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一种H5N1疫苗在人体内诱导产生广泛反应性抗血凝素茎部抗体

Induction of broadly reactive anti-hemagglutinin stalk antibodies by an H5N1 vaccine in humans.

作者信息

Nachbagauer Raffael, Wohlbold Teddy John, Hirsh Ariana, Hai Rong, Sjursen Haakon, Palese Peter, Cox Rebecca J, Krammer Florian

机构信息

Department of Microbiology, Icahn School of Medicine at Mount Sinai, New York, NY, USA Faculty of Life Sciences, University of Vienna, Vienna, Austria.

Department of Microbiology, Icahn School of Medicine at Mount Sinai, New York, NY, USA Graduate School of Biological Sciences, Icahn School of Medicine at Mount Sinai, New York, NY, USA.

出版信息

J Virol. 2014 Nov;88(22):13260-8. doi: 10.1128/JVI.02133-14. Epub 2014 Sep 10.

Abstract

UNLABELLED

Influenza virus infections are a major public health concern and cause significant morbidity and mortality worldwide. Current vaccines are effective but strain specific due to their focus on the immunodominant globular head domain of the hemagglutinin (HA). It has been hypothesized that sequential exposure of humans to hemagglutinins with divergent globular head domains but conserved stalk domains could refocus the immune response to broadly neutralizing epitopes in the stalk. Humans have preexisting immunity against H1 (group 1 hemagglutinin), and vaccination with H5 HA (also group 1)--which has a divergent globular head domain but a similar stalk domain--represents one such sequential-exposure scenario. To test this hypothesis, we used novel reagents based on chimeric hemagglutinins to screen sera from an H5N1 clinical trial for induction of stalk-specific antibodies by quantitative enzyme-linked immunosorbent assay (ELISA) and neutralization assays. Importantly, we also investigated the biological activity of these antibodies in a passive transfer in a mouse challenge model. We found that the H5N1 vaccine induced high titers of stalk-reactive antibodies which were biologically active and protective in the passive-transfer experiment. The induced response showed exceptional breadth toward divergent group 1 hemagglutinins but did not extend to group 2 hemagglutinins. These data provide evidence for the hypothesis that sequential exposure to hemagglutinins with divergent globular head domains but conserved stalk domains can refocus the immune response toward the conserved stalk domain. Furthermore, the results support the concept of a chimeric hemagglutinin universal influenza virus vaccine strategy that is based on the same principle.

IMPORTANCE

Influenza virus vaccines have to be reformulated and readministered on an annual basis. The development of a universal influenza virus vaccine could abolish the need for this cumbersome and costly process and would also enhance our pandemic preparedness. This study addressed the following questions, which are essential for the development of a hemagglutinin stalk-based universal influenza virus vaccine. (i) Can stalk-reactive antibodies be boosted by vaccination with divergent HAs that share conserved epitopes? (ii) How long-lived are these vaccine-induced stalk-reactive antibody responses? (iii) What is the breadth of this reactivity? (iv) Are these antibodies functional and protective? Our results further strengthen the concept of induction of stalk-reactive antibodies by sequential exposure to hemagglutinin immunogens with conserved stalk and divergent head domains. A universal influenza virus vaccine based on the same principles seems possible and might have a significant impact on global human health.

摘要

未标记

流感病毒感染是一个重大的公共卫生问题,在全球范围内导致大量发病和死亡。目前的疫苗是有效的,但由于其专注于血凝素(HA)的免疫显性球状头部结构域,所以具有毒株特异性。据推测,人类依次接触具有不同球状头部结构域但茎部结构域保守的血凝素,可能会使免疫反应重新聚焦于茎部的广泛中和表位。人类对H1(第1组血凝素)已有预先存在的免疫力,接种H5 HA(也属于第1组)疫苗——其球状头部结构域不同但茎部结构域相似——就代表了这样一种依次接触的情况。为了验证这一假设,我们使用基于嵌合血凝素的新型试剂,通过定量酶联免疫吸附测定(ELISA)和中和试验,从一项H5N1临床试验的血清中筛选茎部特异性抗体的诱导情况。重要的是,我们还在小鼠攻毒模型的被动转移实验中研究了这些抗体的生物学活性。我们发现H5N1疫苗诱导产生了高滴度的茎部反应性抗体,这些抗体在被动转移实验中具有生物学活性且具有保护作用。诱导的反应对不同的第1组血凝素表现出异常广泛的反应性,但未扩展到第2组血凝素。这些数据为以下假设提供了证据:依次接触具有不同球状头部结构域但茎部结构域保守的血凝素,可以使免疫反应重新聚焦于保守的茎部结构域。此外,结果支持基于相同原理的嵌合血凝素通用流感病毒疫苗策略的概念。

重要性

流感病毒疫苗必须每年重新配制和接种。通用流感病毒疫苗的研发可以消除这一繁琐且昂贵的过程的必要性,还能增强我们对大流行的防范能力。本研究解决了以下对于基于血凝素茎部的通用流感病毒疫苗研发至关重要的问题。(i)接种具有保守表位的不同HA能否增强茎部反应性抗体?(ii)这些疫苗诱导的茎部反应性抗体反应能持续多久?(iii)这种反应性的广度如何?(iv)这些抗体是否具有功能和保护作用?我们的结果进一步强化了通过依次接触具有保守茎部和不同头部结构域的血凝素免疫原诱导茎部反应性抗体的概念。基于相同原理的通用流感病毒疫苗似乎是可行的,可能会对全球人类健康产生重大影响。

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