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在肺炎期间促进炎性小体形成和中性粒细胞胞外陷阱形成。

Promotes Inflammasome Formation and NETosis during Pneumonia.

作者信息

Sayson Steven G, Ashbaugh Alan, Porollo Aleksey, Cushion Melanie T

出版信息

bioRxiv. 2024 Feb 18:2024.02.16.580773. doi: 10.1101/2024.02.16.580773.

Abstract

pneumonia (PjP) poses a serious risk to individuals with compromised immune systems, such as individuals with HIV/AIDS or undergoing immunosuppressive therapies for cancer or solid organ transplants. Severe PjP triggers excessive lung inflammation, resulting in lung function decline and consequential alveolar damage, potentially culminating in acute respiratory distress syndrome. Non-HIV patients face a 30-60%mortality rate, emphasizing the need for a deeper understanding of inflammatory responses in PjP. Prior research emphasized macrophages in infections, neglecting neutrophils' role in tissue damage. Consequently, the overemphasis on macrophages led to an incomplete understanding of the role of neutrophils and inflammatory responses. In the current investigation, our RNAseq studies on a murine surrogate model of PjP revealed heightened activation of the NLRP3 inflammasome and NETosis cell death pathways in their lungs. Immunofluorescence staining confirmed Neutrophil Extracellular Trap (NET) presence in the lungs of the -infected mice, validating our findings. Moreover, isolated neutrophils exhibited NETosis when directly stimulated with . While isolated NETs did not compromise viability, our data highlight the potential role of neutrophils in promoting inflammation during pneumonia through NLRP3 inflammasome assembly and NETosis. These pathways, essential for inflammation and pathogen elimination, bear the risk of uncontrolled activation leading to excessive tissue damage and persistent inflammation. This pioneering study is the first to identify the formation of NETs and inflammasomes during infection, paving the way for comprehensive investigations into treatments aimed at mitigating lung damage and augmenting survival rates for individuals with PjP.

摘要

肺孢子菌肺炎(PjP)对免疫系统受损的个体构成严重风险,例如感染艾滋病毒/艾滋病的个体或正在接受癌症或实体器官移植免疫抑制治疗的个体。严重的PjP会引发过度的肺部炎症,导致肺功能下降以及随之而来的肺泡损伤,最终可能发展为急性呼吸窘迫综合征。非艾滋病毒患者的死亡率为30%至60%,这凸显了深入了解PjP炎症反应的必要性。先前的研究强调巨噬细胞在感染中的作用,而忽视了中性粒细胞在组织损伤中的作用。因此,对巨噬细胞的过度强调导致对中性粒细胞的作用和炎症反应的理解不完整。在当前的研究中,我们对PjP小鼠替代模型的RNA测序研究表明,其肺部的NLRP3炎性小体和中性粒细胞胞外诱捕网(NETosis)细胞死亡途径的激活增强。免疫荧光染色证实感染小鼠的肺部存在中性粒细胞胞外诱捕网(NET),验证了我们的研究结果。此外,分离出的中性粒细胞在用[具体刺激物]直接刺激时会表现出NETosis。虽然分离出的NETs不会损害[具体细胞或物质]的活力,但我们的数据强调了中性粒细胞在PjP肺炎期间通过NLRP3炎性小体组装和NETosis促进炎症的潜在作用。这些对炎症和病原体清除至关重要的途径存在不受控制激活的风险,从而导致过度的组织损伤和持续的炎症。这项开创性的研究首次确定了在[具体病原体]感染期间NETs和炎性小体的形成,为旨在减轻肺部损伤和提高PjP患者生存率的治疗方法的全面研究铺平了道路。

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