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[软骨/软骨细胞研究与骨关节炎。骨关节炎发展的力学生物学。]

[Cartilage/chondrocyte research and osteoarthritis. Mechanobiology for development of osteoarthritis.].

作者信息

Ogawa Hiroyasu, Akiyama Haruhiko

机构信息

Department of Orthopaedic Surgery, Gifu University School of Medicine, Japan.

出版信息

Clin Calcium. 2018;28(6):789-795.

Abstract

Articular cartilage is exquisitely sensitive to their mechanical environment, and mechanical loading may be the most important external factor regulating cartilage metabolism. Mechanical loading regulates chondrocyte activity, and pathological excessive loading leads to abnormal mechanotransduction, which in turn induces cartilage degradation. Several studies report that moderate levels of exercise exerts beneficial effects, such as improvements in pain and physical function, and also mitigates joint destruction through the down-regulation of the expression of matrix proteases. Calcium signaling is an initial step in chondrocyte mechanotransduction that has been linked to many cellular processes, and recent studies found that calcium ion channels distinctively mechanically activated by physiological or pathological mechanical loading through transient receptor potential vanilloid 4(TRPV4)or Piezo ion channels. We review here the recent progress on mechanotransduction of chondocytes, highlighting the calcium ion channels.

摘要

关节软骨对其力学环境极为敏感,机械负荷可能是调节软骨代谢的最重要外部因素。机械负荷调节软骨细胞活性,病理性过度负荷会导致异常的机械转导,进而引发软骨降解。多项研究报告称,适度运动具有有益作用,如改善疼痛和身体功能,还可通过下调基质蛋白酶的表达减轻关节破坏。钙信号传导是软骨细胞机械转导的起始步骤,与许多细胞过程相关联,最近的研究发现,钙离子通道可通过瞬时受体电位香草酸受体4(TRPV4)或Piezo离子通道被生理或病理机械负荷特异性地机械激活。我们在此综述软骨细胞机械转导的最新进展,重点介绍钙离子通道。

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