中性粒细胞胞外陷阱
先天免疫系统
免疫学
生物
免疫系统
吞噬作用
免疫
细胞因子
细胞激素风暴
细胞生物学
炎症
呼吸爆发
趋化因子
疾病
发病机制
受体
细胞外
获得性免疫系统
模式识别受体
NALP3
抗菌肽
冠状病毒
传染病(医学专业)
信号转导
促炎细胞因子
活性氧
病毒病机
作者
Fatemeh Mohammadi Henjeroei,Niloufar Nosratabadi,Hossein Pourghadamyari,Akbar Anaeigoudari,Farnaz Sedghy,Reza Nosratabadi
摘要
COVID-19 (coronavirus disease 2019) is a respiratory viral disease with a wide range of clinical symptoms that emerged in December 2019. Innate immunity serves as a rapid immune system that can fight off pathogens before they can spread and cause an active infection. Neutrophils, the most abundant innate immune cells, are the first cells to migrate to the site of infection, where they defend against invading pathogens. Once activated at the inflammatory site, neutrophils mediate host protection through multiple mechanisms, including the phagocytosis of pathogens, the release of antimicrobial and pro-inflammatory enzymes, the production of reactive oxygen species (ROS), and the extrusion of their chromatin to form neutrophil extracellular traps (NETs) that bind to extracellular pathogens. Furthermore, neutrophils can move toward the source of the stimulus through a mechanism called chemotaxis, which is mediated by adhesion molecules and chemokine-chemokine receptor axes. However, neutrophil overactivation can have deleterious effects on various organs through the induction of cytokine storms, ROS production, and NET formation. Moreover, the contribution of distinct neutrophil subsets and their plasticity over the course of infection and recovery remain poorly understood. This review summarizes the current knowledge of the interplay between neutrophils and SARS-CoV-2, highlighting the most important mechanisms involved in the pathogenesis of COVID-19, to advance our understanding of this disease.
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