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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Combination of Modified NS1 and NS3 as a Novel Vaccine Strategy against Dengue Virus Infection
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Combination of Modified NS1 and NS3 as a Novel Vaccine Strategy against Dengue Virus Infection

机译:修饰的NS1和NS3作为针对登革病毒感染的新型疫苗策略的组合

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摘要

Dengue virus (DENV) causes a range of illness, including dengue fever, dengue hemorrhagic fever, and dengue shock syndrome. DENV nonstructural protein (NS) 1 has been considered to be a desirable vaccine candidate for its ability to induce Ab and complement-dependent cytolysis of DENY-infected cells as well as to block the pathogenic effects of NS1. However a potential drawback of NS1 as a vaccine is that anti-DENV NS1 Abs can lead to endothelial cell damage and platelet dysfunction by antigenic cross-reactivity. Therefore, we modified the DENV NS1 by replacing the C-terminal cross-reactive epitopes with the corresponding region of Japanese encephalitis virus NS1 to generate a chimeric DJ NS1 protein. Active immunization with DJ NS1 induced a strong Ab response. To enhance cellular immunity, we further combined DJ NS1 with DENV NS3 to immunize mice and showed activation of Ag-specific CD4(+) and CDS+T- cells in addition to Ab responses. We further detected NS3-specific CTL activities as well as CD107a expression of effector cells. Importantly, the protective effects attributed by DJ NS1 and NS3 immunization were demonstrated in a DENV-infected mouse model by reduced viral titers, soluble NS1 levels, mouse tail bleeding time, and vascular leakage at skin injection sites. Collectively, the results from this study reveal the humoral and cellular immune responses and the protective effects conferred by DJ NS1 and NS3 immunization in the mouse model of DENV infection and provide a potential strategy for dengue vaccine design.
机译:登革热病毒(Denv)导致一系列疾病,包括登革热,登革热出血热和登革热休克综合征。 DENV非结构蛋白(NS)1已被认为是其诱导AB和补体依赖性细胞的能力的理想疫苗候选者,以及阻断NS1的致病作用。然而,NS1作为疫苗的潜在缺点是通过抗原交叉反应性导致抗Denv NS1 ABS可以导致内皮细胞损伤和血小板功能障碍。因此,通过用日本脑炎病毒NS1的相应区域替换C末端交叉反应性表位来修饰DENV NS1,以产生嵌合DJ NS1蛋白。用DJ NS1主动免疫诱导强AB反应。为了增强细胞免疫,我们将DJ NS1与DENV NS3相结合以免疫小鼠,除了AB反应外,还表现出Ag特异性CD4(+)和Cds + T细胞的活化。我们进一步检测了NS3特异性CTL活动以及效应细胞的CD107A表达。重要的是,通过减少病毒滴度,可溶性NS1水平,小鼠尾声出血时间和皮肤注射部位的血管泄漏,在DEBV感染的小鼠模型中证明了DJ NS1和NS3免疫归因的保护效果。集体,本研究的结果揭示了DJ NS1和NS3免疫赋予DENV感染的小鼠模型中的体液和细胞免疫应答和赋予的保护作用,并为登革热疫苗设计提供了潜在的策略。

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