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中国上海港口 2016/2017 年流感监测末期 A(H3N2) 病毒遗传变异增加。

Increased genetic variation of A(H3N2) virus from influenza surveillance at the end of the 2016/2017 season for Shanghai port, China.

机构信息

Shanghai International Travel Healthcare Center, Shanghai, 200335, China.

Shanghai Customs District P.R.China, Shanghai, 200135, China.

出版信息

Sci Rep. 2022 Oct 12;12(1):17089. doi: 10.1038/s41598-022-19228-y.

Abstract

Influenza A(H3N2) virus exhibited complex seasonal patterns to evade pre-existing antibodies, resulting in changes in the antigenicity of the viron surface protein hemagglutinin (HA). To monitor the currently imported influenza viruses as well as to assess the capacity of health emergencies at the Shanghai port, we collected respiratory specimens of passengers from different countries and regions including some of Europe with influenza-like illness at the Shanghai port during 2016/2017, examined amino acid substitutions, and calculated the perfect-match vaccine efficacy using the p epitope model. Phylogenetic analysis of the HA genes revealed that influenza A(H3N2) viruses belonging to eight subclades were detected, and three amino acid substitutions in the subclade 3C.2a.4 were also added. Besides, two epidemic influenza virus strains were found in the 2016/2017 winter and 2016 summer. The results of lower predicted vaccine effectiveness in summer suggest that the imported A(H3N2) strains were not a good match for the A/Hong Kong/4801/2014 vaccine strain since the summer of 2017. Therefore, the Shanghai Port might stop the risk of the international spread of influenza for the first time, and curb the entry of A(H3N2) from overseas at the earliest stage of a probable influenza pandemic.

摘要

甲型 H3N2 流感病毒表现出复杂的季节性模式,以逃避预先存在的抗体,从而导致病毒表面蛋白血凝素 (HA) 的抗原性发生变化。为了监测当前输入的流感病毒,并评估上海口岸的突发卫生事件应对能力,我们在 2016/2017 年收集了来自不同国家和地区(包括一些欧洲国家)在上海口岸出现流感样症状的旅客的呼吸道标本,检测了氨基酸取代情况,并使用 p 表位模型计算了完美匹配疫苗的效力。HA 基因的系统进化分析显示,检测到属于 8 个亚系的甲型 H3N2 病毒,并且在 3C.2a.4 亚系中还增加了 3 个氨基酸取代。此外,在 2016/2017 年冬季和 2016 年夏季发现了两种流行的流感病毒株。夏季预测疫苗效力较低的结果表明,自 2017 年夏季以来,输入的 A(H3N2) 株与 A/Hong Kong/4801/2014 疫苗株不太匹配。因此,上海口岸可能首次阻止了流感的国际传播风险,并在可能的流感大流行的最早阶段遏制了海外 A(H3N2) 的传入。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/085b/9556717/964ffb40f1d3/41598_2022_19228_Fig1_HTML.jpg

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