Life Sciences Research Unit, Immune Cells and Inflammatory Diseases Group, University of Luxembourg, Belvaux, Luxembourg.
J Leukoc Biol. 2020 Feb;107(2):285-297. doi: 10.1002/JLB.3RU0719-241R. Epub 2019 Dec 16.
Neutrophils are the most abundant leukocytes in blood and disruption in their functions often results in an increased risk of serious infections and inflammatory autoimmune diseases. Following recent discoveries in their influence over disease progression, a resurgence of interest for neutrophil biology has taken place. The multitude of signaling pathways activated by the engagement of numerous types of receptors, with which neutrophils are endowed, reflects the functional complexity of these cells. It is therefore not surprising that there remains a huge lack in the understanding of molecular mechanisms underlining neutrophil functions. Moreover, studies on neutrophils are undoubtedly limited by the difficulty to efficiently edit the cell's genome. Over the past 30 years, compelling evidence has clearly highlighted that Ca -signaling is governing the key processes associated with neutrophil functions. The confirmation of the role of an elevation of intracellular Ca concentration has come from studies on NADPH oxidase activation and phagocytosis. In this review, we give an overview and update of our current knowledge on the role of Ca mobilization in the regulation of pro-inflammatory functions of neutrophils. In particular, we stress the importance of Ca in the formation of NETs and cytokine secretion in the light of newest findings. This will allow us to embrace how much further we have to go to understand the complex dynamics of Ca -dependent mechanisms in order to gain more insights into the role of neutrophils in the pathogenesis of inflammatory diseases. The potential for therapeutics to regulate the neutrophil functions, such as Ca influx inhibitors to prevent autoimmune and chronic inflammatory diseases, has been discussed in the last part of the review.
中性粒细胞是血液中最丰富的白细胞,其功能障碍通常会导致严重感染和炎症性自身免疫性疾病的风险增加。最近发现它们对疾病进展有影响后,人们对中性粒细胞生物学的兴趣再次高涨。中性粒细胞通过与多种受体结合而激活的众多信号通路反映了这些细胞的功能复杂性。因此,人们对阐明中性粒细胞功能的分子机制仍存在巨大的理解空白也就不足为奇了。此外,中性粒细胞的研究无疑受到编辑细胞基因组效率低下的限制。在过去的 30 年里,令人信服的证据清楚地强调了 Ca 信号在与中性粒细胞功能相关的关键过程中的调控作用。细胞内 Ca 浓度升高在 NADPH 氧化酶激活和吞噬作用中的作用的确认来自于研究。在这篇综述中,我们概述并更新了我们目前对 Ca 动员在调节中性粒细胞促炎功能中的作用的认识。特别是,我们强调了 Ca 在 NETs 形成和细胞因子分泌中的重要性,这是根据最新发现得出的。这将使我们了解在理解 Ca 依赖性机制的复杂动力学方面还有很长的路要走,以便更深入地了解中性粒细胞在炎症性疾病发病机制中的作用。在综述的最后一部分讨论了调节中性粒细胞功能的治疗潜力,例如 Ca 内流抑制剂可预防自身免疫和慢性炎症性疾病。