Evaluation of Immunization Route in Induction of Vaccine-Mediated Anti-Gonococcal Immune Responses in a Murine Model of Ascending Infection

Kathryn A Matthias, Kristie L Connolly, Ann E Jerse, Ogan K Kumova, Andrew N Macintyre, Mary C Gray, Keena S Thomas, Alison K Criss, Ryszard A Zielke, Lixin Li, Aleksandra E Sikora, Fidel Ramirez-Bencomo, Angela Thistlethwaite, Jeremy P Derrick, Wei-En Lu, Margaret C Bash
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Abstract

Background Identification of immune correlates in murine gonorrhea models has been hampered by study-dependent differences in vaccine antigens and administration routes. We previously showed that detergent-detoxified outer membrane vesicles (dOMVs) isolated from a PorA-, PorB-, and RmpM-deficient meningococcal strain (ΔABR) elicit antibodies that cross-react with Neisseria gonorrhoeae and enhance gonococcal clearance in a mouse model of lower reproductive tract infection. In this study, we investigated whether (1) ΔABR dOMVs can protect mice from ascending gonococcal infection and (2) vaccination route influences immune responses. Methods Mice were vaccinated subcutaneously (SC) or intraperitoneally (IP) and then vaginally inoculated with gonococci. Bioburden of mice was measured and assessed relative to ΔABR dOMV-induced cellular and humoral immune responses. Results Subcutaneous and intraperitoneal vaccination accelerated gonococcal clearance from the lower and upper reproductive tract at similar rates. Probing of gonococcal protein microarrays with immune sera from the 2 groups identified multiple vaccine targets that were commonly immunogenic. Despite comparable clearance patterns in vaccinated mice, differences in immune induction were observed that were dependent on administration route. SC immunized mice demonstrated a neutrophil influx that correlated with decreased vaginal bioburden; higher serum bactericidal activity against nonsialylated gonococci was also noted. In contrast, IP immunization induced higher serum and vaginal IgA levels, serum bactericidal activity against sialylated gonococci, and antigonococcal opsonophagocytic killing activity of neutrophils. Conclusions This work demonstrates that ΔABR dOMVs protect against ascending gonococcal infection and that cellular and functional antibody responses to the same candidate vaccine may vary depending on immunization route.
免疫途径在小鼠上升感染模型中诱导疫苗介导的抗淋球菌免疫应答的评价
小鼠淋病模型中免疫相关因子的鉴定一直受到疫苗抗原和给药途径的研究依赖差异的阻碍。我们之前在小鼠下生殖道感染模型中发现,从PorA-, PorB-和rmpm缺陷脑膜炎球菌菌株(ΔABR)中分离的洗涤剂解毒外膜囊泡(domv)可引发与淋病奈球菌交叉反应的抗体,并增强淋球菌清除。在本研究中,我们研究了(1)ΔABR domv是否可以保护小鼠免受上升淋球菌感染,(2)接种途径是否影响免疫反应。方法对小鼠进行皮下或腹腔接种,然后经阴道接种淋球菌。相对于ΔABR domv诱导的细胞和体液免疫反应,测量和评估小鼠的生物负荷。结果皮下注射和腹腔注射可加速下生殖道和上生殖道的淋球菌清除率。用两组免疫血清检测淋球菌蛋白微阵列,发现了多个通常具有免疫原性的疫苗靶点。尽管在接种疫苗的小鼠中有类似的清除模式,但观察到免疫诱导的差异取决于给药途径。SC免疫小鼠显示中性粒细胞内流与阴道生物负荷减少相关;血清对非唾液化淋球菌的杀菌活性也较高。相比之下,IP免疫诱导血清和阴道IgA水平升高,血清对唾液化淋球菌的杀菌活性升高,抗淋球菌嗜中性粒细胞的杀伤活性升高。结论:本研究表明ΔABR domv对上升的淋球菌感染具有保护作用,并且对同一候选疫苗的细胞和功能抗体反应可能因免疫途径而异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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