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首页> 外文期刊>AIDS Research and Human Retroviruses >A combination microbicide gel protects macaques against vaginal simian human immunodeficiency virus-reverse transcriptase infection, but only partially reduces herpes simplex virus-2 infection after a single high-dose cochallenge
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A combination microbicide gel protects macaques against vaginal simian human immunodeficiency virus-reverse transcriptase infection, but only partially reduces herpes simplex virus-2 infection after a single high-dose cochallenge

机译:组合杀菌剂凝胶可保护猕猴免于感染猿猴抗人免疫缺陷病毒逆转录酶,但仅在单次大剂量攻击后仅能部分减少单纯疱疹病毒2感染。

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摘要

Herpes simplex virus-2 (HSV-2) infection increases HIV susceptibility. We previously established a rhesus macaque model of vaginal HSV-2 preexposure followed by cochallenge with HSV-2 and simian/human immunodeficiency virus-reverse transcriptase (SHIV-RT). Using this model, we showed that a gel containing the nonnucleoside reverse transcriptase inhibitor (NNRTI) MIV-150 in carrageenan (CG) reduced SHIV-RT infection. To evaluate the efficacy of new generation microbicides against both viruses, we first established dual infection after single vaginal cochallenge with SHIV-RT and HSV-2 in HSV-2-naive macaques. All animals (6/6) became HSV-2 infected, with 4/6 coinfected with SHIV-RT. In a control group cochallenged with SHIV-RT and UV-inactivated HSV-2, 2/4 became SHIV-RT infected, and none had detectable HSV-2. Low-level HSV-2-specific antibody and T cell responses were detected in some HSV-2-infected animals. To test a CG gel containing MIV-150 and zinc acetate (MZC), which provided naive animals full protection from SHIV-RT for at least 8 h, MZC (vs. CG) was applied daily for 14 days followed by cochallenge 8 h later. MZC prevented SHIV-RT infection (0/9 infected, p=0.04 vs. 3/6 in CG controls), but only reduced HSV-2 infection by 20% (6/9 infected vs. 5/6 in CG, p=0.6). In HSV-2-infected animals, none of the gel-treated animals seroconverted, and only the CG controls had measurable HSV-2-specific T cell responses. This study shows the promise of MZC to prevent immunodeficiency virus infection (even in the presence of HSV-2) and reduce HSV-2 infection after exposure to a high-dose inoculum. Additionally, it demonstrates the potential of a macaque coinfection model to evaluate broad-spectrum microbicides.
机译:单纯疱疹病毒2(HSV-2)感染会增加HIV易感性。我们先前建立了阴道HSV-2预暴露的恒河猴模型,然后用HSV-2和猿猴/人免疫缺陷病毒逆转录酶(SHIV-RT)进行挑战。使用此模型,我们显示了在角叉菜胶(CG)中包含非核苷逆转录酶抑制剂(NNRTI)MIV-150的凝胶可减少SHIV-RT感染。为了评估新一代杀微生物剂对两种病毒的功效,我们首先在初次感染HSV-2的猕猴中用SHIV-RT和HSV-2进行了单次阴道攻击后建立了双重感染。所有动物(6/6)感染了HSV-2,其中4/6感染了SHIV-RT。在与SHIV-RT和紫外线灭活的HSV-2共同挑战的对照组中,有2/4被SHIV-RT感染,没有一个可检测到HSV-2。在某些被HSV-2感染的动物中检测到低水平的HSV-2特异性抗体和T细胞反应。为了测试包含MIV-150和醋酸锌(MZC)的CG凝胶,该凝胶能为幼稚动物提供至少8小时的SHIV-RT全面保护,每天使用MZC(相对于CG)持续14天,然后在8小时后进行挑战。 MZC预防了SHIV-RT感染(0/9感染,p = 0.04 vs. CG对照的3/6),但仅将HSV-2感染减少了20%(6/9感染vs. CG中5/6,p = 0.6)。在感染HSV-2的动物中,没有经过凝胶处理的动物都发生血清转化,只有CG对照具有可测量的HSV-2特异性T细胞反应。这项研究表明,MZC有望预防免疫缺陷病毒感染(即使在存在HSV-2的情况下)并减少暴露于高剂量接种物后的HSV-2感染。此外,它证明了猕猴共感染模型评估广谱杀菌剂的潜力。

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