首页> 美国卫生研究院文献>Vaccines >A Live-Attenuated Prime Inactivated Boost Vaccination Strategy with Chimeric Hemagglutinin-Based Universal Influenza Virus Vaccines Provides Protection in Ferrets: A Confirmatory Study
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A Live-Attenuated Prime Inactivated Boost Vaccination Strategy with Chimeric Hemagglutinin-Based Universal Influenza Virus Vaccines Provides Protection in Ferrets: A Confirmatory Study

机译:一项基于嵌合血凝素的通用流感病毒活疫苗初免灭活加强疫苗接种策略可为雪貂提供保护:一项验证性研究

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摘要

Influenza viruses cause severe diseases and mortality in humans on an annual basis. The current influenza virus vaccines can confer protection when they are well-matched with the circulating strains. However, due to constant changes of the virus surface glycoproteins, the vaccine efficacy can drop substantially in some seasons. In addition, the current seasonal influenza virus vaccines do not protect from avian influenza viruses of human pandemic potential. Novel influenza virus vaccines that aim to elicit antibodies against conserved epitopes like the hemagglutinin stalk could not only reduce the burden of drifted seasonal viruses but potentially also protect humans from infection with zoonotic and emerging pandemic influenza viruses. In this paper, we generated influenza virus vaccine constructs that express chimeric hemagglutinins consisting of exotic, avian head domains and a consistent stalk domain of a seasonal virus. Using such viruses in a sequential immunization regimen can redirect the immune response towards conserved epitopes. In this study, male ferrets received a live-attenuated vaccine virus based on the A/Ann Arbor/6/60 strain expressing a chimeric H8/1 (cH8/1) hemagglutinin, which was followed by a heterologous booster vaccination with a cH5/1N1 formalin inactivated non-adjuvanted whole virus. This group was compared to a second group that received a cH8/1N1 inactivated vaccine followed by a cH5/1N1 inactivated vaccine. Both groups showed a reduction in viral titers in the upper respiratory tract after the A(H1N1)pdm09 virus challenge. Animals that received the live-attenuated vaccine had low or undetectable titers in the lower respiratory tract. The results support the further development of chimeric hemagglutinin-based vaccination strategies. The outcome of this study confirms and corroborates findings from female ferrets primed with a A/Leningrad/134/17/57-based live attenuated cH8/1N1 vaccine followed by vaccination with an AS03-adjuvanted cH5/1N1 split virus vaccine 10.
机译:流感病毒每年导致人类严重疾病和死亡。当前的流感病毒疫苗与流行株完全匹配时可以提供保护。但是,由于病毒表面糖蛋白的不断变化,疫苗的功效在某些季节可能会大大下降。另外,当前的季节性流感病毒疫苗不能保护具有人类大流行潜力的禽流感病毒。旨在引发针对保守抗原决定簇(如血凝素茎)的抗体的新型流感病毒疫苗不仅可以减轻季节性流感病毒的负担,而且还可以保护人类免受人畜共患和新兴大流行性流感病毒的感染。在本文中,我们生成了表达嵌合血凝素的流感病毒疫苗构建体,该嵌合血凝素由外来的,禽类的头部域和季节性病毒的一致的茎域组成。在顺序免疫方案中使用此类病毒可将免疫反应重定向至保守的表位。在这项研究中,雄性雪貂收到了减毒的活疫苗病毒,该病毒基于A / Ann Arbor / 6/60株,表达嵌合H8 / 1(cH8 / 1)血凝素,随后进行了cH5 / 1N1福尔马林灭活的非佐剂全病毒。将这一组与第二组分别接受cH8 / 1N1灭活疫苗和随后的cH5 / 1N1灭活疫苗进行比较。两组均显示在A(H1N1)pdm09病毒攻击后上呼吸道病毒滴度降低。接受减毒活疫苗的动物在下呼吸道的滴度较低或无法检测。结果支持基于嵌合血凝素的疫苗接种策略的进一步发展。这项研究的结果证实并证实了以A / Leningrad / 134/17/57为基础的减毒活cH8 / 1N1活疫苗引发的雌性雪貂的结果,然后接种了AS03佐剂的cH5 / 1N1分裂病毒疫苗。

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