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Complementing Defective Viruses That Express Separate Paramyxovirus Glycoproteins Provide a New Vaccine Vector Approach▿

机译:表达副粘病毒糖蛋白的互补缺陷病毒提供了一种新的疫苗载体方法

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摘要

Replication-defective vaccine vectors based on vesicular stomatitis virus (VSV) lacking its envelope glycoprotein gene (G) are highly effective in animal models. However, such ΔG vectors are difficult to grow because they require complementation with the VSV G protein. In addition, the complementing G protein induces neutralizing antibodies in animals and thus limits multiple vector applications. In the process of generating an experimental Nipah virus (a paramyxovirus) vaccine, we generated two defective VSVΔG vectors, each expressing one of the two Nipah virus (NiV) glycoproteins (G and F) that are both required for virus entry to host cells. These replication-defective VSV vectors were effective at generating NiV neutralizing antibody in mice. Most interestingly, we found that these two defective viruses could be grown together and passaged in tissue culture cells in the absence of VSV G complementation. This mixture of complementing defective viruses was also highly effective at generating NiV neutralizing antibody in animals. This novel approach to growing and producing a vaccine from two defective viruses could be generally applicable to vaccine production for other paramyxoviruses or for other viruses where the expression of at least two different proteins is required for viral entry. Such an approach minimizes biosafety concerns that could apply to single, replication-competent VSV recombinants expressing all proteins required for infection.
机译:缺乏囊膜糖蛋白基因(G)的基于水泡性口炎病毒(VSV)的复制缺陷型疫苗载体在动物模型中非常有效。但是,这种ΔG载体难以生长,因为它们需要与VSV G蛋白互补。另外,互补G蛋白诱导动物中和抗体,因此限制了多种载体的应用。在产生实验性Nipah病毒(副粘病毒)疫苗的过程中,我们生成了两个有缺陷的VSVΔG载体,每个都表达两种Nipah病毒(NiV)糖蛋白(G和F)之一,这两种病毒都是病毒进入宿主细胞所必需的。这些复制缺陷型VSV载体在小鼠中有效产生NiV中和抗体。最有趣的是,我们发现这两种缺陷病毒可以在没有VSV G互补的情况下一起生长并在组织培养细胞中传代。这种互补缺陷病毒的混合物在动物体内产生NiV中和抗体方面也非常有效。由两种缺陷病毒生长和生产疫苗的这种新颖方法通常可适用于其他副粘病毒或其中病毒表达需要至少两种不同蛋白质表达的其他病毒的疫苗生产。这种方法可以最大程度地减少对生物安全性的担忧,这些担忧可能适用于表达感染所需的所有蛋白质的具有复制能力的VSV重组体。

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