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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >A MyD88-dependent early IL-17 production protects mice against airway infection with the obligate intracellular pathogen Chlamydia muridarum.
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A MyD88-dependent early IL-17 production protects mice against airway infection with the obligate intracellular pathogen Chlamydia muridarum.

机译:依赖MyD88的早期IL-17产生保护小鼠免受专性细胞内病原体衣原体衣原体感染气道。

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摘要

We found that IL-17, a signature cytokine of Th17, was produced early in the innate immunity phase after an intranasal infection with the obligate intracellular pathogen Chlamydia muridarum. The airway IL-17, which peaked at 48 h after infection, was dependent on live chlamydial organism replication and MyD88-mediated signaling pathways. Treatment with antibiotics or knockout of the MyD88 gene, but not Toll/IL receptor domain-containing adapter-inducing IFN-beta, can block the early IL-17 production. Treatment of mice with an anti-IL-17-neutralizing mAb enhanced growth of chlamydial organisms in the lung, dissemination to other organs, and decreased mouse survival, whereas treatment with an isotype-matched control IgG had no effect. Although IL-17 did not directly affect chlamydial growth in cell culture, it enhanced the production of other inflammatory cytokines and chemokines by Chlamydia-infected cells and promoted neutrophil infiltration in mouse airways during chlamydial infection, which may contribute to the antichlamydial effect of IL-17. These observations suggest that an early IL-17 response as an innate immunity component plays an important role in initiating host defense against infection with intracellular bacterial pathogens in the airway.
机译:我们发现IL-17,Th17的标志性细胞因子,是在专心的细胞内病原体衣原体衣原体鼻内感染后的先天免疫阶段早期产生的。气道IL-17(在感染后48小时达到峰值)取决于活的衣原体生物体复制和MyD88介导的信号通路。用抗生素治疗或敲除MyD88基因,但不去除含有Toll / IL受体域的衔接子诱导型IFN-β,可以阻止早期IL-17的产生。用抗IL-17中和的mAb处理小鼠可增强肺衣原体生物的生长,传播至其他器官,并降低小鼠存活率,而用同型匹配的对照IgG处理则无效果。尽管IL-17不会直接影响细胞培养物中衣原体的生长,但它会增加衣原体感染细胞产生的其他炎性细胞因子和趋化因子的产生,并在衣原体感染过程中促进小鼠气道中性粒细胞的浸润,这可能有助于IL-的抗衣原体作用17。这些观察结果表明,作为固有免疫成分的早期IL-17反应在启动宿主防御气道内细胞内细菌病原体感染的过程中起着重要作用。

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