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首页> 外文期刊>Journal of Biomechanics >Musculoskeletal mechanobiology: interpretation by external force and engineered substratum.
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Musculoskeletal mechanobiology: interpretation by external force and engineered substratum.

机译:肌肉骨骼力学:通过外力和工程基质进行解释。

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Mechanobiology aims to discover how the mechanical environment affects the biological activity of cells and how cells' ability to sense these mechanical cues is converted into elicited cellular responses. Musculoskeletal mechanobiology is of particular interest given the high mechanical loads that musculoskeletal tissues experience on a daily basis. How do cells within these mechanically active tissues interpret external loads imposed on their extracellular environment, and, how are cell-substrate interactions converted into biochemical signals? This review outlines many of the main mechanotransduction mechanisms known to date, and describes recent literature examining effects of both external forces and cell-substrate interactions on musculoskeletal cells. Whether via application of external forces and/or cell-substrate interactions, our understanding and regulation of musculoskeletal mechanobiology can benefit by expanding upon traditional models, and shedding new light through novel investigative approaches. Current and future work in this field is focused on identifying specific forces, stresses, and strains at the cellular and tissue level through both experimental and computational approaches, and analyzing the role of specific proteins through fluorescence-based investigations and knockdown models.
机译:力学生物学旨在发现机械环境如何影响细胞的生物学活性,以及​​细胞如何感知这些机械提示的能力如何转化为引发的细胞反应。鉴于肌肉骨骼组织每天都会承受很高的机械负荷,因此肌肉骨骼力学生物学特别受关注。这些机械活性组织中的细胞如何解释施加于其细胞外环境的外部负荷,以及细胞与底物的相互作用如何转化为生化信号?这篇综述概述了迄今为止已知的许多主要机械转导机制,并描述了研究外力和细胞-底物相互作用对肌肉骨骼细胞的影响的最新文献。无论是通过施加外力和/或细胞-底物相互作用,我们对肌肉骨骼力学生物学的理解和调节都可以通过扩展传统模型并通过新颖的研究方法摆脱困境而受益。该领域的当前和未来工作着重于通过实验和计算方法来识别细胞和组织水平上的特定作用力,应力和应变,并通过基于荧光的研究和敲除模型来分析特定蛋白质的作用。

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