 3 was not significantly regulated by mechanical strain or TGF-beta1, which was in contrast to the synergistic up-regulation of calponin 1 gene expression by cyclic strain and TGF-beta1. Further experiments with cycloheximide treatment suggested that the up-regulation of calponin 3 by cyclic strain was at post-transcriptional level. The results in this study suggest that both mechanical stimulation and TGF-beta1 signaling play unique and important roles in the regulation of MSCs at both transcriptional and post-transcriptional levels, and that a precise combination of microenvironmental cues may promote MSC differentiation.
间充质干细胞(MSCs)是构建组织工程血管移植物的平滑肌细胞(SMCs)的潜在来源。然而,血管微环境因素的特定组合如何调节MSCs的具体细节尚不清楚。先前的研究表明,单轴循环应变的机械刺激和转化生长因子-β1(TGF-β1)的化学刺激均可诱导MSCs中的平滑肌标志物。在本研究中,我们研究了单轴循环应变和TGF-β1刺激对MSCs的联合作用。通过蛋白质组学分析,我们发现了几种蛋白质和基因的差异调节,例如TGF-β1诱导的TGF-β1诱导蛋白ig-h3(BGH3)蛋白水平上调以及循环应变导致的钙调蛋白3蛋白水平上调。在基因表达水平上,BGH3由TGF-β1诱导,但钙调蛋白3不受机械应变或TGF-β1的显著调节,这与循环应变和TGF-β1对钙调蛋白1基因表达的协同上调相反。用放线菌酮处理的进一步实验表明,循环应变对钙调蛋白3的上调作用发生在转录后水平。本研究结果表明,机械刺激和TGF-β1信号传导在转录和转录后水平上对MSCs的调节中均发挥独特而重要的作用,并且微环境信号的精确组合可能促进MSCs的分化。