Pirri Carmelo
Department of Neurosciences, Institute of Human Anatomy, University of Padova, 35121 Padova, Italy.
Diseases. 2025 Aug 15;13(8):263. doi: 10.3390/diseases13080263.
Mechanical forces shape immune responses in both health and disease. PIEZO1 and PIEZO2, two mechanosensitive ion channels, have emerged as critical transducers of these forces, influencing inflammation, pain, fibrosis, and neuroimmune regulation. This review aims to synthesize the current evidence on the role of PIEZO channels in mechano-inflammation, with a specific focus on their regulatory function in neuroimmune crosstalk. A comprehensive narrative synthesis was performed using the literature from PubMed, Scopus, and Web of Science up to June 2025. Experimental, translational, and mechanistic studies involving PIEZO channels in inflammatory, fibrotic, and neuroimmune processes were included. PIEZO1 is broadly expressed in immune cells, fibroblasts, and endothelial cells, where it regulates calcium-dependent activation of pro-inflammatory pathways, such as NF-kB and STAT1. PIEZO2, enriched in sensory neurons, contributes to mechanosensory amplification of inflammatory pain. Both channels are mechanistically involved in neuroinflammation, glial activation, blood-brain barrier dysfunction, connective tissue fibrosis, and visceral hypersensitivity. PIEZO channels act as integrators of biomechanical and immunological signaling. Their roles as context-dependent gatekeepers of neuroimmune crosstalk make them attractive targets for novel therapies.
机械力在健康和疾病状态下均塑造免疫反应。PIEZO1和PIEZO2这两种机械敏感离子通道,已成为这些力的关键转导分子,影响炎症、疼痛、纤维化和神经免疫调节。本综述旨在综合当前关于PIEZO通道在机械性炎症中作用的证据,特别关注其在神经免疫串扰中的调节功能。利用截至2025年6月来自PubMed、Scopus和科学网的文献进行了全面的叙述性综合分析。纳入了涉及PIEZO通道在炎症、纤维化和神经免疫过程中的实验性、转化性和机制性研究。PIEZO1在免疫细胞、成纤维细胞和内皮细胞中广泛表达,在这些细胞中它调节促炎途径(如NF-κB和STAT1)的钙依赖性激活。PIEZO2在感觉神经元中富集,有助于炎症性疼痛的机械感觉放大。这两种通道在机制上均参与神经炎症、胶质细胞激活、血脑屏障功能障碍、结缔组织纤维化和内脏超敏反应。PIEZO通道充当生物力学和免疫信号的整合者。它们作为神经免疫串扰的上下文依赖性守门人的作用,使其成为新型疗法的有吸引力的靶点。