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首页> 外文期刊>Biomechanics and modeling in mechanobiology >Different effects of intermittent and continuous fluid shear stresses on osteogenic differentiation of human mesenchymal stem cells
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Different effects of intermittent and continuous fluid shear stresses on osteogenic differentiation of human mesenchymal stem cells

机译:间歇和连续流体剪切应力对人间充质干细胞成骨分化的不同影响

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摘要

A reasonable mechanical microenvironment similar to the bone microenvironment in vivo is critical to the formation of engineering bone tissues. As fluid shear stress (FSS) produced by perfusion culture system can lead to the osteogenic differentiation of human mesenchymal stem cells (hMSCs), it is widely used in studies of bone tissue engineering. However, effects of FSS on the differentiation of hMSCs largely depend on the FSS application manner. It is interesting how different FSS application manners influence the differentiation of hMSCs. In this study, we examined the effects of intermittent FSS and continuous FSS on the osteogenic differentiation of hMSCs. The phosphorylation level of ERK1/2 and FAK is measured to investigate the effects of different FSS application manners on the activation of signaling molecules. The results showed that intermittent FSS could promote the osteogenic differentiation of hMSCs. The expression level of osteogenic genes and the alkaline phosphatase (ALP) activity in cells under intermittent FSS application were significantly higher than those in cells under continuous FSS application. Moreover, intermittent FSS up-regulated the activity of ERK1/2 and FAK. Our study demonstrated that intermittent FSS is more effective to induce the osteogenic differentiation of hMSCs than continuous FSS.
机译:类似于体内骨骼微环境的合理机械微环境对于工程骨组织的形成至关重要。由于灌注培养系统产生的流体剪切应力(FSS)可以导致人间充质干细胞(hMSCs)的成骨分化,因此被广泛用于骨组织工程研究中。然而,FSS对hMSCs分化的影响很大程度上取决于FSS的应用方式。有趣的是,不同的FSS应用方式如何影响hMSC的分化。在这项研究中,我们检查了间歇性FSS和连续FSS对hMSCs成骨分化的影响。测量ERK1 / 2和FAK的磷酸化水平,以研究不同的FSS施用方式对信号分子活化的影响。结果表明,间歇性FSS可以促进hMSC的成骨分化。间歇FSS施用的细胞中成骨基因的表达水平和碱性磷酸酶(ALP)活性明显高于连续FSS施用的细胞。此外,间歇性FSS上调ERK1 / 2和FAK的活性。我们的研究表明,间歇性FSS比连续FSS更有效地诱导hMSC的成骨分化。

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