压电1
巨噬细胞极化
巨噬细胞
细胞生物学
刚度
极化(电化学)
生物物理学
化学
离子
体外
机械敏感通道
离子通道
材料科学
生物
复合材料
生物化学
受体
物理化学
有机化学
作者
Hamza Atcha,Amit Jairaman,Jesse R. Holt,Vijaykumar S. Meli,Raji R. Nagalla,Praveen Krishna Veerasubramanian,Kyle T. Brumm,Huy E. Lim,Shivashankar Othy,Michael D. Cahalan,Medha M. Pathak,Wendy F. Liu
标识
DOI:10.1038/s41467-021-23482-5
摘要
Macrophages perform diverse functions within tissues during immune responses to pathogens and injury, but molecular mechanisms by which physical properties of the tissue regulate macrophage behavior are less well understood. Here, we examine the role of the mechanically activated cation channel Piezo1 in macrophage polarization and sensing of microenvironmental stiffness. We show that macrophages lacking Piezo1 exhibit reduced inflammation and enhanced wound healing responses. Additionally, macrophages expressing the transgenic Ca2+ reporter, Salsa6f, reveal that Ca2+ influx is dependent on Piezo1, modulated by soluble signals, and enhanced on stiff substrates. Furthermore, stiffness-dependent changes in macrophage function, both in vitro and in response to subcutaneous implantation of biomaterials in vivo, require Piezo1. Finally, we show that positive feedback between Piezo1 and actin drives macrophage activation. Together, our studies reveal that Piezo1 is a mechanosensor of stiffness in macrophages, and that its activity modulates polarization responses.
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