炎症
信号灯
免疫学
斑马鱼
促炎细胞因子
下调和上调
发病机制
中性粒细胞胞外陷阱
医学
生物
癌症研究
受体
基因
生物化学
内科学
作者
Tracie Plant,Suttida Eamsamarng,Manuel A. Sánchez-García,Leila Reyes,Stephen A. Renshaw,Patrícia Coelho,Ananda S. Mirchandani,Jessie-May Morgan,Felix Ellett,Tyler Morrison,Duncan Humphries,Emily Watts,Fiona Murphy,Ximena L. Raffo Iraolagoitia,Ailiang Zhang,Jenna L. Cash,Catherine A. Loynes,Philip M. Elks,Fredericus J. M. van Eeden,Leo M. Carlin,Andrew J. Furley,Moira K. B. Whyte,Sarah R. Walmsley
摘要
Neutrophilic inflammation is central to disease pathogenesis, for example, in chronic obstructive pulmonary disease, yet the mechanisms that retain neutrophils within tissues remain poorly understood. With emerging evidence that axon guidance factors can regulate myeloid recruitment and that neutrophils can regulate expression of a class 3 semaphorin, SEMA3F, we investigated the role of SEMA3F in inflammatory cell retention within inflamed tissues. We observed that neutrophils upregulate SEMA3F in response to proinflammatory mediators and following neutrophil recruitment to the inflamed lung. In both zebrafish tail injury and murine acute lung injury models of neutrophilic inflammation, overexpression of SEMA3F delayed inflammation resolution with slower neutrophil migratory speeds and retention of neutrophils within the tissues. Conversely, constitutive loss of sema3f accelerated egress of neutrophils from the tail injury site in fish, whereas neutrophil-specific deletion of Sema3f in mice resulted in more rapid neutrophil transit through the airways, and significantly reduced time to resolution of the neutrophilic response. Study of filamentous-actin (F-actin) subsequently showed that SEMA3F-mediated retention is associated with F-actin disassembly. In conclusion, SEMA3F signaling actively regulates neutrophil retention within the injured tissues with consequences for neutrophil clearance and inflammation resolution.
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