Research progress on human infection with avian influenza H7N9

被引:0
作者
Xiaoxin Wu
Lanlan Xiao
Lanjuan Li
机构
[1] Zhejiang University,State Key Laboratory for Diagnosis and Treatment of Infectious Diseases, Collaborative Innovation Center for Diagnosis and Treatment of Infectious Diseases, The First Affiliated Hospital, School of Medicine
来源
Frontiers of Medicine | 2020年 / 14卷
关键词
H7N9; pandemic; epidemiology; mutations; vaccine; influenza;
D O I
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中图分类号
学科分类号
摘要
Since the first case of novel H7N9 infection was reported, China has experienced five epidemics of H7N9. During the fifth wave, a highly pathogenic H7N9 strain emerged. Meanwhile, the H7N9 virus continues to accumulate mutations, and its affinity for the human respiratory epithelial sialic acid 2–6 receptor has increased. Therefore, a pandemic is still possible. In the past 6 years, we have accumulated rich experience in dealing with H7N9, especially in terms of virus tracing, epidemiological research, key site mutation monitoring, critical disease mechanisms, clinical treatment, and vaccine development. In the research fields above, significant progress has been made to effectively control the spread of the epidemic and reduce the fatality rate. To fully document the research progress concerning H7N9, we reviewed the clinical and epidemiological characteristics of H7N9, the key gene mutations of the virus, and H7N9 vaccine, thus providing a scientific basis for further monitoring and prevention of H7N9 influenza epidemics.
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页码:8 / 20
页数:12
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共 1089 条
[41]  
Yao X(2015)Early hypercytokinemia is associated with interferon-induced transmembrane protein-3 dysfunction and predictive of fatal H7N9 infection Sci Rep 5 10942-594
[42]  
Zhang Y(2014)The serum profile of hypercytokinemia factors identified in H7N9-infected patients can predict fatal outcomes Nat Commun 5 3595-189
[43]  
Wu H(2017)Angiotensin II plasma levels are linked to disease severity and predict fatal outcomes in H7N9-infected patients J Infect Dis 216 S548-5426
[44]  
Zheng S(2016)Clusters of human infections with avian influenza A (H7N9) virus in China, March 2013 to June 2015 Lancet Infect Dis 16 252-257
[45]  
Diao H(2014)Interventions to reduce zoonotic and pandemic risks from avian influenza in Asia BMC Infect Dis 14 244-1421
[46]  
Xia S(2018)Epidemiology of the avian influenza A (H7N9) outbreak in Zhejiang Province, China PLoS One 13 e0193052-3576
[47]  
Zhang Y(1985)An increasing trend of rural infections of human influenza A (H7N9) from 2013 to 2017: a retrospective analysis of patient exposure histories in Zhejiang Province, China J Biol Chem 260 7362-1339
[48]  
Chan KH(2014)Host-mediated selection of influenza virus receptor variants. Sialic acid-α 2,6Gal-specific clones of A/duck/Ukraine/1/63 revert to sialic acid-α 2,3Gal-specific wild type in ovo Exp Ther Med 7 1369-2566
[49]  
Tsoi HW(2014)Analysis of the full-length genome of a novel strain of the H7N9 avian influenza virus J Virol 88 8153-1419
[50]  
Teng JL(2017)Analysis of recombinant H7N9 wild-type and mutant viruses in pigs shows that the Q226L mutation in HA is important for transmission PLoS Pathog 13 e1006390-246