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Nanoplasmid Vectors Co-expressing Innate Immune Agonists Enhance DNA Vaccines for Venezuelan Equine Encephalitis Virus and Ebola Virus

机译:共表达先天性免疫激动剂的纳米质粒载体增强委内瑞拉马脑炎病毒和埃博拉病毒的DNA疫苗

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摘要

DNA vaccines expressing codon-optimized Venezuelan equine encephalitis virus (VEEV) and Ebola virus (EBOV) glycoprotein genes provide protective immunity to mice and nonhuman primates when delivered by intramuscular (IM) electroporation (EP). To achieve equivalent protective efficacy in the absence of EP, we evaluated VEEV and EBOV DNA vaccines constructed using minimalized Nanoplasmid expression vectors that are smaller than conventional plasmids used for DNA vaccination. These vectors may also be designed to co-express type I interferon inducing innate immune agonist genes that have an adjuvant effect. Nanoplasmid vaccinated mice had increased antibody responses as compared to those receiving our conventional pWRG7077-based vaccines when delivered by IM injection, and these responses were further enhanced by the inclusion of the innate immune agonist genes. The Nanoplasmid VEEV DNA vaccines also significantly increased protection against aerosol VEEV challenge as compared to the pWRG7077 VEEV DNA vaccine. Although all mice receiving the pWRG7077 and Nanoplasmid EBOV DNA vaccines at the dose tested survived EBOV challenge, only mice receiving the Nanoplasmid EBOV DNA vaccine that co-expresses the innate immune agonist genes failed to lose weight after challenge. Our results suggest that Nanoplasmid vectors can improve the immunogenicity and protective efficacy of alphavirus and filovirus DNA vaccines.
机译:表达经密码子优化的委内瑞拉马脑炎病毒(VEEV)和埃博拉病毒(EBOV)糖蛋白基因的DNA疫苗在通过肌内(IM)电穿孔(EP)递送时可为小鼠和非人类灵长类动物提供保护性免疫。为了在没有EP的情况下达到同等的保护效果,我们评估了使用最小化的纳米质粒表达载体构建的VEEV和EBOV DNA疫苗,这些载体小于用于DNA疫苗接种的常规质粒。这些载体也可以被设计成共表达具有佐剂作用的I型干扰素诱导的先天免疫激动剂基因。与通过IM注射接受传统的基于pWRG7077的疫苗相比,接种纳米质粒的小鼠具有更高的抗体应答,并且通过包含先天性免疫激动剂基因,这些应答得以进一步增强。与pWRG7077 VEEV DNA疫苗相比,纳米质粒VEEV DNA疫苗还显着增强了针对气溶胶VEEV攻击的保护。尽管所有接受测试剂量的pWRG7077和纳米质粒EBOV DNA疫苗的小鼠都可以抵抗EBOV攻击,但是只有接受了共表达先天性免疫激动剂基因的纳米质粒EBOV DNA疫苗的小鼠在攻击后无法减肥。我们的结果表明,纳米质粒载体可以改善甲病毒和丝状病毒DNA疫苗的免疫原性和保护效力。

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