One Virology

Publications

Sun H, Xiao Y, Liu J, Wang D, Li F, Wang C, Li C, Zhu J, Song J, Sun H, Jiang Z, Liu L, Zhang X, Wei K, Hou D, Pu J, Sun Y, Tong Q, Bi Y, Chang KC, Liu S, Gao GF, Liu J. (2020) Prevalent Eurasian avian-like H1N1 swine influenza virus with 2009 pandemic viral genes facilitating human infection. Proc Natl Acad Sci U S A. 2020 117:17204-17210.  

Jiang Z, Wei F, Zhang Y, Wang T, Gao W, Yu S, Sun H, Pu J, Sun Y, Wang M, Tong Q, Gao C, Chang KC, Liu J. (2021) IFI16 directly senses viral RNA and enhances RIG-I transcription and activation to restrict influenza virus infection. Nat Microbiol. 6:932-945.  

Sun H, Li F, Liu Q, Du J, Liu L, Sun H, Li C, Liu J, Zhang X, Yang J, Duan Y, Bi Y, Pu J, Sun Y, Tong Q, Wang Y, Du X, Shu Y, Chang KC, Liu J. (2021) Mink is a highly susceptible host species to circulating human and avian influenza viruses. Emerg Microbes Infect. 2021 10:472-480. 

Pu J, Yin Y, Liu J, Wang X, Zhou Y, Wang Z, Sun Y, Sun H, Li F, Song J, Qu R, Gao W, Wang D, Wang Z, Yan S, Chen M, Zeng J, Jiang Z, Sun H, Zong Y, Wang C, Tong Q, Bi Y, Huang Y, Du X, Chang KC, Liu J. (2021) Reassortment with dominant chicken H9N2 influenza virus contributed to the fifth H7N9 virus human epidemic. J Virol. 2021 95:e01578-20.  

Slater T, Eckerle I, Chang KC. (2018) Bat lung epithelial cells show greater host species-specific innate resistance than MDCK cells to human and avian influenza viruses. Virol J. 15:68. 

Chang P, Kuchipudi SV, Mellits KH, Sebastian S, James J, Liu J, Shelton H, Chang KC. (2015) Early apoptosis of porcine alveolar macrophages limits avian influenza virus replication and pro-inflammatory dysregulation. Sci Rep. 5:17999.  

Baquero-Perez B, Kuchipudi SV, Ho J, Sebastian S, Puranik A, Howard W, Brookes SM, Brown IH, Chang KC. Chicken and duck myotubes are highly susceptible and permissive to influenza virus infection. J Virol. 2015 Mar;89(5):2494-506

Kuchipudi SV, Dunham SP, Chang KC. DNA microarray global gene expression analysis of influenza virus-infected chicken and duck cells. Genome Data. 2015 Mar 20;4:60-4

Al-Mubarak F, Daly J, Christie D, Fountain D, Dunham SP. Identification of morphological differences between avian influenza A viruses grown in chicken and duck cells. Virus Res. 2015 Mar 2;199:9-19

Kuchipudi SV, Tellabati M, Sebastian S, Londt BZ, Jansen C, Vervelde L, Brookes SM, Brown IH, Dunham SP, Chang KC. Highly pathogenic avian influenza virus infection in chickens but not ducks is associated with elevated host immune and pro-inflammatory responses. Vet Res. 2014 Nov 28;45:118

Moreton J, Dunham SP, Emes RD. A consensus approach to vertebrate de novo transcriptome assembly from RNA-seq data: assembly of the duck (Anas platyrhynchos) transcriptome. Front Genet. 2014 Jun 25;5:190

Kuchipudi SV, Dunham SP, Nelli R, White GA, Coward VJ, Slomka MJ, Brown IH and Chang KC, 2012. Rapid death of duck cells infected with influenza: a potential mechanism for host resistance to H5N1 Immunology & Cell Biology. 90(1), 116-123

Kuchipudi SV, Nelli R, White GA, Bain M, Chang KC and Dunham S, 2009. Differences in influenza virus receptors in chickens and ducks: implications for interspecies transmission Journal of Molecular and Genetic Medicine. 3(1), 143-151

One Virology


University of Nottingham