1. Noncoding RNAs in subchondral bone osteoclast function and their therapeutic potential for osteoarthritis
- Author
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Daping Wang, Yujie Liang, Xingfu Li, Xiao Xu, Li Duan, Wencui Li, Deshun Sun, Jifeng Wang, and Deng Zhiqin
- Subjects
Cartilage, Articular ,musculoskeletal diseases ,0301 basic medicine ,RNA, Untranslated ,Noncoding RNAs ,Osteoclasts ,Review ,Osteoarthritis ,Biology ,Bone resorption ,Bone remodeling ,03 medical and health sciences ,0302 clinical medicine ,Osteoclast ,microRNA ,medicine ,Humans ,Epigenetics ,Bone Resorption ,Subchondral bone remodeling ,Non-coding RNA ,medicine.disease ,Microvesicles ,Cell biology ,030104 developmental biology ,medicine.anatomical_structure ,030220 oncology & carcinogenesis ,Bone Remodeling - Abstract
Osteoclasts are the only cells that perform bone resorption. Noncoding RNAs (ncRNAs) are crucial epigenetic regulators of osteoclast biological behaviors ranging from osteoclast differentiation to bone resorption. The main ncRNAs, including miRNAs, circRNAs, and lncRNAs, compose an intricate network that influences gene transcription processes related to osteoclast biological activity. Accumulating evidence suggests that abnormal osteoclast activity leads to the disturbance of subchondral bone remodeling, thus initiating osteoarthritis (OA), a prevalent joint disease characterized mainly by cartilage degradation and subchondral bone remodeling imbalance. In this review, we delineate three types of ncRNAs and discuss their related complex molecular signaling pathways associated with osteoclast function during bone resorption. We specifically focused on the involvement of noncoding RNAs in subchondral bone remodeling, which participate in the degradation of the osteochondral unit during OA progression. We also discussed exosomes as ncRNA carriers during the bone remodeling process. A better understanding of the roles of ncRNAs in osteoclast biological behaviors will contribute to the treatment of bone resorption-related skeletal diseases such as OA.
- Published
- 2020
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