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女性生殖道中的 CD4⁺ T 细胞免疫依赖于局部黏膜免疫接种。

CD4⁺ T-cell immunity in the female genital tract is critically dependent on local mucosal immunization.

机构信息

Department of Microbiology and Immunology, Mucosal Immunobiology and Vaccine Center, Institute of Biomedicine, University of Gothenburg, Gothenburg, Sweden.

出版信息

Eur J Immunol. 2011 Sep;41(9):2642-53. doi: 10.1002/eji.201041297.

Abstract

Immunizations via the i.n. and intravaginal (ivag) routes effectively generate strong genital tract antibody-mediated immunity. To what extent the same is true for T-cell responses is incompletely known. Therefore, we set out to investigate optimal conditions for stimulation of genital tract CD4(+) T-cell responses, using adoptive transfer of mouse DO11.10 TCR transgenic T cells specific for OVA and OVA conjugated to cholera toxin (CT) as an immunogen. We observed that progesterone was required for a T-cell response following ivag immunization, whereas estradiol prevented a response. Although i.n. immunization stimulated OVA-specific CD4(+) T-cell responses in the draining LNs, it was substantially less effective compared to ivag. More importantly, an ivag booster immunization was absolutely required to attract T cells to the genital tract mucosa itself. While clinical use of CT is precluded because of its toxicity, we developed a combined adjuvant vector based on a non-toxic derivative of CT and immune-stimulating complexes. The CTA1-DD/immune-stimulating complexes (ISCOMs) adjuvant together with major outer membrane protein was effective at stimulating genital tract CD4(+) T-cell immunity and protection against a live chlamydial infection, which holds promise for the development of mucosal vaccines against sexually transmitted infections.

摘要

经鼻内和阴道(ivag)途径进行免疫接种可有效地产生强烈的生殖道抗体介导的免疫。T 细胞反应在多大程度上也是如此尚不完全清楚。因此,我们着手研究使用卵清蛋白(OVA)和霍乱毒素(CT)偶联的 OVA 作为免疫原的小鼠 DO11.10 TCR 转基因 T 细胞过继转移来刺激生殖道 CD4(+)T 细胞反应的最佳条件。我们观察到,阴道内免疫接种后需要孕激素来产生 T 细胞反应,而雌激素则会阻止反应。虽然鼻内免疫接种可刺激引流淋巴结中的 OVA 特异性 CD4(+)T 细胞反应,但与阴道内免疫接种相比,其效果要差得多。更重要的是,阴道内加强免疫接种绝对需要将 T 细胞吸引到生殖道黏膜本身。虽然 CT 的临床应用因其毒性而受到限制,但我们开发了一种基于 CT 的无毒衍生物和免疫刺激复合物的联合佐剂载体。CTA1-DD/免疫刺激复合物(ISCOMs)佐剂与主要外膜蛋白一起有效地刺激生殖道 CD4(+)T 细胞免疫和预防活衣原体感染,这为开发针对性传播感染的黏膜疫苗提供了希望。

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