XIST/miR‐376c‐5p/OPN axis modulates the influence of proinflammatory M1 macrophages on osteoarthritis chondrocyte apoptosis

促炎细胞因子 西斯特 基因敲除 软骨细胞 骨桥蛋白 细胞生物学 细胞凋亡 巨噬细胞 软骨 炎症 免疫学 生物 癌症研究 化学 体外 生物化学 解剖 X-失活 基因 X染色体
作者
Lei Li,Guohua Lv,Bing Wang,Lei Kuang
出处
期刊:Journal of Cellular Physiology [Wiley]
卷期号:235 (1): 281-293 被引量:63
标识
DOI:10.1002/jcp.28968
摘要

Abstract The inflammatory microenvironment in the joints is one of the critical issues during osteoarthritis (OA) and also the main factor that may aggravate symptoms. Under inflammatory microenvironment, M1 macrophages are activated and produce large numbers of proinflammatory mediators, leading to the production of degradative enzymes, the disturbance of chondrocyte apoptosis and cartilage catabolic processes, and finally the deterioration of OA. In the present study, we reveal that the overexpression of osteopontin (OPN), a cytokine, and a matrix protein involved in arthritis and chondrocyte apoptosis in OA, could exacerbate the inflammatory microenvironment in OA via promoting the production of proinflammation cytokines and the levels of degradative enzymes in M1 macrophages, therefore, enhancing the cytotoxicity of M1 macrophage on chondrocytes. XIST expression significantly increases in OA tissue specimens. XIST serves as a competing endogenous RNA for miR‐376c‐5p to compete with OPN for miR‐376c‐5p binding, thus counteracting miR‐376c‐5p‐mediated OPN suppression. XIST knockdown could improve the inflammatory microenvironment in OA via acting on M1 macrophages, subsequently affecting the apoptosis of cocultured chondrocytes. miR‐376c‐5p inhibition exerts an opposing effect on M1 macrophages and cocultured chondrocytes, as well as significantly reverses the effect of XIST knockdown. As a further confirmation, XIST and OPN mRNA expression significantly increased in OA tissues and was positively correlated in tissue samples. In summary, we provide a novel mechanism of macrophages and the inflammatory microenvironment affecting chondrocyte apoptosis. XIST and OPN might be potential targets for OA treatment, which needs further in vivo experimental confirmation.

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