衰老
细胞生物学
软骨细胞
骨关节炎
软骨
旁分泌信号
表型
巨噬细胞极化
化学
成纤维细胞
巨噬细胞
细胞
滑膜
生物
免疫学
病理
电池类型
卢米坎
真皮成纤维细胞
滑膜关节
炎症
分泌物
关节炎
小干扰RNA
细胞因子
转染
细胞内
细胞迁移
作者
Muhai Deng,Yunsheng Jiang,Zhiyu Chen,K. Chen,Na Cao,Z. Huang,Zhengxue Quan,Cheng Chen
标识
DOI:10.1002/advs.202518056
摘要
The incidence of osteoarthritis (OA) is strongly correlated with aging. It has been shown that the accumulation of senescent cells in the synovium precedes chondrocyte senescence and cartilage degradation, suggesting that synovial cell senescence plays a key role in OA pathogenesis. This study aimed to investigate the mechanisms underlying synovial cell senescence and its influence on intercellular communication within the joint. Using multiplex immunofluorescence, gene regulatory network reconstruction, and single-cell RNA sequencing analyses, we identified senescent cells and characterized the senescence-associated secretory phenotype in the synovium. A series of in vivo and in vitro functional experiments is conducted to elucidate the mechanisms of fibroblast senescence and its effects on macrophages and chondrocytes. We found that synovial intimal fibroblasts (SIF) display more marked premature senescence compared to other synovial cell types. A specific senescent subpopulation within SIF is identified, and we demonstrated that the transcription factors EGR1 and ATF3 regulate senescence-related pathways in these cells. Furthermore, we showed that senescent SIF promote M1 macrophage polarization and cartilage degeneration through paracrine secretion of ANGPTL4. Additionally, senescent SIF may facilitate OA progression through direct cell-cell contact with macrophages.
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