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Development of a Vaccine against Murine Cytomegalovirus (MCMV), Consisting of Plasmid DNA and Formalin-Inactivated MCMV, That Provides Long-Term, Complete Protection against Viral Replication

机译:抗鼠巨细胞病毒(MCMV)疫苗的开发,由质粒DNA和福尔马林灭活的MCMV组成,可提供长期,全面的病毒复制保护

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摘要

We previously demonstrated that immunization of mice with plasmid DNAs (pDNAs) expressing the murine cytomegalovirus (MCMV) genes IE1-pp89 and M84 provided synergistic protection against sublethal viral challenge, while immunization with plasmids expressing putative virion proteins provided no or inconsistent protection. In this report, we sought to augment protection by increasing the breadth of the immune response. We identified another MCMV gene (m04 encoding gp34) that provided strong and consistent protection against viral replication in the spleen. We also found that immunization with a DNA pool containing 10 MCMV genes that individually were nonprotective elicited reproducible protection against low to intermediate doses of challenge virus. Moreover, inclusion of these plasmids into a mixture with gp34, pp89, and M84 DNAs provided even greater protection than did coimmunization with pp89 and M84. The highest level of protection was achieved by immunization of mice with the pool of 13 pDNAs, followed by formalin-inactivated MCMV (FI-MCMV). Immunization with FI-MCMV elicited neutralizing antibodies against salivary gland-derived MCMV, and of greatest importance, mice immunized with both the combined pDNA pool and FI-MCMV had undetectable levels of virus in the spleen and salivary glands after challenge. Intracellular cytokine staining of splenocytes from pDNA- and FI-MCMV-immunized mice showed that pDNA immunization elicited high levels of pp89- and M83-specific CD8+ T cells, whereas both pDNA and FI-MCMV immunizations generated strong CD8+-T-cell responses against virion-associated antigens. Taken together, these results show that immunization with pDNA and inactivated virus provides strong antibody and cell-mediated immunity against CMV infection.
机译:我们以前证明用表达鼠巨细胞病毒(MCMV)基因IE1-pp89和M84的质粒DNA(pDNA)免疫小鼠可提供针对亚致死性病毒攻击的协同保护作用,而用表达推定病毒体蛋白的质粒进行免疫则不能提供保护作用或保护作用不一致。在本报告中,我们试图通过增加免疫反应的广度来增强保护。我们鉴定了另一个MCMV基因(编码gp34的m04),可为脾脏中的病毒复制提供强大而稳定的保护。我们还发现,使用包含10个MCMV基因的DNA池进行免疫,这些基因分别是非保护性的,可针对中低剂量的攻击性病毒引起可再生的保护。而且,将这些质粒包含在与gp34,pp89和M84 DNA的混合物中,与用pp89和M84共同免疫相比,提供了更大的保护。通过用13种pDNA池免疫小鼠,然后用福尔马林灭活的MCMV(FI-MCMV)进行免疫,可以达到最高的保护水平。 FI-MCMV免疫引发了针对唾液腺来源的MCMV的中和抗体,并且最重要的是,用联合pDNA库和FI-MCMV免疫的小鼠在攻击后在脾脏和唾液腺中均检测不到病毒水平。来自经pDNA和FI-MCMV免疫的小鼠脾细胞的细胞内细胞因子染色显示,pDNA免疫引发了高水平的pp89-和M83特异性CD8 + T细胞,而pDNA和FI-MCMV免疫均产生针对CD80 + -T细胞的强反应病毒体相关抗原。综上所述,这些结果表明,用pDNA和灭活病毒进行免疫可提供针对CMV感染的强大抗体和细胞介导的免疫力。

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