首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Matrix stiffness regulation of integrin-mediated mechanotransduction during osteogenic differentiation of human mesenchymal stem cells.
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Matrix stiffness regulation of integrin-mediated mechanotransduction during osteogenic differentiation of human mesenchymal stem cells.

机译:人间充质干细胞成骨分化过程中整合素介导的机械转导的基质硬度调节。

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Mesenchymal stem cells (MSCs) cultured on extracellular matrices with different stiffness have been shown to possess diverse lineage commitment owing to the extracellular mechanical stimuli sensed by the cells. The aim of this study was to further delineate how matrix stiffness affects intracellular signaling through the mechanotransducers Rho kinase (ROCK) and focal adhesion kinase (FAK) and subsequently regulates the osteogenic phenotype of MSCs. MSCs were cultured in osteogenic medium on tunable polyacrylamide hydrogels coated with type I collagen with elasticities corresponding to Young's modulus of 7.0 +/- 1.2 and 42.1 +/- 3.2 kPa. Osteogenic differentiation was increased on stiffer matrices, as evident by type I collagen, osteocalcin, and Runx2 gene expressions and alizarin red S staining for mineralization. Western blot analysis demonstrated an increase in kinase activities of ROCK, FAK, and ERK1/2 on stiffer matrices. Inhibition of FAK, an important mediator of osteogenic differentiation, and inhibition of ROCK, a known mechanotransducer of matrix stiffness during osteogenesis, resulted in decreased expression of osteogenic markers during osteogenic induction. In addition, FAK affects osteogenic differentiation through ERK1/2, whereas ROCK regulates both FAK and ERK1/2. Furthermore, alpha(2)-integrin was upregulated on stiffer matrices during osteogenic induction, and its knockdown by siRNA downregulated the osteogenic phenotype through ROCK, FAK, and ERK1/2. Taken together, our results provide evidence that the matrix rigidity affects the osteogenic outcome of MSCs through mechanotransduction events that are mediated by alpha(2)-integrin.
机译:由于细胞感知到的细胞外机械刺激,在具有不同刚度的细胞外基质上培养的间充质干细胞(MSC)已显示具有多种谱系承诺。这项研究的目的是进一步描述基质刚度如何通过机械转导子Rho激酶(ROCK)和粘着斑激酶(FAK)影响细胞内信号传导,并随后调节MSC的成骨表型。在成骨培养基中在涂有I型胶原蛋白的可调聚丙烯酰胺水凝胶上培养MSC,其弹性分别对应于7.0 +/- 1.2和42.1 +/- 3.2 kPa的杨氏模量。 I型胶原蛋白,骨钙素和Runx2基因表达以及用于矿化的茜素红S染色证明,在较硬的基质上成骨分化增加。蛋白质印迹分析表明,在较硬的基质上,ROCK,FAK和ERK1 / 2的激酶活性增加。抑制FAK是成骨分化的重要介体,抑制ROCK是成骨过程中基质刚度的已知机械转导子,导致成骨诱导过程中成骨标志物的表达降低。另外,FAK通过ERK1 / 2影响成骨分化,而ROCK调节FAK和ERK1 / 2。此外,在成骨诱导过程中,α(2)-整合素在较硬的基质上被上调,而其通过siRNA的敲低通过ROCK,FAK和ERK1 / 2下调了成骨表型。综上所述,我们的结果提供了证据,表明基质的刚性会通过由alpha(2)-整合素介导的机械转导事件影响MSC的成骨结果。

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