Andrew Pekosz

Affiliations: 
Washington University, Saint Louis, St. Louis, MO 
Area:
Microbiology Biology
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"Andrew Pekosz"
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Publications

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Fall A, Han L, Yunker M, et al. (2023) Evolution of Influenza A(H3N2) Viruses in 2 Consecutive Seasons of Genomic Surveillance, 2021-2023. Open Forum Infectious Diseases. 10: ofad577
Swanson NJ, Marinho P, Dziedzic A, et al. (2023) Author Correction: 2019-2020 H1N1 clade A5a.1 viruses have better in vitro fitness compared with the co-circulating A5a.2 clade. Scientific Reports. 13: 18121
Wilson JL, Akin E, Zhou R, et al. (2023) The Influenza B Virus Victoria and Yamagata Lineages Display Distinct Cell Tropism and Infection-Induced Host Gene Expression in Human Nasal Epithelial Cell Cultures. Viruses. 15
Wilson JL, Akin E, Zhou R, et al. (2023) The Influenza B Virus Victoria and Yamagata Lineages Display Distinct Cell Tropism and Infection Induced Host Gene Expression in Human Nasal Epithelial Cell Cultures. Biorxiv : the Preprint Server For Biology
Sutcliffe CG, Hamahuwa M, Miller E, et al. (2023) Respiratory viruses in rural Zambia during the second year of the COVID-19 pandemic. Ijid Regions. 8: 90-94
Yeung-Luk BH, Narayanan GA, Ghosh B, et al. (2023) SARS-CoV-2 infection alters mitochondrial and cytoskeletal function in human respiratory epithelial cells mediated by expression of spike protein. Mbio. e0082023
Swanson NJ, Marinho P, Dziedzic A, et al. (2023) 2019-2020 H1N1 clade A5a.1 viruses have better in vitro fitness compared with the co-circulating A5a.2 clade. Scientific Reports. 13: 10223
Resnick JD, Beer MA, Pekosz A. (2023) Early Transcriptional Responses of Human Nasal Epithelial Cells to Infection with Influenza A and SARS-CoV-2 Virus Differ and Are Influenced by Physiological Temperature. Pathogens (Basel, Switzerland). 12
Resnick JD, Beer MA, Pekosz A. (2023) Early transcriptional responses of human nasal epithelial cells to infection with Influenza A and SARS-CoV-2 virus differ and are influenced by physiological temperature. Biorxiv : the Preprint Server For Biology
Chen Y, Wu C, Li H, et al. (2023) Antiviral effect and mechanism of Phillyrin and its reformulated FS21 against influenza. Influenza and Other Respiratory Viruses. 17: e13112
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