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Mechanical compression and hydrostatic pressure induce reversible changes in actin cytoskeletal organisation in chondrocytes in agarose

机译:机械压缩和静水压力诱导琼脂糖软骨细胞中肌动蛋白细胞骨架组织的可逆变化

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In numerous cell types, the cytoskeleton has been widely implicated in mechanotransduction pathways involving stretch-activated ion channels, integrins and deformation of intracellular organelles. Studies have also demonstrated that the cytoskeleton can undergo remodelling in response to mechanical stimuli such as tensile strain or fluid flow. In articular chondrocytes, the mechanotransduction pathways are complex, inter-related and as yet, poorly understood. Furthermore, little is known of how the chondrocyte cytoskeleton responds to physiological mechanical loading. This study utilises the well-characterised chondrocyte-agarose model and an established confocal image-analysis technique to demonstrate that both static and cyclic, compressive strain and hydrostatic pressure all induce remodelling of actin microfilaments. This remodelling was characterised by a change from a uniform to a more punctate distribution of cortical actin around the cell periphery. For some loading regimes, this remodelling was reversed over a subsequent I h unloaded period. This reversible remodelling of actin cytoskeleton may therefore represent a mechanism through which the chondrocyte alters its mechanical properties and mechanosensitivity in response to physiological mechanical loading. (c) 2005 Elsevier Ltd. All rights reserved.
机译:在许多细胞类型中,细胞骨架已广泛涉及牵拉激活的离子通道,整联蛋白和细胞内细胞器变形的机械转导途径。研究还表明,细胞骨架可以响应机械刺激(例如拉伸应变或流体流动)而发生重塑。在关节软骨细胞中,机械转导途径是复杂的,相互关联的,并且至今知之甚少。此外,关于软骨细胞的细胞骨架如何响应生理机械负荷还知之甚少。这项研究利用充分表征的软骨细胞-琼脂糖模型和建立的共聚焦图像分析技术来证明静态和循环,压缩应变和静水压力都可以诱导肌动蛋白微丝的重塑。这种重塑的特征是皮质肌动蛋白在细胞周围的分布从均匀分布向点状分布转变。对于某些加载方式,此重塑在随后的I h卸载期间被逆转。肌动蛋白细胞骨架的这种可逆重塑因此可以代表软骨细胞响应生理机械负荷而改变其机械性质和机械敏感性的机制。 (c)2005 Elsevier Ltd.保留所有权利。

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