Targeting downstream subcellular YAP activity as a function of matrix stiffness with Verteporfin-encapsulated chitosan microsphere attenuates osteoarthritis

软骨 软骨细胞 细胞外基质 骨关节炎 条件基因敲除 垂直波分 细胞生物学 材料科学 化学 医学 表型 解剖 生物 生物化学 黄斑变性 病理 眼科 替代医学 基因 脉络膜新生血管
作者
Xianzhu Zhang,Dandan Cai,Ganghua Pan,Jie Yu,Xinyu Wu,Dongsheng Yu,Yiwei Zou,Yi Hong,Chunhui Yuan,Yishan Chen,Zongyou Pan,Varitsara Bunpetch,Heng Sun,Chengrui An,Yi‐Chin Toh,Hongwei Ouyang,Shufang Zhang
出处
期刊:Biomaterials [Elsevier]
卷期号:232: 119724-119724 被引量:58
标识
DOI:10.1016/j.biomaterials.2019.119724
摘要

Changes in the stiffness of chondrocyte extracellular matrix (ECM) are involved in the pathological progression of osteoarthritis (OA). However, the downstream responses of cartilage ECM stiffness are still unclear. YAP (Yes-associated protein) has been extensively studied as a mechanotransducer, we thus hypothesized that by targeting the downstream molecule activity of ECM stiffness could maintain chondrocyte phenotype and prevent cartilage degeneration in OA. Here, we showed that human cartilage matrix stiffened during pathological progression of OA, and the chondrocyte YAP activity was associated with ECM stiffness. We then mimicked the physiological and pathological stiffness of human cartilage by using PDMS-based substrates, and found that YAP was activated in chondrocytes seeded on stiff substrate, gradually losing their phenotype. In addition, it was observed that YAP was also significantly activated in mice OA development, and conditional knockout (cKO) of YAP in mice preserved collagen II expression and protected cartilage from degeneration in the OA model. Furthermore, intra-articular injection of YAP-selective inhibitor, Verteporfin, significantly maintained cartilage homeostasis in mice OA model. This study indicates that the application of mechanotransducer-targeted drugs could be a potential therapeutic approach for cartilage repair in OA.
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