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B-cell-deficient mice develop complete immune protection against genital tract infection with Chlamydia trachomatis.

机译:B细胞缺陷小鼠对沙眼衣原体的生殖道感染具有完全的免疫保护作用。

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摘要

We evaluated the ability of mice made genetically deficient for B cells to resolve a primary infection and to develop protective immunity against vaginal challenge with a human isolate of Chlamydia trachomatis bacteria. The B-cell-deficient microMT mice cleared a primary ascending infection with similar or faster kinetics compared with wild-type mice. The presence of chlamydial inclusion bodies and the degree of inflammation in the upper genital tract was comparable and showed similar kinetics in microMT as in wild-type mice. Following resolution of the primary infection the mice were challenged by 100 ID50 of live bacteria and the level of protection and the extent of local inflammation was assessed. Strikingly, all microMT mice, as well as most of the wild-type mice, demonstrated complete immune protection with no bacterial shedding. While high titres of chlamydia-specific antibodies were stimulated locally and systemically in wild-type mice, no antibodies were detected in microMT mice. However, in both strains, immunohistochemical analysis of the upper genital tract demonstrated the presence of large numbers of CD4+ T cells and increased levels of interferon-gamma (IFN-gamma)-producing cells. The results unequivocally demonstrate that antibodies are not required for full protection to develop against ascending infection with a high dose of C. trachomatis in the female genital tract. Our study confirms the notion that cell-mediated immunity, in particular that owing to CD4+ T helper I (Th1)-type cells, is critical for host resistance against C. trachomatis in mice.
机译:我们评估了遗传缺陷的B细胞小鼠的能力,以解决原发性感染以及针对人分离的沙眼衣原体细菌产生针对阴道攻击的保护性免疫。与野生型小鼠相比,缺乏B细胞的microMT小鼠清除了原发性上升感染,其动力学相似或更快。衣原体包涵体的存在和上生殖道炎症的程度是可比的,并且在microMT中显示出与野生型小鼠相似的动力学。在原发感染消退后,小鼠受到100 ID50的活细菌攻击,并评估了其保护水平和局部炎症程度。引人注目的是,所有microMT小鼠以及大多数野生型小鼠均表现出完全的免疫保护,没有细菌脱落。虽然在野生型小鼠中局部和全身性刺激了高滴度的衣原体特异性抗体,但在microMT小鼠中未检测到抗体。但是,在这两种菌株中,上生殖道的免疫组织化学分析均表明存在大量CD4 + T细胞,并且产生干扰素-γ(IFN-γ)的细胞水平升高。结果明确表明,在雌性生殖道中,高剂量的沙眼衣原体不能完全保护其抵抗上升感染。我们的研究证实了以下观点:细胞介导的免疫力,特别是由于CD4 + T辅助I(Th1)型细胞,对宿主抵抗小鼠沙眼衣原体的抵抗力至关重要。

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