Exosomal transfer of osteoclast-derived miRNAs to chondrocytes contributes to osteoarthritis progression

Osteoarthritis (OA) is a prevalent aging-related joint disease lacking disease-modifying therapies. Here, we identified an upregulation of circulating exosomal osteoclast (OC)-derived microRNAs (OC-miRNAs) during the progression of surgery-induced OA in mice. We found that reducing OC-miRNAs by Cre-...

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Veröffentlicht in:Nature aging 2021-04, Vol.1 (4), p.368-384
Hauptverfasser: Liu, Jin, Wu, Xiaohao, Lu, Jun, Huang, Guangxin, Dang, Lei, Zhang, Huarui, Zhong, Chuanxin, Zhang, Zongkang, Li, Dijie, Li, Fangfei, Liang, Chao, Yu, Yuanyuan, Zhang, Bao-Ting, Chen, Lin, Lu, Aiping, Zhang, Ge
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Sprache:eng
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Zusammenfassung:Osteoarthritis (OA) is a prevalent aging-related joint disease lacking disease-modifying therapies. Here, we identified an upregulation of circulating exosomal osteoclast (OC)-derived microRNAs (OC-miRNAs) during the progression of surgery-induced OA in mice. We found that reducing OC-miRNAs by Cre-mediated excision of the key miRNA-processing enzyme Dicer or blocking the secretion of OC-originated exosomes by short interfering RNA-mediated silencing of Rab27a substantially delayed the progression of surgery-induced OA in mice. Mechanistically, the exosomal transfer of OC-miRNAs to chondrocytes reduced the resistance of cartilage to matrix degeneration, osteochondral angiogenesis and sensory innervation during OA progression by suppressing tissue inhibitor of metalloproteinase-2 (TIMP-2) and TIMP-3. Furthermore, systemic administration of a new OC-targeted exosome inhibitor (OCExoInhib) blunted the progression of surgery-induced OA in mice. We suggest that targeting the exosomal transfer of OC-miRNAs to chondrocytes represents a potential therapeutic avenue to tackle OA progression.
ISSN:2662-8465
2662-8465
DOI:10.1038/s43587-021-00050-6