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The effects of mechanical loading on mesenchymal stem cell differentiation and matrix production.

机译:机械负荷对间充质干细胞分化和基质产生的影响。

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Mesenchymal stem cells or stromal cells (MSCs) have the potential to be used therapeutically in tissue engineering and regenerative medicine to replace or restore the function of damaged tissues. Therefore, considerable effort has been ongoing in the research community to optimize culture conditions for predifferentiation of MSCs. All mesenchymal tissues are subjected to mechanical forces in vivo and all fully differentiated mesenchymal lineage cells respond to mechanical stimulation in vivo and in vitro. Therefore, it is not surprising that MSCs are highly mechanosensitive. We present a summary of current methods of mechanical stimulation of MSCs and an overview of the outcomes of the different mechanical culture techniques tested. Tissue engineers and stem cell researchers should be able to harness this mechanosensitivity to modulate MSC differentiation and matrix production; however, more research needs to be undertaken to understand the complex interactions between the mechanosensitive and biochemically stimulated differentiation pathways.
机译:间充质干细胞或基质细胞(MSC)可能在组织工程和再生医学中用于治疗,以替代或恢复受损组织的功能。因此,在研究界已经进行了相当大的努力以优化用于MSCs预分化的培养条件。所有的间充质组织在体内都受到机械力,所有完全分化的间充质谱系细胞都在体内和体外对机械刺激产生反应。因此,MSC具有高度机械敏感性也就不足为奇了。我们提供了对MSC进行机械刺激的当前方法的摘要,并概述了所测试的不同机械培养技术的结果。组织工程师和干细胞研究人员应该能够利用这种机械敏感性来调节MSC的分化和基质的产生。然而,需要进行更多的研究以了解机械敏感性和生物化学刺激的分化途径之间的复杂相互作用。

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