Mechanisms of joint destruction in rheumatoid arthritis — immune cell–fibroblast–bone interactions

免疫系统 兰克尔 骨免疫学 医学 骨吸收 炎症 骨细胞 类风湿性关节炎 免疫学 软骨 关节炎 破骨细胞 成纤维细胞 癌症研究 细胞生物学 受体 生物 内科学 细胞培养 解剖 激活剂(遗传学) 遗传学
作者
Noriko Komatsu,Hiroshi Takayanagi
出处
期刊:Nature Reviews Rheumatology [Nature Portfolio]
卷期号:18 (7): 415-429 被引量:460
标识
DOI:10.1038/s41584-022-00793-5
摘要

Rheumatoid arthritis (RA) is characterized by inflammation and destruction of bone and cartilage in affected joints. Autoimmune responses lead to increased osteoclastic bone resorption and impaired osteoblastic bone formation, the imbalance of which underlies bone loss in RA, which includes bone erosion, periarticular bone loss and systemic osteoporosis. The crucial role of osteoclasts in bone erosion has been demonstrated in basic studies as well as by the clinical efficacy of antibodies targeting RANKL, an important mediator of osteoclastogenesis. Synovial fibroblasts contribute to joint damage by stimulating both pro-inflammatory and tissue-destructive pathways. New technologies, such as single-cell RNA sequencing, have revealed the heterogeneity of synovial fibroblasts and of immune cells including T cells and macrophages. To understand the mechanisms of bone damage in RA, it is important to clarify how the immune system promotes the tissue-destructive properties of synovial fibroblasts and influences bone cells. The interaction between immune cells and fibroblasts underlies the imbalance between regulatory T cells and T helper 17 cells, which in turn exacerbates not only inflammation but also bone destruction, mainly by promoting RANKL expression on synovial fibroblasts. An improved understanding of the immune mechanisms underlying joint damage and the interplay between the immune system, synovial fibroblasts and bone will contribute to the identification of novel therapeutic targets in RA.
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