Piezo1 expression in neutrophils regulates shear-induced NETosis

中性粒细胞胞外陷阱 压电1 细胞生物学 机械转化 机械敏感通道 剪应力 细胞骨架 炎症 卡尔帕因 细胞外 化学 生物 生物物理学 免疫学 离子通道 细胞 生物化学 材料科学 受体 复合材料
作者
Sara Baratchi,Habiba Danish,Chanly Chheang,Ying Zhou,Angela Huang,Austin Lai,Manijeh Khanmohammadi,Kylie M. Quinn,Khashayar Khoshmanesh,Karlheinz Peter
出处
期刊:Nature Communications [Nature Portfolio]
卷期号:15 (1) 被引量:20
标识
DOI:10.1038/s41467-024-51211-1
摘要

Neutrophil infiltration and subsequent extracellular trap formation (NETosis) is a contributing factor in sterile inflammation. Furthermore, neutrophil extracellular traps (NETs) are prothrombotic, as they provide a scaffold for platelets and red blood cells to attach to. In circulation, neutrophils are constantly exposed to hemodynamic forces such as shear stress, which in turn regulates many of their biological functions such as crawling and NETosis. However, the mechanisms that mediate mechanotransduction in neutrophils are not fully understood. In this study, we demonstrate that shear stress induces NETosis, dependent on the shear stress level, and increases the sensitivity of neutrophils to NETosis-inducing agents such as adenosine triphosphate and lipopolysaccharides. Furthermore, shear stress increases intracellular calcium levels in neutrophils and this process is mediated by the mechanosensitive ion channel Piezo1. Activation of Piezo1 in response to shear stress mediates calpain activity and cytoskeleton remodeling, which consequently induces NETosis. Thus, activation of Piezo1 in response to shear stress leads to a stepwise sequence of cellular events that mediates NETosis and thereby places neutrophils at the centre of localized inflammation and prothrombotic effects. Neutrophils undergo shear stress in the circulation and mechano-sensing is known to impact neutrophil biology. Here the authors show that activation of Piezo1 by shear stress triggers a sequence of cellular events leading to NETosis.
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