Inserm UMR 1125, Li2P, Université Sorbonne Paris Nord-Campus de Bobigny, Bobigny, Île-de-France, France.
Inserm UMR 1125, Li2P, Université Sorbonne Paris Nord-Campus de Bobigny, Bobigny, Île-de-France, France
RMD Open. 2023 Aug;9(3). doi: 10.1136/rmdopen-2023-003104.
Polymorphonuclear neutrophils (PMN) represent one of the first lines of defence against invading pathogens and are the most abundant leucocytes in the circulation. Generally described as pro-inflammatory cells, recent data suggest that PMN also have immunomodulatory capacities. In response to certain stimuli, activated PMN expel neutrophil extracellular traps (NET), structures made of DNA and associated proteins. Although originally described as an innate immune mechanism fighting bacterial infection, NET formation (or probably rather an excess of NET together with impaired clearance of NET) may be deleterious. Indeed, NET have been implicated in the development of several inflammatory and autoimmune diseases as rheumatoid arthritis or systemic lupus erythematosus, as well as fibrosis or cancer. They have been suggested as a source of (neo)autoantigens or regulatory proteins like proteases or to act as a physical barrier. Different mechanisms of NET formation have been described, leading to PMN death or not, depending on the stimulus. Interestingly, NET may be both pro-inflammatory and anti-inflammatory and this probably partly depends on the mechanism, and thus the stimuli, triggering NET formation. Within this review, we will describe the pro-inflammatory and anti-inflammatory activities of NET and especially how NET may modulate immune responses.
多形核粒细胞(PMN)是抵御入侵病原体的第一道防线之一,也是循环中最丰富的白细胞。PMN 通常被描述为促炎细胞,但最近的数据表明,PMN 也具有免疫调节能力。在受到某些刺激时,活化的 PMN 会释放中性粒细胞胞外诱捕网(NET),这是一种由 DNA 和相关蛋白组成的结构。虽然最初被描述为一种对抗细菌感染的固有免疫机制,但 NET 的形成(或者更确切地说是 NET 的过度形成以及 NET 的清除受损)可能是有害的。事实上,NET 已被牵涉到几种炎症和自身免疫性疾病的发展中,如类风湿关节炎或系统性红斑狼疮,以及纤维化或癌症。它们被认为是(新)自身抗原或调节蛋白的来源,如蛋白酶,或者作为物理屏障。已经描述了不同的 NET 形成机制,这些机制取决于刺激物,导致 PMN 的死亡或不死亡。有趣的是,NET 可能具有促炎和抗炎作用,这可能部分取决于触发 NET 形成的机制,因此也取决于刺激物。在这篇综述中,我们将描述 NET 的促炎和抗炎活性,特别是 NET 如何调节免疫反应。