DeLeo Frank R, Allen Lee-Ann H
Laboratory of Bacteriology, Rocky Mountain Laboratories, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Hamilton, MT, USA.
Inflammation Program, Department of Internal Medicine and Department of Microbiology and Immunology, University of Iowa, Iowa City, IA, USA.
Fac Rev. 2020 Dec 21;9:25. doi: 10.12703/r/9-25. eCollection 2020.
Neutrophils are recruited rapidly to sites of infection in response to host- and/or microbe-derived proinflammatory molecules. At such sites, neutrophils phagocytose microbes and are activated to produce superoxide and other reactive oxygen species (ROS). In addition, neutrophils contain stores of antimicrobial peptides and enzymes that work in concert with ROS to kill ingested microbes. Neutrophils can also release chromosomal DNA bound with antimicrobial peptides and enzymes to form web-like structures known as extracellular traps. Neutrophil extracellular traps (NETs) have been reported to ensnare and kill microbes and are commonly considered to be an important component of innate host defense. Notably, the formation of NETs is most often reported as a cytolytic process. Whereas intraphagosomal killing of microbes sequesters cytotoxic antimicrobial molecules that would otherwise damage host tissues, the formation of NETs and associated extracellular release of these molecules can contribute to host tissue destruction and disease. Here we compare and contrast phagocytosis and NETs in host defense, with emphasis on recent studies of NETs that ultimately underscore the importance of phagocytosis as the primary means by which neutrophils eliminate microbes.
中性粒细胞会响应宿主和/或微生物衍生的促炎分子,迅速被招募到感染部位。在这些部位,中性粒细胞吞噬微生物并被激活以产生超氧化物和其他活性氧(ROS)。此外,中性粒细胞含有抗菌肽和酶的储存库,它们与ROS协同作用以杀死摄入的微生物。中性粒细胞还可以释放与抗菌肽和酶结合的染色体DNA,形成称为细胞外陷阱的网状结构。据报道,中性粒细胞胞外陷阱(NETs)能诱捕并杀死微生物,通常被认为是宿主固有防御的重要组成部分。值得注意的是,NETs的形成最常被报道为一个细胞溶解过程。虽然吞噬体内对微生物的杀伤会隔离细胞毒性抗菌分子,否则这些分子会损害宿主组织,但NETs的形成以及这些分子的相关细胞外释放会导致宿主组织破坏和疾病。在这里,我们比较和对比了吞噬作用和NETs在宿主防御中的作用,重点是最近对NETs的研究,这些研究最终强调了吞噬作用作为中性粒细胞消除微生物的主要方式的重要性。