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探索软骨细胞中PIEZO1的多因素调控:机制与意义

Exploring the Multifactorial Regulation of PIEZO1 in Chondrocytes: Mechanisms and Implications.

作者信息

Yuan Gongwu, Xiong Ziren, Ke Xi, Wang Guodong, Liu Ximing, Li Zhigang

机构信息

Department of Orthopedic Surgery, Hubei Provincial Hospital of Integrated Chinese & Western Medicine, Wuhan 430015, China.

Department of Orthopedics, General Hospital of Central Theater Command, Wuhan 430070, China.

出版信息

Int J Med Sci. 2025 Jul 24;22(13):3393-3411. doi: 10.7150/ijms.111082. eCollection 2025.

Abstract

The mechanosensitive PIEZO1 ion channel plays a pivotal role in the regulation of chondrocyte function and is involved in various physiological and pathological processes, including cartilage degradation and osteoarthritis (OA). This review explores the regulatory mechanisms governing PIEZO1 activation and its interactions with mechanical stress, extracellular matrix (ECM) stiffness, inflammatory factors, and other ion channels. We discuss the role of PIEZO1 in calcium signaling, its modulation by ECM stiffness, and the implications for cartilage health, particularly under high mechanical load or inflammatory conditions. Additionally, the review highlights pharmacological modulators, including PIEZO1 activators such as Yoda1 and Jedi1/2, and inhibitors like GsMTx4, as potential therapeutic targets for OA treatment. The synergistic interactions of PIEZO1 with other mechanosensitive channels, such as TRPV4 and PIEZO2, are also examined, providing insights into their collective role in mechanotransduction. Further research is essential to clarify the spatiotemporal activation patterns of PIEZO1, its downstream effects, and the potential for targeting this channel in clinical interventions for degenerative cartilage diseases.

摘要

机械敏感的PIEZO1离子通道在软骨细胞功能调节中起关键作用,并参与各种生理和病理过程,包括软骨降解和骨关节炎(OA)。本综述探讨了PIEZO1激活的调控机制及其与机械应力、细胞外基质(ECM)硬度、炎症因子和其他离子通道的相互作用。我们讨论了PIEZO1在钙信号传导中的作用、其受ECM硬度的调节以及对软骨健康的影响,特别是在高机械负荷或炎症条件下。此外,该综述强调了药理学调节剂,包括PIEZO1激活剂如Yoda1和Jedi1/2,以及抑制剂如GsMTx4,作为OA治疗的潜在靶点。还研究了PIEZO1与其他机械敏感通道(如TRPV4和PIEZO2)的协同相互作用,从而深入了解它们在机械转导中的共同作用。进一步的研究对于阐明PIEZO1的时空激活模式、其下游效应以及在退行性软骨疾病临床干预中靶向该通道的潜力至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2311/12320791/81100304f5b0/ijmsv22p3393g001.jpg

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