Osteoarthritis: Epidemiology, Pathogenesis, and Treatment

Остеоартрит: эпидемиология, патогенез и лечение
Tianrui Chen, Wenlong Chen, Tianpeng Xu, Hong Wang, Y. Zhang, Li Wang, Siming Zhu, Huaqiang Tao, Xing Yang
2026-04-01

Chronic low-grade inflammationHistone methylationJoint tissue remodelingOsteoarthritisWhole-joint disease
Osteoarthritis (OA) is the most common chronic joint disorder and a major cause of disability worldwide. Once regarded as a consequence of cartilage wear, OA is now recognized as a complex whole-joint disease involving coordinated pathological changes in articular cartilage, synovium, and subchondral bone. Disease progression is driven by chronic low-grade inflammation, metabolic dysregulation, oxidative stress, and abnormal cellular responses to mechanical stress. These processes are mediated by interconnected signaling networks that regulate inflammatory responses, extracellular matrix (ECM) metabolism, and tissue remodeling. Epigenetic mechanisms, such as DNA methylation, histone modifications, and noncoding RNAs, are increasingly recognized as regulators of OA-related gene expression. However, how signaling networks integrate with epigenetic regulation, particularly histone methylation, remains incompletely understood. In this review, we summarize the epidemiological burden and major risk factors of OA, describe pathological remodeling across joint tissues, and discuss key signaling pathways involved in OA pathogenesis before outlining epigenetic mechanisms. We also highlight the role of histone methylation in inflammation, metabolic imbalance, and tissue remodeling, and summarize current nonpharmacological, pharmacological, injectable, and surgical treatment strategies. Together, this review provides an integrated overview of the epidemiology, pathogenesis, and treatment of OA.
1
Disease progression involves chronic low-grade inflammation, metabolic dysregulation, oxidative stress, and abnormal cellular responses to mechanical stress.
2
Epigenetic mechanisms, including DNA methylation, histone modifications, and noncoding RNAs, regulate OA-related gene expression, while integration with signaling networks—especially histone methylation—remains incompletely understood.
3
Interconnected signaling networks regulate inflammatory responses, extracellular matrix metabolism, and tissue remodeling in OA.
4
OA is a whole-joint disease involving coordinated pathological changes in articular cartilage, synovium, and subchondral bone.
5
Osteoarthritis is the most common chronic joint disorder and a major worldwide cause of disability.

Osteoarthritis as a whole-joint disease involving articular cartilage, synovium, and subchondral bone

The epidemiology, risk factors, pathological remodeling, inflammatory and metabolic signaling, epigenetic regulation including histone methylation, and treatment strategies of osteoarthritis

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2026-04-01
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Tianrui Chen
Wenlong Chen
Tianpeng Xu
Hong Wang
Y. Zhang
Li Wang
Siming Zhu
Huaqiang Tao
Xing Yang
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