首页> 美国卫生研究院文献>Journal of Virology >Characterization of Immune Responses Induced by Intramuscular Vaccination with DNA Vaccines Encoding Measles Virus Hemagglutinin and/or Fusion Proteins
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Characterization of Immune Responses Induced by Intramuscular Vaccination with DNA Vaccines Encoding Measles Virus Hemagglutinin and/or Fusion Proteins

机译:肌内接种编码麻疹病毒血凝素和/或融合蛋白的DNA疫苗引起的免疫应答的表征

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摘要

Measles virus (MV) hemagglutinin (MV-H) and fusion (MV-F) proteins induce plaque reduction neutralizing (PRN) antibodies and cell-mediated immune responses that protect against clinical measles. DNA vaccines that encode MV-H and MV-F are being investigated as a new generation of measles vaccine to protect infants too young to receive currently licensed attenuated measles vaccines. However, it is unclear whether DNA vaccines encoding both MV-H and MV-F act synergistically to induce stronger immunity than immunization with plasmids encoding MV-H or MV-F alone. To address this question, we generated Sindbis virus-based pSINCP DNA vaccines that encode either MV-H or MV-F alone or bicistronic or fusion system vectors that encode both MV-H and MV-F (to mimic MV infection where both MV-H and MV-F proteins are expressed by the same mammalian cell). Mice immunized with DNA vaccine encoding MV-H alone developed significantly greater PRN titers than mice immunized with bicistronic constructs. Interestingly, the presence of MV-F in the bicistronic constructs stimulated serum MV-specific immunoglobulin G of reduced avidity. By contrast, mice immunized with bicistronic constructs induced equivalent or higher levels of MV-specific gamma interferon responses than mice immunized with DNA vaccine encoding MV-H alone. These data will help guide the design of DNA-based MV vaccines to be used early in life in a heterologous prime-boost strategy.
机译:麻疹病毒(MV)血凝素(MV-H)和融合蛋白(MV-F)诱导噬斑减少中和(PRN)抗体和细胞介导的免疫应答,以预防麻疹。正在研究编码MV-H和MV-F的DNA疫苗,作为新一代的麻疹疫苗,以保护年龄太小而无法接受目前许可的减毒麻疹疫苗的婴儿。但是,尚不清楚编码MV-H和MV-F的DNA疫苗是否协同作用以诱导比单独编码MV-H或MV-F的质粒免疫更强的免疫力。为了解决这个问题,我们制作了基于Sindbis病毒的pSINCP DNA疫苗,该疫苗可单独编码MV-H或MV-F或同时编码MV-H和MV-F的双顺反子或融合系统载体(模拟MV-H和MV-F H和MV-F蛋白由同一哺乳动物细胞表达。仅用编码MV-H的DNA疫苗免疫的小鼠比用双顺反子构建体免疫的小鼠具有更高的PRN效价。有趣的是,双顺反子构建体中MV-F的存在刺激了亲和力降低的血清MV特异性免疫球蛋白G。相比之下,与仅用编码MV-H的DNA疫苗免疫的小鼠相比,用双顺反子构建体免疫的小鼠诱导的同等或更高水平的MV特异性γ干扰素应答。这些数据将有助于指导基于DNA的MV疫苗的设计,这些疫苗将在异源初免-加强策略中生命早期使用。

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