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机械激活离子通道在自身免疫性疾病中的新作用。

Emerging roles of mechanically activated ion channels in autoimmune disease.

作者信息

Zeng Zhiru, Chen Engeng, Xue Jing

机构信息

Department of Rheumatology, The Second Affiliated Hospital of Zhejiang University School of Medicine, Hangzhou 310009, China.

Department of Zhejiang Provincial Key Laboratory of Biotherapy, Sir Run Run Shaw Hospital of Zhejiang University School of Medicine, Hangzhou 310016, China.

出版信息

Autoimmun Rev. 2025 Jun 24;24(7):103813. doi: 10.1016/j.autrev.2025.103813. Epub 2025 Apr 5.

Abstract

Mechanically activated (MA) ion channels have rapidly gained prominence as vital conduits bridging aberrant mechanical cues in tissues with the dysregulated immune responses at the core of autoimmune diseases. Once regarded as peripheral players in inflammation, these channels, exemplified by PIEZO1, TRPV4, and specific K2P family members, now play a central role in modulating T-cell effector functions, B- cell activation and the activity of macrophages and dendritic cells. Their gating is intimately tied to physical distortions such as increased tissue stiffness, osmotic imbalances, or fluid shear, triggering a cascade of ionic fluxes that elevate proinflammatory signaling and drive tissue-destructive loops. Recognition of these channels as central mediators of mechanical stress-induced inflammation responses in autoimmune pathogenesis is rapidly expanding. In parallel, the emerging therapeutic strategies aim to restrain overactive mechanosensors or selectively harness them in affected tissues. Small molecules, peptide blockers, and gene-targeting approaches show preclinical promise, although off-target effects and the broader homeostatic roles of these channels warrant caution. This review explores how integrating mechanobiological concepts with established immunological paradigms enables a more detailed understanding of autoimmune pathogenesis. By elucidating how mechanical forces potentiate or dampen pathological immunity, we propose innovative strategies that exploit mechanosensitivity to recalibrate immune responses across a spectrum of autoimmune conditions.

摘要

机械激活(MA)离子通道迅速成为关键通道,在组织中异常的机械信号与自身免疫性疾病核心的免疫反应失调之间架起了桥梁。这些通道,以PIEZO1、TRPV4和特定的K2P家族成员为例,曾经被认为是炎症中的边缘参与者,现在在调节T细胞效应功能、B细胞活化以及巨噬细胞和树突状细胞的活性方面发挥着核心作用。它们的门控与诸如组织硬度增加、渗透压失衡或流体剪切等物理变形密切相关,引发一系列离子通量,从而增强促炎信号并驱动组织破坏循环。在自身免疫发病机制中,这些通道作为机械应力诱导的炎症反应的核心介质的认识正在迅速扩展。与此同时,新兴的治疗策略旨在抑制过度活跃的机械传感器或在受影响的组织中选择性地利用它们。小分子、肽阻滞剂和基因靶向方法在临床前显示出前景,尽管这些通道的脱靶效应和更广泛的稳态作用值得谨慎对待。本综述探讨了将机械生物学概念与既定的免疫学范式相结合如何能够更详细地理解自身免疫发病机制。通过阐明机械力如何增强或抑制病理性免疫,我们提出了创新策略,利用机械敏感性在一系列自身免疫性疾病中重新校准免疫反应。

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