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Prime-boost strategies combining DNA and inactivated vaccines confer high immunity and protection in cattle against bovine herpesvirus-1

机译:结合DNA和灭活疫苗的初免-加强策略赋予牛高免疫力和针对牛疱疹病毒1的保护

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摘要

DNA vaccines have frequently been associated with poor efficacy in large animals. In the present study, one administration of an inactivated marker vaccine to cattle considerably boosted both humoral and cellular arms of the immune response primed with Bovine herpesvirus-1 (BoHV-1) DNA vaccines encoding glycoprotein D (gD) or gC+gD. Calves vaccinated according to the DNA prime-inactivated boost also showed significantly enhanced virological protection as compared to controls. The 4-logarithms reduction of virus shedding observed in primed-boosted animals was comparable to the one previously reported in calves immunized twice with marker vaccines. Intradermal immunization of cattle with DNA vaccines promoted a Th2-biased immune response but also primed a cellular component that was further boosted by the inactivated vaccine. Individual IgG2 titers of vaccinated calves were significantly correlated to IFN-gamma production. The immunization protocol described in the present study demonstrates the complementarity between DNA and conventional marker vaccines.
机译:DNA疫苗通常与大型动物的功效不佳有关。在本研究中,对牛一次灭活标记疫苗的施用大大增强了用牛疱疹病毒1(BoHV-1)DNA疫苗编码的糖蛋白D(gD)或gC + gD引发的免疫应答的体液和细胞臂。与对照相比,按DNA引发灭活疫苗接种的小牛也显示出明显增强的病毒学保护作用。在增强致敏动物中观察到的病毒减少了4个对数,这与先前报道的用标记疫苗免疫两次的犊牛中的减少相当。用DNA疫苗对牛进行皮内免疫可促进偏向Th2的免疫反应,但也可引发细胞成分,这种成分可通过灭活疫苗进一步增强。接种牛犊的个体IgG2滴度与IFN-γ产生显着相关。本研究中描述的免疫方案证明了DNA与常规标记疫苗之间的互补性。

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