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甲型猪流感病毒的全球抗原多样性。

The global antigenic diversity of swine influenza A viruses.

作者信息

Lewis Nicola S, Russell Colin A, Langat Pinky, Anderson Tavis K, Berger Kathryn, Bielejec Filip, Burke David F, Dudas Gytis, Fonville Judith M, Fouchier Ron Am, Kellam Paul, Koel Bjorn F, Lemey Philippe, Nguyen Tung, Nuansrichy Bundit, Peiris Js Malik, Saito Takehiko, Simon Gaelle, Skepner Eugene, Takemae Nobuhiro, Webby Richard J, Van Reeth Kristien, Brookes Sharon M, Larsen Lars, Watson Simon J, Brown Ian H, Vincent Amy L

机构信息

Department of Zoology, University of Cambridge, Cambridge, United Kingdom.

Department of Veterinary Medicine, University of Cambridge, Cambridge, United Kingdom.

出版信息

Elife. 2016 Apr 15;5:e12217. doi: 10.7554/eLife.12217.

Abstract

Swine influenza presents a substantial disease burden for pig populations worldwide and poses a potential pandemic threat to humans. There is considerable diversity in both H1 and H3 influenza viruses circulating in swine due to the frequent introductions of viruses from humans and birds coupled with geographic segregation of global swine populations. Much of this diversity is characterized genetically but the antigenic diversity of these viruses is poorly understood. Critically, the antigenic diversity shapes the risk profile of swine influenza viruses in terms of their epizootic and pandemic potential. Here, using the most comprehensive set of swine influenza virus antigenic data compiled to date, we quantify the antigenic diversity of swine influenza viruses on a multi-continental scale. The substantial antigenic diversity of recently circulating viruses in different parts of the world adds complexity to the risk profiles for the movement of swine and the potential for swine-derived infections in humans.

摘要

猪流感给全球猪群带来了巨大的疾病负担,并对人类构成了潜在的大流行威胁。由于人类和鸟类的病毒频繁传入,以及全球猪群的地理隔离,H1和H3流感病毒在猪群中传播时存在相当大的多样性。这种多样性大多通过基因特征来描述,但对这些病毒的抗原多样性了解甚少。至关重要的是,抗原多样性决定了猪流感病毒在流行和大流行潜力方面的风险状况。在此,我们利用迄今汇编的最全面的猪流感病毒抗原数据集,在多大陆范围内量化猪流感病毒的抗原多样性。世界各地近期流行病毒的大量抗原多样性增加了猪只流动风险状况以及猪源感染人类可能性的复杂性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/300f/4846380/f5fdfb3ee295/elife-12217-fig1.jpg

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