Duan Xinyan, Liu Renhan, Xi Yue, Tian Zhenjun
Institute of Sports and Exercise Biology, Shaanxi Normal University, Xi'an, 710119, China.
Mol Cell Biochem. 2025 Jan;480(1):119-137. doi: 10.1007/s11010-024-05000-5. Epub 2024 Apr 16.
Mechanosensitive ion channels are widely distributed in the heart, lung, bladder and other tissues, and plays an important role in exercise-induced cardiovascular function promotion. By reviewing the PubMed databases, the results were summarized using the terms "Exercise/Sport", "Piezo1", "Transient receptor potential (TRP)" and "Cardiovascular" as the keywords, 124-related papers screened were sorted and reviewed. The results showed that: (1) Piezo1 and TRP channels play an important role in regulating blood pressure and the development of cardiovascular diseases such as atherosclerosis, myocardial infarction, and cardiac fibrosis; (2) Exercise promotes cardiac health, inhibits the development of pathological heart to heart failure, regulating the changes in the characterization of Piezo1 and TRP channels; (3) Piezo1 activates downstream signaling pathways with very broad pathways, such as AKT/eNOS, NF-κB, p38MAPK and HIPPO-YAP signaling pathways. Piezo1 and Irisin regulate nuclear localization of YAP and are hypothesized to act synergistically to regulate tissue mechanical properties of the cardiovascular system and (4) The cardioprotective effects of exercise through the TRP family are mostly accomplished through Ca and involve many signaling pathways. TRP channels exert their important cardioprotective effects by reducing the TRPC3-Nox2 complex and mediating Irisin-induced Ca influx through TRPV4. It is proposed that exercise stimulates the mechanosensitive cation channel Piezo1 and TRP channels, which exerts cardioprotective effects. The activation of Piezo1 and TRP channels and their downstream targets to exert cardioprotective function by exercise may provide a theoretical basis for the prevention of cardiovascular diseases and the rehabilitation of clinical patients.
机械敏感离子通道广泛分布于心脏、肺、膀胱等组织中,在运动诱导的心血管功能促进中发挥重要作用。通过检索PubMed数据库,以“运动/体育”“Piezo1”“瞬时受体电位(TRP)”和“心血管”为关键词总结结果,对筛选出的124篇相关论文进行整理和综述。结果表明:(1)Piezo1和TRP通道在调节血压以及动脉粥样硬化、心肌梗死和心脏纤维化等心血管疾病的发展中起重要作用;(2)运动促进心脏健康,抑制病理性心脏向心力衰竭发展,调节Piezo1和TRP通道特性的变化;(3)Piezo1激活的下游信号通路非常广泛,如AKT/eNOS、NF-κB、p38MAPK和HIPPO-YAP信号通路。Piezo1和鸢尾素调节YAP的核定位,推测二者协同作用调节心血管系统的组织力学特性;(4)运动通过TRP家族产生的心脏保护作用大多通过Ca实现,涉及许多信号通路。TRP通道通过减少TRPC3-Nox2复合物并介导鸢尾素诱导的Ca通过TRPV4内流发挥重要的心脏保护作用。提出运动刺激机械敏感阳离子通道Piezo1和TRP通道,从而发挥心脏保护作用。运动激活Piezo1和TRP通道及其下游靶点以发挥心脏保护功能,这可能为心血管疾病的预防和临床患者的康复提供理论依据。