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Calcium signaling of chondrocytes under osmotic stress and mechanical stimulation

机译:渗透压和机械刺激下软骨细胞的钙信号传导

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Chondrocytes play a critical role in cartilage remodeling by mediating the biosynthesis, organization, and modification of extracellular matrix (ECM). They are highly sensitive to the surrounding mechanical and osmotic environments. One of the earliest responses of chondrocytes to stimuli is a transient oscillation in intracellular Ca2+ concentration ([Ca2+]i). The major objective of this study was to investigate and compare the Ca2+ signaling of chondrocytes, including both primary cells and chondrogenic cell line, under mechanical stimulus and osmotic stress. The roles of seven essential pathways in Ca2+ signaling were further examined. Cells were stained with calcium indicator and monitored under confocal microscopy. The results suggested that i) the two types of cells have different calcium signaling mechanisms; ii) mechanical stimulation and osmotic stress employ different mechanisms to initiate calcium responses; iii) osmotic stress could be the major regulation mechanism on the metabolisms of chondrocytes in daily activities.
机译:软骨细胞通过介导细胞外基质(ECM)的生物合成,组织和修饰在软骨重塑中起关键作用。它们对周围的机械和渗透环境高度敏感。软骨细胞对刺激的最早反应之一是细胞内Ca 2 + 浓度([Ca 2 + ] i)的短暂振荡。本研究的主要目的是研究和比较在机械刺激和渗透胁迫下软骨细胞(包括原代细胞和软骨细胞系)的Ca 2 + 信号传导。进一步研究了七个基本途径在Ca 2 + 信号传导中的作用。细胞用钙指示剂染色并在共聚焦显微镜下监测。结果表明:i)两种类型的细胞具有不同的钙信号传导机制; ii)机械刺激和渗透压采用不同的机制引发钙反应; iii)渗透应激可能是日常活动中软骨细胞代谢的主要调控机制。

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