首页> 外文OA文献 >Immunization with a Vaccine Combining Herpes Simplex Virus 2 (HSV-2) Glycoprotein C (gC) and gD Subunits Improves the Protection of Dorsal Root Ganglia in Mice and Reduces the Frequency of Recurrent Vaginal Shedding of HSV-2 DNA in Guinea Pigs Compared to Immunization with gD Alone ▿
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Immunization with a Vaccine Combining Herpes Simplex Virus 2 (HSV-2) Glycoprotein C (gC) and gD Subunits Improves the Protection of Dorsal Root Ganglia in Mice and Reduces the Frequency of Recurrent Vaginal Shedding of HSV-2 DNA in Guinea Pigs Compared to Immunization with gD Alone ▿

机译:与免疫相比,结合单纯疱疹病毒2(HSV-2)糖蛋白C(gC)和gD亚基的疫苗免疫可改善小鼠背根神经节的保护作用,并减少HSV-2 DNA反复阴道脱落的频率。单独使用gD ▿

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摘要

Attempts to develop a vaccine to prevent genital herpes simplex virus 2 (HSV-2) disease have been only marginally successful, suggesting that novel strategies are needed. Immunization with HSV-2 glycoprotein C (gC-2) and gD-2 was evaluated in mice and guinea pigs to determine whether adding gC-2 to a gD-2 subunit vaccine would improve protection by producing antibodies that block gC-2 immune evasion from complement. Antibodies produced by gC-2 immunization blocked the interaction between gC-2 and complement C3b, and passive transfer of gC-2 antibody protected complement-intact mice but not C3 knockout mice against HSV-2 challenge, indicating that gC-2 antibody is effective, at least in part, because it prevents HSV-2 evasion from complement. Immunization with gC-2 also produced neutralizing antibodies that were active in the absence of complement; however, the neutralizing titers were higher when complement was present, with the highest titers in animals immunized with both antigens. Animals immunized with the gC-2-plus-gD-2 combination had robust CD4+ T-cell responses to each immunogen. Multiple disease parameters were evaluated in mice and guinea pigs immunized with gC-2 alone, gD-2 alone, or both antigens. In general, gD-2 outperformed gC-2; however, the gC-2-plus-gD-2 combination outperformed gD-2 alone, particularly in protecting dorsal root ganglia in mice and reducing recurrent vaginal shedding of HSV-2 DNA in guinea pigs. Therefore, the gC-2 subunit antigen enhances a gD-2 subunit vaccine by stimulating a CD4+ T-cell response, by producing neutralizing antibodies that are effective in the absence and presence of complement, and by blocking immune evasion domains that inhibit complement activation.
机译:尝试开发预防生殖器单纯疱疹病毒2(HSV-2)疾病的疫苗只是勉强成功,这表明需要新的策略。在小鼠和豚鼠中评估了HSV-2糖蛋白C(gC-2)和gD-2的免疫作用,以确定向gD-2亚基疫苗中添加gC-2是否会通过产生可阻断gC-2免疫逃逸的抗体来改善保护从补。 gC-2免疫产生的抗体阻断了gC-2和补体C3b之间的相互作用,并且gC-2抗体的被动转移保护了补体完整小鼠,但没有C3基因敲除小鼠抵抗HSV-2攻击,表明gC-2抗体有效,至少部分是因为它可以防止HSV-2逃避补体。用gC-2免疫还产生中和抗体,该抗体在不存在补体的情况下具有活性。然而,当存在补体时,中和效价更高,用两种抗原免疫的动物中的效价最高。用gC-2-plus-gD-2组合免疫的动物对每种免疫原均具有较强的CD4 + T细胞应答。在单独用gC-2,单独用gD-2或同时用两种抗原免疫的小鼠和豚鼠中评估了多种疾病参数。通常,gD-2的性能优于gC-2;然而,gC-2-plus-gD-2组合优于单独的gD-2,特别是在保护小鼠背根神经节和减少豚鼠HSV-2 DNA反复阴道脱落方面。因此,gC-2亚基抗原通过刺激CD4 + T细胞反应,产生中和抗体(在不存在和存在补体的情况下有效)以及阻断抑制补体激活的免疫逃逸域来增强gD-2亚基疫苗。

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