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Abstract

Avian influenza viruses, including highly pathogenic strains, pose severe economic, animal and public health concerns. We implemented live bird market surveillance in Bangladesh to identify the subtypes of avian influenza A viruses in domestic waterfowl and market environments. We collected...

Author(s)
Salah-uddin-Khan; Gurley, E. S.; Gerloff, N.; Rahman, M. Z.; Simpson, N.; Mustafizur Rahman; Najmul Haider; Sukanta Chowdhury; Amanda Balish; Rashid-uz-Zaman; Sharifa Nasreen; Das, B. C.; Azziz-Baumgartner, E.; Sturm-Ramirez, K.; Davis, C. T.; Donis, R. O.; Luby, S. P.
Publisher
Nature Publishing Group, London, UK
Citation
Scientific Reports, 2018, 8, 1, pp 9396
Abstract

Objective: To identify the possible infection source of the first case of pregnant woman infection with avian influenza A (H9N2) virus reported in Longgang district of Shenzhen and provide evidence for the prevention and control of human infection with H9N2 virus in the future. Methods:...

Author(s)
Liu Feng; Li Gang; Liu FengRen; Yu GuoLong
Publisher
Editorial Board of Disease Surveillance, Beijing, China
Citation
Disease Surveillance, 2019, 34, 7, pp 621-625
Abstract

Zoonotic influenza A viruses of avian origin can cause severe disease in individuals, or even global pandemics, and thus pose a threat to human populations. Waterfowl and shorebirds are believed to be the reservoir for all influenza A viruses, but this has recently been challenged by the...

Author(s)
Karakus, U.; Thamamongood, T.; Ciminski, K.; Ran Wei; Günther, S. C.; Pohl, M. O.; Eletto, D.; Jeney, C.; Hoffmann, D.; Reiche, S.; Schinköthe, J.; Ulrich, R.; Wiener, J.; Hayes, M. G. B.; Chang, M. W.; Hunziker, A.; Yángüez, E.; Aydillo, T.; Krammer, F.; Oderbolz, J.; Meier, M.; Oxenius, A.; Halenius, A.; Zimmer, G.; Benner, C.; Hale, B. G. (et al)
Publisher
Nature Publishing Group, London, UK
Citation
Nature (London), 2019, 567, 7746, pp 109-112
Abstract

The "cytokine storm" and excessive inflammation triggered by lethal avian influenza virus (IAV) are responsible for its high virulence and mortality. However, the molecular mechanism behind these effects is unclear. In this study, we used LA795 cells and a mouse model to assess the crucial role of...

Author(s)
Huo CaiYun; Jin Yi; Zou ShuMei; Qi Peng; Xiao Jin; Tian HaiYan; Wang Ming; Hu YanXin
Publisher
Elsevier B.V., Amsterdam, Netherlands
Citation
Virus Research, 2018, 257, pp 102-112
Abstract

This case report describes the clinical course and management of a rare homologous recombination in H3N2 avian influenza A viruses.

Author(s)
Chen XiaoYuan; Guo FuCheng; Pan JunBin; Shen XueJuan; Li YanPeng; Irwin, D. M.; Shen YongYi
Publisher
Elsevier Ltd, Oxford, UK
Citation
Journal of Infection, 2020, 80, 3, pp 367-370
Abstract

Influenza A viruses can infect a wide range of hosts, creating opportunities for zoonotic transmission, i.e., transmission from animals to humans, and placing the human population at constant risk of potential pandemics. In the last hundred years, four influenza A virus pandemics have had a...

Author(s)
Vries, R. D. de; Herfst, S.; Richard, M.
Publisher
MDPI AG, Basel, Switzerland
Citation
Vaccines, 2018, 6, 3,
Abstract

From 2016 to 2018, surveillance of influenza A viruses in wild birds was conducted in Shanghai, located at the East Asian-Australian flyway, China. A total of 5112 samples from 51 species of wild birds were collected from three different wetlands. The total three-year prevalence of influenza A...

Author(s)
Tang Ling; Tang WangJun; Li XiaoFang; Hu ChuanXia; Wu Di; Wang TianHou; He GuiMei
Publisher
MDPI AG, Basel, Switzerland
Citation
Viruses, 2020, 12, 9,
Abstract

Objective: To understand the distribution of avian influenza virus and assess the risk of human infection with avian influenza virus in Yunnan Province from 2016 to 2017 and provide evidence for the prevention and control of avian influenza. Methods: A total of 827 poultry related environment...

Author(s)
Kang XianHu; Zhao XiaoNan; Zhou JieNan; Ning DenTing; Li Duo
Publisher
Editorial Board of Disease Surveillance, Beijing, China
Citation
Disease Surveillance, 2018, 33, 10, pp 825-828
Abstract

This report summarizes the epidemiological and virological features of laboratory-confirmed human infections with non-seasonal influenza viruses of animal origin, including avian influenza A(H5), A(H7) and A(H9N2) and swine-origin viruses. These cases were reported to WHO with onset dates during...

Author(s)
Hammond, A.; Fitzner, J.; Collins, L.; Ong SeeuKun; Vandemaele, K.
Publisher
World Health Organization, Geneva, Switzerland
Citation
Weekly Epidemiological Record, 2017, 92, 33, pp 460-475
Abstract

Background In June 2017, an outbreak of the highly pathogenic avian influenza A(H5N8) was detected in commercial poultry farms in South Africa, which rapidly spread to all nine South African provinces.; Objectives We conducted active surveillance for the transmission of influenza A(H5N8) to humans...

Author(s)
Valley-Omar, Z.; Cloete, A.; Pieterse, R.; Walaza, S.; Salie-Bassier, Y.; Smith, M.; Govender, N.; Seleka, M.; Hellferscee, O.; Mtshali, P. S.; Allam, M.; Ismail, A.; Anthony, T.; Seutloali, M.; McCarthy, K.; Helden, L. van; Cohen, C.; Treurnicht, F. K.
Publisher
Wiley, Oxford, UK
Citation
Influenza and other Respiratory Viruses, 2020, 14, 3, pp 266-273

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