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首页> 外文期刊>The journal of immunology >TLR9 Is Required for Protective Innate Immunity in Gram-Negative Bacterial Pneumonia: Role of Dendritic Cells
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TLR9 Is Required for Protective Innate Immunity in Gram-Negative Bacterial Pneumonia: Role of Dendritic Cells

机译:TLR9是革兰氏阴性细菌性肺炎的保护性先天性免疫所必需的:树突状细胞的作用

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In this study, experiments were performed to determine the contribution of TLR9 to the generation of protective innate immunity against virulent bacterial pathogens of the lung. In initial studies, we found that the intratracheal administration of Klebsiella pneumoniae in wild-type (WT) BALB/c mice resulted in the rapid accumulation of dendritic cells (DC) expressing TLR9. As compared with WT mice, animals deficient in TLR9 (TLR9?/?) displayed significantly increased mortality that was associated with a 50-fold increase in lung CFU and a 400-fold increase in K. pneumoniae CFU in blood and spleen, respectively. Intrapulmonary bacterial challenge in TLR9?/? mice resulted in reduced lung DC accumulation and maturation as well as impaired activation of lung macrophages, NK cells, and αβ and γδ T cells. Mice deficient in TLR9 failed to generate an effective Th1 cytokine response following bacterial administration. The adoptive transfer of bone marrow-derived DC from syngeneic WT but not TLR9?/? mice administered intratracheally reconstituted antibacterial immunity in TLR9?/? mice. Collectively, our findings indicate that TLR9 is required for effective innate immune responses against Gram-negative bacterial pathogens and that approaches to maximize TLR9-mediated DC responses may serve as a means to augment antibacterial immunity in pneumonia.
机译:在这项研究中,进行了实验以确定TLR9对抵抗肺部强力细菌病原体的保护性先天免疫的产生的作用。在最初的研究中,我们发现在野生型(WT)BALB / c小鼠中气管内接种肺炎克雷伯菌导致了表达TLR9的树突状细胞(DC)的快速积累。与野生型小鼠相比,缺乏TLR9(TLR9α/β)的动物的死亡率显着增加,这与血液和脾脏中肺CFU增加> 50倍,肺炎克雷伯菌CFU增加> 400倍有关,分别。 TLR9?/?中的肺内细菌攻击。小鼠导致肺DC的积累和成熟减少,以及肺巨噬细胞,NK细胞以及αβ和γδT细胞的活化受损。缺乏TLR9的小鼠在细菌施用后未能产生有效的Th1细胞因子应答。来自同基因野生型但不是TLR9α/β的骨髓源DC的过继转移。气管内重建的小鼠对TLR9α/β的抗菌免疫力老鼠。总的来说,我们的发现表明,针对革兰氏阴性细菌病原体的有效先天免疫应答需要TLR9,而使TLR9介导的DC应答最大化的方法可能是增强肺炎抗细菌免疫力的一种手段。

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