BACKGROUND: Meniscus degeneration contributes to knee arthritis progression, but the cellular and molecular mechanisms of meniscus aging remain poorly understood. We aimed to characterize age-related changes in the rat meniscus using single-cell RNA sequencing (scRNA-seq) and identify key pathogenic cell populations and pathways. METHODS: Meniscal tissues from young (12 weeks) and aged (24 months) rats were processed for histology, flow cytometry, and scRNA-seq. Bioinformatics tools, including Seurat, Monocle 2, and CellChat, were used to analyze cellular composition, pseudotime trajectories, and intercellular communication. Senescence-related features and signaling pathways were evaluated. RESULTS: Knee joint of aged rats exhibited higher Osteoarthritis Research Society International (OARSI) scores and synovial inflammation. scRNA-seq revealed three major chondrocyte subpopulations: Sox9â+âstable chondrocytes, Fndc1â+âfibrochondrocytes, and Atf3â+âsenescent chondrocytes. Aging caused a significant increase in Atf3â+âsenescent chondrocytes, characterized by the expression of senescence markers (Cdkn1a/Cdkn2a) and activation of inflammatory pathways such as tumor necrosis factor (TNF) and nuclear factor-κB (NF-κB). These cells were predominantly located at the endpoint of differentiation trajectories. CellChat analysis identified the ANGPTL4-SDC4 axis as a key signaling pathway mediated by Atf3â+âcells. Immunostaining confirmed elevated Angiopoietin-Like Protein 4 (ANGPTL4) expression in aged menisci. CONCLUSION: We identified Atf3â+âsenescent chondrocytes as a key pathogenic population in the aging meniscus, driving degeneration via the ANGPTL4 pathway. Targeting Atf3â+âcells or ANGPTL4 signaling may offer new therapeutic strategies for age-related meniscus degeneration and arthritis.
Atf3â+âsenescent chondrocytes mediate meniscus degeneration in aging.
Atf3+衰老软骨细胞介导衰老过程中的半月板退化
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作者:Wang Jing-Yi, Liu Yao-Hui, Wang Xiao, Ma Min, Pan Zhang-Yi, Fan Ao-Yuan, Lu Lai-Ya, Liu Zheng, Tao Kun, Yin Feng
| 期刊: | Arthritis Research & Therapy | 影响因子: | 4.600 |
| 时间: | 2025 | 起止号: | 2025 May 15; 27(1):105 |
| doi: | 10.1186/s13075-025-03566-z | 研究方向: | 细胞生物学 |
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