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整合素与牵张激活离子通道;关节软骨细胞中功能性细胞表面机械感受器的假定组成部分。

Integrins and stretch activated ion channels; putative components of functional cell surface mechanoreceptors in articular chondrocytes.

作者信息

Mobasheri A, Carter S D, Martín-Vasallo P, Shakibaei M

机构信息

Connective Tissue Research Group, Faculty of Veterinary Science, University of Liverpool, Liverpool, United Kingdom.

出版信息

Cell Biol Int. 2002;26(1):1-18. doi: 10.1006/cbir.2001.0826.

Abstract

Perception of mechanical signals and the biological responses to such stimuli are fundamental properties of load bearing articular cartilage in diarthrodial joints. Chondrocytes utilize mechanical signals to synthesize an extracellular matrix capable of withstanding high loads and shear stresses. Recent studies have shown that chondrocytes undergo changes in shape and volume in a coordinated manner with load induced deformation of the matrix. These matrix changes, together with alterations in hydrostatic pressure, ionic and osmotic composition, interstitial fluid and streaming potentials are, in turn, perceived by chondrocytes. Chondrocyte responses to these stimuli are specific and well coordinated to bring about changes in gene expression, protein synthesis, matrix composition and ultimately biomechanical competence. In this hypothesis paper we propose a chondrocyte mechanoreceptor model incorporating key extracellular matrix macromolecules, integrins, mechanosensitive ion channels, the cytoskeleton and subcellular signal transduction pathways that maintain the chondrocyte phenotype, prevent chondrocyte apoptosis and regulate chondrocyte-specific gene expression.

摘要

对机械信号的感知以及对这种刺激的生物学反应是滑膜关节中负重关节软骨的基本特性。软骨细胞利用机械信号合成能够承受高负荷和剪切应力的细胞外基质。最近的研究表明,软骨细胞的形状和体积会随着基质的负荷诱导变形而以协调的方式发生变化。这些基质变化,连同静水压力、离子和渗透压组成、组织液和流动电位的改变,反过来又被软骨细胞感知。软骨细胞对这些刺激的反应是特定的且协调良好,从而导致基因表达、蛋白质合成、基质组成的变化,并最终影响生物力学能力。在这篇假说论文中,我们提出了一种软骨细胞机械感受器模型,该模型纳入了关键的细胞外基质大分子、整合素、机械敏感离子通道、细胞骨架和亚细胞信号转导途径,这些途径维持软骨细胞表型、防止软骨细胞凋亡并调节软骨细胞特异性基因表达。

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