科研产出
- 时间
- 相关度
1Protective efficacy in farmed ducks of a duck enteritis virus-vectored vaccine against H5N1, H5N6, and H5N8 avian influenza viruses
作者:
机构:
来源:VACCINE
关键词: Duck enteritis virus-vectored vaccine; H5 avian influenza viruses; Farmed ducks; Clinical trial
年份:2019
2Vaccination of poultry successfully eliminated human infection with H7N9 virus in China
作者:
机构:
来源:SCIENCE CHINA-LIFE SCIENCES
关键词: H7N9 influenza virus; evolution; vaccination; human infection; elimination
年份:2018
3Continued Evolution of H5N1 Influenza Viruses in Wild Birds, Domestic Poultry, and Humans in China from 2004 to 2009
作者:
机构:
来源:JOURNAL OF VIROLOGY
年份:2010
4Novel Influenza A(H7N2) Virus in Chickens, Jilin Province, China, 2014
作者:
机构:
来源:EMERGING INFECTIOUS DISEASES
年份:2014
5Low Polymerase Activity Attributed to PA Drives the Acquisition of the PB2 E627K Mutation of H7N9 Avian Influenza Virus in Mammals
作者:
机构:
来源:MBIO
关键词: ANP32A; avian influenza virus; H7N9; PB2 E627K mutation; viral PA protein; viral adaptation in mammals; viral polymerase
年份:2019
6Protective Efficacy of the Inactivated H5N1 Influenza Vaccine Re-6 Against Different Clades of H5N1 Viruses Isolated in China and the Democratic People's Republic of Korea
作者:
机构:
来源:AVIAN DISEASES
关键词: avian influenza H5N1 subtype inactivated vaccine protective efficacy
7Viral RNA-binding ability conferred by SUMOylation at PB1 K612 of influenza A virus is essential for viral pathogenesis and transmission
作者:
机构:
来源:PLOS PATHOGENS
年份:2021
8A single-amino-acid mutation at position 225 in hemagglutinin attenuates H5N6 influenza virus in mice
作者:
机构:
来源:EMERGING MICROBES & INFECTIONS
关键词: Influenza virus; molecular basis; pathogenicity; mice
年份:2021
9A Novel Intronic Circular RNA Antagonizes Influenza Virus by Absorbing a microRNA That Degrades CREBBP and Accelerating IFN-beta Production
作者:
机构:
来源:MBIO
关键词: influenza virus; antiviral agent; circular RNA
年份:2021
10H7N9 virulent mutants detected in chickens in China pose an increased threat to humans
作者:
机构:
来源:CELL RESEARCH
关键词: influenza virus H7N9 highly pathogenic pandemic potential transmission
年份:2017