Extracellular Vesicles in Infrapatellar Fat Pad from Osteoarthritis Patients Impair Cartilage Metabolism and Induce Senescence

Author:

Cao Yumei12,Ruan Jianzhao1,Kang Jingliang1,Nie Xiaoyu1,Lan Weiren1,Ruan Guangfeng13,Li Jia4,Zhu Zhaohua1,Han Weiyu15,Tang Su'an15,Ding Changhai16ORCID

Affiliation:

1. Clinical Research Centre Zhujiang Hospital Southern Medical University Guangzhou Guangdong 510260 China

2. Department of Rheumatology and Immunology Zhujiang Hospital Southern Medical University Guangzhou Guangdong 510260 China

3. Clinical Research Centre Guangzhou First People's Hospital School of Medicine South China University of Technology Guangzhou 510180 China

4. Division of Orthopaedic Surgery Department of Orthopedics Nanfang Hospital Southern Medical University Guangzhou Guangdong 510515 China

5. Centre of Orthopedics Zhujiang Hospital Southern Medical University Guangzhou Guangdong 510260 China

6. Menzies Institute for Medical Research University of Tasmania Hobart Tasmania 7000 Australia

Abstract

AbstractInfrapatellar fat pad (IPFP) is closely associated with the development and progression of knee osteoarthritis (OA), but the underlying mechanism remains unclear. Here, it is find that IPFP from OA patients can secret small extracellular vesicles (sEVs) and deliver them into articular chondrocytes. Inhibition the release of endogenous osteoarthritic IPFP‐sEVs by GW4869 significantly alleviated IPFP‐sEVs‐induced cartilage destruction. Functional assays in vitro demonstrated that IPFP‐sEVs significantly promoted chondrocyte extracellular matrix (ECM) catabolism and induced cellular senescence. It is further demonstrated that IPFP‐sEVs induced ECM degradation in human and mice cartilage explants and aggravated the progression of experimental OA in mice. Mechanistically, highly enriched let‐7b‐5p and let‐7c‐5p in IPFP‐sEVs are essential to mediate detrimental effects by directly decreasing senescence negative regulator, lamin B receptor (LBR). Notably, intra‐articular injection of antagomirs inhibiting let‐7b‐5p and let‐7c‐5p in mice increased LBR expression, suppressed chondrocyte senescence and ameliorated the progression of experimental OA model. This study uncovers the function and mechanism of the IPFP‐sEVs in the progression of OA. Targeting IPFP‐sEVs cargoes of let‐7b‐5p and let‐7c‐5p can provide a potential strategy for OA therapy.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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