Sepsis is a systemic inflammatory response resulting from local infection due, at least in part, to impaired neutrophil migration. IL-12 and IL-18 play an important role in neutrophil migration. We have investigated the mechanism and relative role of IL-12 and IL-18 in polymicrobial sepsis induced by cecal ligation and puncture (CLP) in mice. Wild-type (WT) and IL-18(-/-) mice were resistant to sublethal CLP (SL-CLP) sepsis. In contrast, IL-12(-/-) mice were susceptible to SL-CLP sepsis with high bacteria load in peritoneal cavity and systemic inflammation (serum TNF-alpha and lung neutrophil infiltration). The magnitude of these events was similar to those observed in WT mice with lethal CLP sepsis. The inability of IL-12(-/-) mice to restrict the infection was not due to impairment of neutrophil migration, but correlated with decrease of phagocytosis, NO production, and microbicidal activities of their neutrophils, and with reduction of systemic IFN-gamma synthesis. Consistent with this observation, IFN-gamma(-/-) mice were as susceptible to SL-CLP as IL-12(-/-) mice. Moreover, addition of IFN-gamma to cultures of neutrophils from IL-12(-/-) mice restored their phagocytic, microbicidal activities and NO production. Mortality of IL-12(-/-) mice to SL-CLP was prevented by treatment with IFN-gamma. Thus we show that IL-12, but not IL-18, is critical to an efficient host defense in polymicrobial sepsis. IL-12 acts through induction of IFN-gamma and stimulation of phagocytic and microbicidal activities of neutrophils, rather than neutrophil migration per se. Our data therefore provide further insight into the defense mechanism against this critical area of infectious disease.

译文

败血症是由局部感染引起的全身性炎症反应,至少部分原因是中性粒细胞迁移受损。IL-12和IL-18在中性粒细胞迁移中起重要作用。我们已经研究了IL-12和IL-18在盲肠结扎和穿刺 (CLP) 诱导的小鼠微生物败血症中的作用和相关作用。野生型 (WT) 和IL-18(-/-) 小鼠对亚致死性CLP (sl-clp) 败血症具有抗性。相反,IL-12(-/-) 小鼠对sl-clp败血症易感,腹膜腔细菌负荷高,全身炎症 (血清TNF-α 和肺中性粒细胞浸润)。这些事件的程度与在致命CLP败血症的WT小鼠中观察到的相似。IL-12(-/-) 小鼠无法限制感染不是由于嗜中性粒细胞迁移受损,而是与嗜中性粒细胞的吞噬作用,NO产生和杀微生物活性降低以及全身性IFN-γ 合成减少有关。与该观察结果一致,IFN-γ (-/-) 小鼠与IL-12(-/-) 小鼠一样易受sl-clp影响。此外,向来自IL-12(-/-) 小鼠的中性粒细胞培养物中添加IFN-γ 恢复了其吞噬,杀微生物活性和NO产生。IL-12(-/-) 小鼠对sl-clp的死亡率通过IFN-γ 处理来预防。因此,我们表明,IL-12而非IL-18对于微生物败血症的有效宿主防御至关重要。IL-12通过诱导IFN-γ 和刺激中性粒细胞的吞噬和杀微生物活性而起作用,而不是中性粒细胞本身的迁移。因此,我们的数据提供了针对这一关键传染病领域的防御机制的进一步见解。

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