Matrix stiffening promotes chondrocyte senescence and the osteoarthritis development through downregulating HDAC3

变硬 衰老 机械转化 细胞外基质 软骨细胞 帕金 骨关节炎 阿格里坎 细胞生物学 软骨内骨化 化学 软骨 生物 医学 解剖 材料科学 病理 复合材料 帕金森病 疾病 关节软骨 替代医学
作者
Bowen Fu,Jianlin Shen,Xuenong Zou,Nian Sun,Ze Zhang,Zengping Liu,Canjun Zeng,Huan Liu,Wenhua Huang
出处
期刊:Bone research [Springer Nature]
卷期号:12 (1) 被引量:8
标识
DOI:10.1038/s41413-024-00333-9
摘要

Abstract Extracellular matrix (ECM) stiffening is a typical characteristic of cartilage aging, which is a quintessential feature of knee osteoarthritis (KOA). However, little is known about how ECM stiffening affects chondrocytes and other molecules downstream. This study mimicked the physiological and pathological stiffness of human cartilage using polydimethylsiloxane (PDMS) substrates. It demonstrated that epigenetic Parkin regulation by histone deacetylase 3 ( HDAC3 ) represents a new mechanosensitive mechanism by which the stiffness matrix affected chondrocyte physiology. We found that ECM stiffening accelerated cultured chondrocyte senescence in vitro, while the stiffness ECM downregulated HDAC3, prompting Parkin acetylation to activate excessive mitophagy and accelerating chondrocyte senescence and osteoarthritis (OA) in mice. Contrarily, intra-articular injection with an HDAC3-expressing adeno-associated virus restored the young phenotype of the aged chondrocytes stimulated by ECM stiffening and alleviated OA in mice. The findings indicated that changes in the mechanical ECM properties initiated pathogenic mechanotransduction signals, promoted the Parkin acetylation and hyperactivated mitophagy, and damaged chondrocyte health. These results may provide new insights into chondrocyte regulation by the mechanical properties of ECM, suggesting that the modification of the physical ECM properties may be a potential OA treatment strategy.
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