Department of Respiratory and Critical Care Medicine, Jinling Hospital, Affiliated Hospital of Medical School, Nanjing University, Nanjing 210093, China.
Int J Mol Sci. 2024 Jan 25;25(3):1464. doi: 10.3390/ijms25031464.
Nowadays, acute respiratory distress syndrome (ARDS) still has a high mortality rate, and the alleviation and treatment of ARDS remains a major research focus. There are various causes of ARDS, among which pneumonia and non-pulmonary sepsis are the most common. Trauma and blood transfusion can also cause ARDS. In ARDS, the aggregation and infiltration of neutrophils in the lungs have a great influence on the development of the disease. Neutrophils regulate inflammatory responses through various pathways, and the release of neutrophils through neutrophil extracellular traps (NETs) is considered to be one of the most important mechanisms. NETs are mainly composed of DNA, histones, and granuloproteins, all of which can mediate downstream signaling pathways that can activate inflammatory responses, generate immune clots, and cause damage to surrounding tissues. At the same time, the components of NETs can also promote the formation and release of NETs, thus forming a vicious cycle that continuously aggravates the progression of the disease. NETs are also associated with cytokine storms and immune balance. Since DNA is the main component of NETs, DNase I is considered a viable drug for removing NETs. Other therapeutic methods to inhibit the formation of NETs are also worthy of further exploration. This review discusses the formation and mechanism of NETs in ARDS. Understanding the association between NETs and ARDS may help to develop new perspectives on the treatment of ARDS.
如今,急性呼吸窘迫综合征(ARDS)的死亡率仍然很高,缓解和治疗 ARDS 仍然是一个主要的研究重点。ARDS 有多种病因,其中肺炎和非肺部败血症最为常见。创伤和输血也会导致 ARDS。在 ARDS 中,肺部中性粒细胞的聚集和浸润对疾病的发展有很大影响。中性粒细胞通过各种途径调节炎症反应,通过中性粒细胞胞外陷阱(NETs)释放中性粒细胞被认为是最重要的机制之一。NETs 主要由 DNA、组蛋白和粒蛋白组成,所有这些都可以介导下游信号通路,激活炎症反应,产生免疫血栓,并对周围组织造成损伤。同时,NETs 的成分也可以促进 NETs 的形成和释放,从而形成一个恶性循环,不断加重疾病的进展。NETs 还与细胞因子风暴和免疫平衡有关。由于 DNA 是 NETs 的主要成分,因此 DNA 酶 I 被认为是一种可行的去除 NETs 的药物。抑制 NETs 形成的其他治疗方法也值得进一步探索。本综述讨论了 ARDS 中 NETs 的形成和机制。了解 NETs 与 ARDS 的关联可能有助于为 ARDS 的治疗提供新的思路。