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Microbiology

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Overview

Masato Hatta is a researcher affiliated with the University of Wisconsin-Madison in the United States. Their academic work primarily focuses on medicine, with a strong emphasis on infectious diseases, epidemiology, and immunology. The scientist's research spans various subfields including animal science and zoology, as well as agronomy and crop science.

Their research topics cover a range of viral infections, including SARS-CoV-2 and COVID-19, influenza virus studies, respiratory viral infections, viral gastroenteritis, and animal virus infections and disease management. These areas indicate a broad engagement with both human and animal-related infectious disease epidemiology and immunology.

Masato Hatta has authored several papers published in notable venues. Among recent publications are:

  • Syrian hamsters as a small animal model for SARS-CoV-2 infection and countermeasure development (2020, Proceedings of the National Academy of Sciences)
  • Transmission of SARS-CoV-2 in Domestic Cats (2020, New England Journal of Medicine)
  • Transmission of SARS-CoV-2 in domestic cats imposes a narrow bottleneck (2021, PLoS Pathogens)
  • Characterization of a new SARS-CoV-2 variant that emerged in Brazil (2021, Proceedings of the National Academy of Sciences)
  • Differential neutralization and inhibition of SARS-CoV-2 variants by antibodies elicited by COVID-19 mRNA vaccines (2022, Nature Communications)

Hatta frequently publishes in scientific venues such as bioRxiv (Cold Spring Harbor Laboratory), Proceedings of the National Academy of Sciences, PLoS Pathogens, mBio, and Emerging Infectious Diseases. These journals reflect a consistent focus on rapid dissemination of infectious disease research and virology.

Collaboration is an integral part of the scientist's work. Frequent co-authors include Yoshihiro Kawaoka, S. Chiba, Peter Halfmann, Shufang Fan, and Tadashi Maemura, reflecting a network of partnerships most commonly related to virology and infectious disease research.

Best Publications

  • Experimental adaptation of an influenza H5 HA confers respiratory droplet transmission to a reassortant H5 HA/H1N1 virus in ferrets

    Masaki Imai;Tokiko Watanabe;Masato Hatta;Subash C. Das

  • Molecular Basis for High Virulence of Hong Kong H5N1 Influenza A Viruses

    Masato Hatta;Peng Gao;Peter Halfmann;Yoshihiro Kawaoka;Yoshihiro Kawaoka

  • In vitro and in vivo characterization of new swine-origin H1N1 influenza viruses

    Yasushi Itoh;Kyoko Shinya;Maki Kiso;Tokiko Watanabe

  • Aberrant innate immune response in lethal infection of macaques with the 1918 influenza virus

    Darwyn Kobasa;Steven M. Jones;Steven M. Jones;Kyoko Shinya;John C. Kash

  • Syrian hamsters as a small animal model for SARS-CoV-2 infection and countermeasure development.

    Masaki Imai;Kiyoko Iwatsuki-Horimoto;Masato Hatta;Samantha Loeber

  • Enhanced virulence of influenza A viruses with the haemagglutinin of the 1918 pandemic virus.

    Darwyn Kobasa;Ayato Takada;Kyoko Shinya;Kyoko Shinya;Masato Hatta

  • Single-Reaction Genomic Amplification Accelerates Sequencing and Vaccine Production for Classical and Swine Origin Human Influenza A Viruses

    Bin Zhou;Bin Zhou;Matthew E. Donnelly;Derek T. Scholes;Kirsten St. George

  • Transmission of SARS-CoV-2 in Domestic Cats.

    Peter J. Halfmann;Masato Hatta;Shiho Chiba;Tadashi Maemura

  • PB2 Amino Acid at Position 627 Affects Replicative Efficiency, but Not Cell Tropism, of Hong Kong H5N1 Influenza A Viruses in Mice

    Kyoko Shinya;Stefan Hamm;Masato Hatta;Hiroshi Ito

  • Characterization of H7N9 influenza A viruses isolated from humans

    Tokiko Watanabe;Maki Kiso;Satoshi Fukuyama;Noriko Nakajima

  • Growth of H5N1 influenza A viruses in the upper respiratory tracts of mice.

    Masato Hatta;Yasuko Hatta;Jin Hyun Kim;Shinji Watanabe

  • Biological and structural characterization of a host-adapting amino acid in influenza virus.

    Shinya Yamada;Masato Hatta;Bart L. Staker;Shinji Watanabe

  • Suppression of cytokine storm with a sphingosine analog provides protection against pathogenic influenza virus

    Kevin B. Walsh;John R. Teijaro;Peter R. Wilker;Anna Jatzek

  • Precursor genes of future pandemic influenza viruses are perpetuated in ducks nesting in Siberia.

    K. Okazaki;A. Takada;T. Ito;M. Imai

  • Human antibodies reveal a protective epitope that is highly conserved among human and nonhuman influenza A viruses

    Andres G. Grandea;Ole A. Olsen;Thomas C. Cox;Mark Renshaw

  • Reassortment between avian H5N1 and human H3N2 influenza viruses creates hybrid viruses with substantial virulence

    Chengjun Li;Masato Hatta;Chairul A. Nidom;Yukiko Muramoto

  • The draft genome sequence of the ferret (Mustela putorius furo) facilitates study of human respiratory disease

    Xinxia Peng;Jessica Alföldi;Kevin Gori;Amie J Eisfeld

  • Identification of mammalian-adapting mutations in the polymerase complex of an avian H5N1 influenza virus

    Andrew S. Taft;Makoto Ozawa;Adam Fitch;Jay V. Depasse

  • Mutational Analysis of Conserved Amino Acids in the Influenza A Virus Nucleoprotein

    Zejun Li;Tokiko Watanabe;Masato Hatta;Shinji Watanabe

  • A Highly Pathogenic Avian H7N9 Influenza Virus Isolated from A Human Is Lethal in Some Ferrets Infected via Respiratory Droplets

    Masaki Imai;Tokiko Watanabe;Maki Kiso;Noriko Nakajima

  • Characterization of a Human H5N1 Influenza A Virus Isolated in 2003

    Kyoko Shinya;Masato Hatta;Shinya Yamada;Ayato Takada

  • Viral RNA polymerase complex promotes optimal growth of 1918 virus in the lower respiratory tract of ferrets

    Tokiko Watanabe;Shinji Watanabe;Kyoko Shinya;Jin Hyun Kim

Frequent Co-Authors

Yoshihiro Kawaoka
Yoshihiro Kawaoka University of Tokyo
Gabriele Neumann
Gabriele Neumann University of Wisconsin–Madison
Tokiko Watanabe
Tokiko Watanabe Osaka University
Shinji Watanabe
Shinji Watanabe National Institutes of Health
Peter Halfmann
Peter Halfmann University of Wisconsin–Madison
Chengjun Li
Chengjun Li Harbin Veterinary Research Institute
M. Suresh
M. Suresh University of Wisconsin–Madison
Thomas C. Friedrich
Thomas C. Friedrich University of Wisconsin–Madison
Taisuke Horimoto
Taisuke Horimoto University of Tokyo
Derek J. Smith
Derek J. Smith University of Cambridge

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