首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Respiratory Bordetella bronchiseptica Carriage is Associated with Broad Phenotypic Alterations of Peripheral CD4+CD25+ T Cells and Differentially Affects Immune Responses to Secondary Non-Infectious and Infectious Stimuli in Mice
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Respiratory Bordetella bronchiseptica Carriage is Associated with Broad Phenotypic Alterations of Peripheral CD4+CD25+ T Cells and Differentially Affects Immune Responses to Secondary Non-Infectious and Infectious Stimuli in Mice

机译:呼吸道支气管败血波氏杆菌携带与周围CD4 + CD25 + T细胞的广泛表型改变有关并差异影响小鼠对次级非感染性和感染性刺激的免疫反应。

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摘要

The respiratory tract is constantly exposed to the environment and displays a favorable niche for colonizing microorganisms. However, the effects of respiratory bacterial carriage on the immune system and its implications for secondary responses remain largely unclear. We have employed respiratory carriage with Bordetella bronchiseptica as the underlying model to comprehensively address effects on subsequent immune responses. Carriage was associated with the stimulation of Bordetella-specific CD4+, CD8+, and CD4+CD25+Foxp3+ T cell responses, and broad transcriptional activation was observed in CD4+CD25+ T cells. Importantly, transfer of leukocytes from carriers to acutely B. bronchiseptica infected mice, resulted in a significantly increased bacterial burden in the recipient’s upper respiratory tract. In contrast, we found that respiratory B. bronchiseptica carriage resulted in a significant benefit for the host in systemic infection with Listeria monocytogenes. Adaptive responses to vaccination and influenza A virus infection, were unaffected by B. bronchiseptica carriage. These data showed that there were significant immune modulatory processes triggered by B. bronchiseptica carriage, that differentially affect subsequent immune responses. Therefore, our results demonstrated the complexity of immune regulation induced by respiratory bacterial carriage, which can be beneficial or detrimental to the host, depending on the pathogen and the considered compartment.
机译:呼吸道一直暴露在环境中,并表现出有利于微生物繁殖的利基环境。然而,呼吸细菌运输对免疫系统的影响及其对继发反应的影响仍不清楚。我们已将呼吸道支气管败血波氏杆菌作为基础模型来全面解决对后续免疫反应的影响。运输与刺激博德特氏菌特异性CD4 + ,CD8 + 和CD4 + CD25 + Foxp3的刺激有关 + T细胞反应,并在CD4 + CD25 + T细胞中观察到广泛的转录激活。重要的是,白细胞从携带者向急性支气管败血性博德特氏菌感染的小鼠的转移导致受体上呼吸道的细菌负担显着增加。相比之下,我们发现呼吸道支气管败血性芽孢杆菌携带导致宿主在单核细胞增生性李斯特菌的全身感染中具有显着优势。对疫苗接种和甲型流感病毒感染的适应性反应不受支气管败血性芽孢杆菌携带的影响。这些数据表明,支气管败血性芽孢杆菌携带触发了明显的免疫调节过程,这些过程差异性地影响随后的免疫反应。因此,我们的结果证明了由呼吸细菌携带引起的免疫调节的复杂性,这取决于病原体和所考虑的区室,对宿主是有益还是有害。

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