软骨细胞
细胞生物学
机械敏感通道
细胞外基质
机械转化
生物物理学
整合素
机械感受器
化学
信号转导
受体
细胞
软骨
离子通道
解剖
生物
神经科学
生物化学
感觉系统
作者
Ali Mobasheri,Stuart Carter,Pablo Martín‐Vasallo,Mehdi Shakibaei
标识
DOI:10.1006/cbir.2001.0826
摘要
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.
科研通智能强力驱动
Strongly Powered by AbleSci AI