首页> 美国卫生研究院文献>Journal of Virology >A Combination DNA and Attenuated Simian Immunodeficiency Virus Vaccine Strategy Provides Enhanced Protection from Simian/Human Immunodeficiency Virus-Induced Disease
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A Combination DNA and Attenuated Simian Immunodeficiency Virus Vaccine Strategy Provides Enhanced Protection from Simian/Human Immunodeficiency Virus-Induced Disease

机译:组合DNA和减毒猿猴免疫缺陷病毒疫苗策略可增强抵抗猿猴/人类免疫缺陷病毒所致疾病的能力

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摘要

Among the most effective vaccine candidates tested in the simian immunodeficiency virus (SIV)/macaque system, live attenuated viruses have been shown to provide the best protection from challenge. To investigate if preimmunization would increase the level of protection afforded by live attenuated SIVmac239Δnef (Δnef), macaques were given two priming immunizations of DNA encoding SIV Gag and Pol proteins, with control macaques receiving vector DNA immunizations. In macaques receiving the SIV DNA inoculation, SIV-specific cellular but not humoral responses were readily detectable 2 weeks after the second DNA inoculation. Following boosting with live attenuated virus, control of Δnef replication was superior in SIV-DNA-primed macaques versus vector-DNA-primed macaques and was correlated with higher levels of CD8+/gamma-interferon-positive and/or interleukin-2-positive cells. Challenge with an intravenous inoculation of simian/human immunodeficiency virus (SHIV) strain SHIV89.6p resulted in infection of all animals. However, macaques receiving SIV DNA as the priming immunizations had statistically lower viral loads than control animals and did not develop signs of disease, whereas three of seven macaques receiving vector DNA showed severe CD4+ T-cell decline, with development of AIDS in one of these animals. No correlation of immune responses to protection from disease could be derived from our analyses. These results demonstrate that addition of a DNA prime to a live attenuated virus provided better protection from disease following challenge than live attenuated virus alone.
机译:在猿猴免疫缺陷病毒(SIV)/猕猴系统中测试的最有效的候选疫苗中,减毒活病毒已显示出对攻击的最佳保护。为了研究预免疫是否会增强减毒活SIVmac239Δnef(Δnef)所提供的保护水平,猕猴接受了两次编码SIV Gag和Pol蛋白的DNA的初免免疫,而对照猕猴则接受了载体DNA免疫。在接受SIV DNA接种的猕猴中,在第二次DNA接种后2周,可以很容易地检测到SIV特异性的细胞反应而非体液反应。用减毒活病毒加强接种后,SIV-DNA致敏猕猴对Δnef复制的控制优于载体-DNA致敏猕猴,并且与较高水平的CD8 + /γ-干扰素阳性和/或白介素2阳性细胞。静脉注射猿猴/人类免疫缺陷病毒(SHIV)株SHIV89.6p引起的攻击导致所有动物感染。但是,接受SIV DNA初免免疫的猕猴的病毒载量在统计学上低于对照动物,并且没有发展成疾病迹象,而接受载体DNA的七只猕猴中有三只表现出严重的CD4 + T细胞下降,其中一种动物患有艾滋病。我们的分析无法得出免疫反应与疾病防护的相关性。这些结果表明,向减毒活病毒中添加DNA引物比单独的减毒活病毒提供了更好的针对疾病的保护。

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