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首页> 外文期刊>Nature medicine >Route of immunization defines multiple mechanisms of vaccine-mediated protection against SIV
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Route of immunization defines multiple mechanisms of vaccine-mediated protection against SIV

机译:免疫途径定义了针对SIV的多种疫苗介导保护机制

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Antibodies are the primary correlate of protection for most licensed vaccines; however, their mechanisms of protection may vary, ranging from physical blockade to clearance via the recruitment of innate immunity. Here, we uncover striking functional diversity in vaccine-induced antibodies that is driven by immunization site and is associated with reduced risk of SIV infection in nonhuman primates. While equivalent levels of protection were observed following intramuscular (IM) and aerosol (AE) immunization with an otherwise identical DNA prime-Ad5 boost regimen, reduced risk of infection was associated with IgG-driven antibody-dependent monocyte-mediated phagocytosis in the IM vaccinees, but with vaccine-elicited IgA-driven neutrophil-mediated phagocytosis in AE-immunized animals. Thus, although route-independent correlates indicate a critical role for phagocytic Fc-effector activity in protection from SIV, the site of immunization may drive this Fc activity via distinct innate effector cells and antibody isotypes. Moreover, the same correlates predicted protection from SHIV infection in a second nonhuman primate vaccine trial using a disparate IM canarypox prime-protein boost strategy, analogous to that used in the first moderately protective human HIV vaccine trial. These data identify orthogonal functional humoral mechanisms, initiated by distinct vaccination routes and immunization strategies, pointing to multiple, potentially complementary correlates of immunity that may support the rational design of a protective vaccine against HIV.
机译:抗体是对大多数持牌疫苗的保护的主要相关性;然而,它们的保护机制可能会有所不同,从物理封锁通过招募先天免疫来清除。在这里,我们发现疫苗诱导的抗体的引人函数分集,其由免疫部位驱动,并且与非人灵长类动物中SIV感染的风险降低有关。虽然在肌内(IM)和气溶胶(AE)免疫与其他相同的DNA Prime-Ad5升压方案中观察到等效的保护水平,但感染的风险降低与IgG驱动的抗体依赖性单核细胞介导的IM疫苗中的吞噬作用相关但是,疫苗引发的IgA驱动的中性粒细胞介导的AE-免疫动物介导的吞噬作用。因此,虽然途径无关的相关性表明吞噬细胞Fc-效应活性在保护SIV的关键作用,但免疫部位可以通过不同的先天效应细胞和抗体同种型驱动该Fc活性。此外,使用不同IM Canarypox Prime-蛋白促进策略的第二个非人类灵长类动物疫苗试验中的SHIV感染与第一次中等保护性人艾滋病毒疫苗试验中使用的相同相关性保护的预测保护。这些数据识别正交功能体液机制,由不同的疫苗接种路线和免疫策略引发,指向多重,可能互补的免疫相关性,这些免疫可能支持对艾滋病毒的保护性疫苗的合理设计。

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