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August 4, 2025International Journal of Medical Sciences15 citationsOpen Access

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

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GYGuoling YuanZXZhouyi XiongKXKe Xi

Key Points

  • MAIN FINDING: The piezo1 ion channel is crucial for chondrocyte function and is linked to cartilage degradation and osteoarthritis.
  • KEY EVIDENCE: The review identifies various regulatory mechanisms of piezo1, including interactions with mechanical stress and extracellular matrix stiffness.
  • APPROACH: Regulatory mechanisms of piezo1 are examined in the context of calcium signaling, inflammation, and pharmacological modulation.
  • SIGNIFICANCE: This understanding paves the way for potential therapeutic strategies targeting piezo1 in degenerative cartilage diseases.

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.

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Cite This Study

Yuan et al. (2025) studied this question.

synapsesocial.com/papers/689a0f86e6551bb0af8d0a65https://doi.org/10.7150/ijms.111082
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Also Consider

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  1. 1Less mechanical loading attenuates osteoarthritis by reducing cartilage degeneration, subchondral bone remodelling, secondary inflammation, and activation of NLRP3 inflammasome2020 · 42 citations
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  3. 3Lipid Transport and Metabolism in Healthy and Osteoarthritic Cartilage2013 · 109 citations
  4. 4Functional characterization of TRPV4 as an osmotically sensitive ion channel in porcine articular chondrocytes2009 · 309 citations
  5. 5The Effects of Mechanical Load on Chondrogenic Responses of Bone Marrow Mesenchymal Stem Cells and Chondrocytes Encapsulated in Chondroitin Sulfate-Based Hydrogel2023 · 20 citations