Piezo1 Agonist Yoda1 Induces Rapid Relaxation in Cultured Airway Smooth Muscle Cells and Bronchodilation in Mouse Models

支气管扩张 兴奋剂 气道 化学 内科学 内分泌学 医学 支气管扩张剂 受体 麻醉 哮喘
作者
Mingzhi Luo,Xiangrong Zhang,Jia Guo,Rong Gu,Youyuan Qin,Kai Ni,Lei Liu,Yan Pan,Jinɡjinɡ Li,Honglei Shi,Linhong Deng
出处
期刊:American Journal of Respiratory Cell and Molecular Biology [American Thoracic Society]
卷期号:73 (6): 849-858 被引量:4
标识
DOI:10.1165/rcmb.2024-0536oc
摘要

Bronchodilators that relax airway smooth muscle cells (ASMCs) are essential for treating constrictive airway diseases such as asthma. However, the existing bronchodilators are often unable to control symptoms of severe asthmatic patients, leaving a pressing need to search for alternatives. Recent studies indicate that the transmembrane mechanosensitive channel, Piezo1, may provide a novel target for bronchodilation, as it mediates ASMC relaxation by means of calcium signaling and activation of large-conductance, calcium-activated potassium channels, and the Piezo1-specific agonist Yoda1 has been shown to reduce cell stiffness and traction force in cultured ASMCs after 24-hour incubation. Therefore, in this study, we further explored the potential of Yoda1 for inducing rapid ASMC relaxation and bronchodilation. We treated either cultured ASMCs or allergen-induced mouse models of asthma with Yoda1 at various doses and then assessed the resulting variations in cell stiffness, traction force, and molecular signaling of cultured ASMCs, as well as in airway resistance of the mouse models. We found that exposure to Yoda1 rapidly decreased cell stiffness; decreased traction force in association with induced calcium signaling and the activation of large-conductance, calcium-activated potassium channels in cultured ASMCs; and reduced airway resistance in methacholine-challenged mice in a dose-dependent manner. These results indicate that chemical activation of Piezo1 with specific agonist Yoda1 was, indeed, capable of inducing bronchodilation by relaxing ASMCs; thus, they provide insights into the development of Piezo1 agonist-based novel bronchodilators for treating constrictive airway disorders such as asthma.
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