Sepsis results in a state of relative immunosuppression, rendering critically ill patients susceptible to secondary infections and increased mortality. Monocytes isolated from septic patients and experimental animals display a "deactivated" phenotype, characterized by impaired inflammatory and antimicrobial responses, including hyporesponsiveness to LPS. We investigated the role of the LPS/TLR4 axis and its inhibitor, IL-1 receptor-associated kinase-M (IRAK-M), in modulating the immunosuppression of sepsis using a murine model of peritonitis-induced sepsis followed by secondary challenge by intratracheal Pseudomonasaeruginosa. Septic mice demonstrated impaired alveolar macrophage function and increased mortality when challenged with intratracheal Pseudomonas as compared with nonseptic controls. TLR2 and TLR4 expression was unchanged in the lung following sepsis, whereas levels of IRAK-M were upregulated. Macrophages from IRAK-M-deficient septic mice produced higher levels of proinflammatory cytokines ex vivo and greater costimulatory molecule expression in vivo as compared with those of their WT counterparts. Following sepsis and secondary intrapulmonary bacterial challenge, IRAK-M(-/-) animals had higher survival rates and improved bacterial clearance from lung and blood compared with WT mice. In addition, increased pulmonary chemokine and inflammatory cytokine production was observed in IRAK-M(-/-) animals, leading to enhanced neutrophil recruitment to airspaces. Collectively, these findings indicate that IRAK-M mediates critical aspects of innate immunity that result in an immunocompromised state during sepsis.

译文

败血症导致相对免疫抑制状态,使重症患者易继发感染并增加死亡率。从败血症患者和实验动物中分离出的单核细胞显示出 “失活” 表型,其特征是炎症和抗菌反应受损,包括对LPS的低反应性。我们研究了LPS/TLR4轴及其抑制剂IL-1受体相关激酶M (IRAK-M) 在调节脓毒症免疫抑制中的作用,该模型使用腹膜炎诱导的脓毒症,然后通过气管内假单胞菌继发攻击的鼠模型。与非败血症对照组相比,败血症小鼠的肺泡巨噬细胞功能受损,死亡率增加。脓毒症后肺中TLR2和TLR4表达不变,而IRAK-M水平上调。与WT对应物相比,来自IRAK-M缺陷脓毒症小鼠的巨噬细胞在体外产生更高水平的促炎细胞因子,并在体内产生更大的共刺激分子表达。与WT小鼠相比,在败血症和继发性肺内细菌攻击后,IRAK-M(-/-) 动物具有更高的存活率,并且从肺和血液中清除细菌。此外,在IRAK-M(-/-) 动物中观察到肺趋化因子和炎性细胞因子的产生增加,导致中性粒细胞向空气空间的募集增强。总的来说,这些发现表明IRAK-M介导了先天免疫的关键方面,从而导致败血症期间的免疫功能低下状态。

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