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Mechanotransduction in Musculoskeletal Tissue Regeneration: Effects of Fluid Flow, Loading, and Cellular-Molecular Pathways

机译:肌肉骨骼组织再生的机械调节:流体流动,载荷和细胞分子途径的影响

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摘要

While mechanotransductive signal is proven essential for tissue regeneration, it is critical to determine specific cellular responses to such mechanical signals and the underlying mechanism. Dynamic fluid flow induced by mechanical loading has been shown to have the potential to regulate bone adaptation and mitigate bone loss. Mechanotransduction pathways are of great interests in elucidating how mechanical signals produce such observed effects, including reduced bone loss, increased bone formation, and osteogenic cell differentiation. The objective of this review is to develop a molecular understanding of the mechanotransduction processes in tissue regeneration, which may provide new insights into bone physiology. We discussed the potential for mechanical loading to induce dynamic bone fluid flow, regulation of bone adaptation, and optimization of stimulation parameters in various loading regimens. The potential for mechanical loading to regulate microcirculation is also discussed. Particularly, attention is allotted to the potential cellular and molecular pathways in response to loading, including osteocytes associated with Wnt signaling, elevation of marrow stem cells, and suppression of adipotic cells, as well as the roles of LRP5 and microRNA. These data and discussions highlight the complex yet highly coordinated process of mechanotransduction in bone tissue regeneration.
机译:虽然验证机电调谐信号对于组织再生是必不可少的,但对这种机械信号和下面机构确定特定的细胞响应至关重要。通过机械负载引起的动态流体流动已经显示有可能调节骨骼适应和减轻骨质损失的可能性。机械手术途径对于阐明机械信号如何产生这种观察到的效果,包括降低的骨损失,增加的骨形成和成骨细胞分化。本综述的目的是制定对组织再生中机械手术过程的分子理解,这可能会对骨生理学提供新的见解。我们讨论了机械负载诱导动态骨流体流动,骨适应调节的潜力,以及各种装载方案中的刺激参数的优化。还讨论了机械负载来调节微循环的可能性。特别地,响应于加载,包括与Wnt信号传导,骨髓升高和脂肪细胞的抑制以及LRP5和MicroRNA的抑制相关的骨细胞,包括骨细胞的潜在细胞和分子途径分配给潜在的细胞和分子途径,以及LRP5和MicroRNA的角色。这些数据和讨论突出了骨组织再生中的机电常剧的复杂且高度协调过程。

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