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The immunogenicity, protective efficacy and safety of BBG2Na, a subunit respiratory syncytial virus (RSV) vaccine candidate, against RSV-B

机译:亚基呼吸道合胞病毒(RSV)候选疫苗BBG2Na对RSV-B的免疫原性,保护功效和安全性

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Respiratory syncytial virus (RSV) is divided into subgroups A and B, based primarily on variation within the G glycoprotein. A safe vaccine that protects against both would be the ideal. BBG2Na is a recombinant subunit RSV vaccine candidate derived in part from the G protein of RSV-A. Interestingly, BBG2Na formulated in alum protected against RSV-B challenge at early time points following vaccination in mice. Over 6 months, however, BBG2Na-induced immunogenicity and protective efficacy progressively diminished, such that few animals were considered protected at the end. To study the safety of BBG2Na relative to RSV-B challenge, we established a novel enhanced immunopathology mouse model. We confirmed that RSV-B challenge of formalin-inactivated RSV-A (FI-RSV-A)-immunized BALB/c mice results in enhanced pulmonary pathology. Therefore, this phenomenon is neither subgroup-specific nor dependent on a previously incriminated Th epitope in the RSV-A G protein. In stark contrast, BBG2Na did not induce any signs of enhanced pulmonary pathology. In conclusion, our data indicate that BBG2Na, formulated in alum, induces safe and protective immune responses against RSV-B challenge in mice. However, the duration of protective immunity will probably be insufficient to prevent RSV-B infection for the duration of the RSV epidemic season.
机译:呼吸道合胞病毒(RSV)主要基于G糖蛋白内的变异分为亚组A和B。理想的选择是可以同时保护两者的安全疫苗。 BBG2Na是部分源自RSV-A G蛋白的重组RSV亚单位候选疫苗。有趣的是,在明矾中配制的BBG2Na可在小鼠接种疫苗后的早期时间点抵抗RSV-B攻击。然而,在6个月以上的时间里,BBG2Na诱导的免疫原性和保护效力逐渐降低,因此最后只被认为受到保护的动物很少。为了研究相对于RSV-B攻击的BBG2Na的安全性,我们建立了一种新型的增强免疫病理小鼠模型。我们证实福尔马林灭活的RSV-A(FI-RSV-A)免疫的BALB / c小鼠的RSV-B攻击导致增强的肺部病理。因此,该现象既不是亚组特异性的,也不是依赖于RSV-A G蛋白中先前隐含的Th表位的。与之形成鲜明对比的是,BBG2Na并未引起任何肺部病理改变的迹象。总之,我们的数据表明,在明矾中配制的BBG2Na可以诱导小鼠抵抗RSV-B攻击的安全和保护性免疫反应。但是,在RSV流行季节期间,保护性免疫的持续时间可能不足以防止RSV-B感染。

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