Han Yuanyuan, Cheng Fangyan, Li Xinyan, Yu Jiahao, Li Guimiao, Chen Wei, Zhang Jiaxue, Feng Chen, Zhang Yingze, Wang Juan
Orthopaedic Research Institution of Hebei Province, Shijiazhuang, China.
NHC Key Laboratory of Intelligent Orthopaedic Equipment, Hebei Medical University Third Hospital, Shijiazhuang, China.
J Cell Mol Med. 2025 Aug;29(15):e70734. doi: 10.1111/jcmm.70734.
Osteoarthritis (OA) is a highly prevalent chronic joint disease with complicated pathogenesis, causing pain and dysfunction. The mechanosensitive ion channel Piezo1 is an important mechanoreceptor on chondrocytes and may be involved in the process of OA. However, its role and mechanism remain elusive. This study investigated the role and possible mechanisms of Piezo1 in OA induced by excessive mechanical stress. Piezo1 expression levels were markedly up-regulated in the lesioned region of the medial tibial cartilage in OA rats subjected to destabilisation of the medial meniscus (DMM) surgery. Excessive mechanical stress increases Piezo1 in chondrocytes, which leads to a reduction in collagen II (COL2) and aggrecan (ACAN). In addition, activation of Piezo1 channels by the specific agonist Yoda1 reduces chondrocyte anabolism and promotes catabolism. Molecularly, activation or inhibition of Piezo1 modulates the activity of the PI3K/AKT/mTORC1 pathway. Inhibition of the PI3K/AKT pathway or mTORC1 alleviated the Yoda1-induced imbalance of chondrocyte homeostasis to varying degrees. Collectively, these findings imply that Piezo1 in chondrocytes may respond to excessive mechanical forces and promote extracellular matrix degradation through the PI3K/AKT/mTORC1 pathway, thereby driving OA progression.
骨关节炎(OA)是一种高度流行的慢性关节疾病,发病机制复杂,会导致疼痛和功能障碍。机械敏感离子通道Piezo1是软骨细胞上一种重要的机械感受器,可能参与骨关节炎的发病过程。然而,其作用和机制仍不清楚。本研究探讨了Piezo1在过度机械应力诱导的骨关节炎中的作用及可能机制。在接受内侧半月板不稳定(DMM)手术的骨关节炎大鼠中,内侧胫骨软骨损伤区域的Piezo1表达水平显著上调。过度的机械应力会增加软骨细胞中的Piezo1,导致Ⅱ型胶原蛋白(COL2)和聚集蛋白聚糖(ACAN)减少。此外,特异性激动剂Yoda1激活Piezo1通道会降低软骨细胞合成代谢并促进分解代谢。在分子水平上,激活或抑制Piezo1会调节PI3K/AKT/mTORC1信号通路的活性。抑制PI3K/AKT信号通路或mTORC1可不同程度地缓解Yoda1诱导的软骨细胞内稳态失衡。总的来说,这些发现表明软骨细胞中的Piezo1可能对过度的机械力作出反应,并通过PI3K/AKT/mTORC1信号通路促进细胞外基质降解,从而推动骨关节炎的进展。