Department of Viroscience, Erasmus Medical Center , Rotterdam, The Netherlands.
Center for Pathogen Evolution, Department of Zoology, University of Cambridge , Cambridge, United Kingdom.
mBio. 2023 Oct 31;14(5):e0048823. doi: 10.1128/mbio.00488-23. Epub 2023 Aug 11.
A/H7 avian influenza viruses cause outbreaks in poultry globally, resulting in outbreaks with significant socio-economical impact and zoonotic risks. Occasionally, poultry vaccination programs have been implemented to reduce the burden of these viruses, which might result in an increased immune pressure accelerating antigenic evolution. In fact, evidence for antigenic diversification of A/H7 influenza viruses exists, posing challenges to pandemic preparedness and the design of vaccination strategies efficacious against drifted variants. Here, we performed a comprehensive analysis of the global antigenic diversity of A/H7 influenza viruses and identified the main substitutions in the hemagglutinin responsible for antigenic evolution in A/H7N9 viruses isolated between 2013 and 2019. The A/H7 antigenic map and knowledge of the molecular determinants of their antigenic evolution add value to A/H7 influenza virus surveillance programs, the design of vaccines and vaccination strategies, and pandemic preparedness.
A/H7 禽流感病毒在全球范围内引发家禽疫情,造成重大社会经济影响和人畜共患病风险。偶尔会实施家禽疫苗接种计划,以减轻这些病毒的负担,这可能会增加免疫压力,加速抗原进化。事实上,A/H7 流感病毒的抗原多样化证据已经存在,这对大流行准备和针对漂移变体的疫苗接种策略设计构成了挑战。在这里,我们对 A/H7 流感病毒的全球抗原多样性进行了全面分析,并确定了导致 2013 年至 2019 年间分离的 A/H7N9 病毒抗原进化的血凝素中的主要取代。A/H7 抗原图谱和其抗原进化的分子决定因素的知识为 A/H7 流感病毒监测计划、疫苗和疫苗接种策略的设计以及大流行准备增加了价值。