Feng Rui, Hu Wenhui, Li Yuheng, Yao Xuan, Li Jianmei, Li Xiaoming, Zhang Jing, Wu Yu, Kang Fei, Dong Shiwu
Department of Biomedical Materials Science, College of Biomedical Engineering, Army Medical University (Third Military Medical University), Chongqing 400038, PR China.
College of Bioengineering, Chongqing University, Chongqing 400044, PR China.
Mechanobiol Med. 2024 Feb 5;2(2):100043. doi: 10.1016/j.mbm.2024.100043. eCollection 2024 Jun.
Osteoarthritis (OA) is a progressive degenerative joint sickness related with mechanics, obesity, ageing, ., mainly characterized by cartilage degeneration, subchondral bone damage and synovium inflammation. Coordinated mechanical absorption and conduction of the joint play significant roles in the prevalence and development of OA. Subchondral bone is generally considered a load-burdening tissue where mechanosensitive cells are resident, including osteocytes, osteoblast lineage cells, and osteoclast lineage cells (especially less concerned in mechanical studies). Mechano-signaling imbalances affect complicated cellular events and disorders of subchondral bone homeostasis. This paper will focus on the significance of mechanical force as the pathogenesis, involvement of various mechanical force patterns in mechanosensitive cells, and mechanobiology research of loading devices and , which are further discussed. Additionally, various mechanosensing structures (., transient receptor potential channels, gap junctions, primary cilia, podosome-associated complexes, extracellular vesicles) and mechanotransduction signaling pathways (., Ca signaling, Wnt/β-catenin, RhoA GTPase, focal adhesion kinase, cotranscriptional activators YAP/TAZ) in mechanosensitive bone cells. Finally, we highlight potential targets for improving mechanoprotection in the treatment of OA. These advances furnish an integration of mechanical regulation of subchondral bone homeostasis, as well as OA therapeutic approaches by modulating mechanical homeostasis.
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