Influenza Viruses Resistant to the Antiviral Drug Oseltamivir: Transmission Studies in Ferrets
M. Louise Herlocher, Rachel Truscon, Stephanie Elias, Hui‐Ling Yen, Noel A. Roberts, Suzanne E. Ohmit, Arnold S. Monto
Abstract
M. Louise Herlocher, Rachel Truscon, Stephanie Elias, Hui‐Ling Yen, Noel A. Roberts, Suzanne E. Ohmit, Arnold S. Monto
Abstract
Three type A influenza viruses, each of which has a distinct neuraminidase-gene mutation and is resistant to the neuraminidase inhibitor oseltamivir, have been isolated. Previously, in the ferret model, an R292K mutant of a type A (H3N2) virus was not transmitted under conditions in which the wild-type virus was transmitted. This model was used to investigate whether the E119V mutant of a type A (H3N2) virus and the H274Y mutant of a type A (H1N1) virus would be transmitted under similar circumstances. Both mutant viruses were transmitted, although the H274Y mutant required a 100-fold-higher dose for infection of donor ferrets and was transmitted more slowly than was the wild type. Both the mutant and the wild-type viruses retained their genotypic characteristics.
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Three type A influenza viruses, each of which has a distinct neuraminidase-gene mutation and is resistant to the neuraminidase inhibitor oseltamivir, have been isolated. Previously, in the ferret model, an R292K mutant of a type A (H3N2) virus was not transmitted under conditions in which the wild-type virus was transmitted. This model was used to investigate whether the E119V mutant of a type A (H3N2) virus and the H274Y mutant of a type A (H1N1) virus would be transmitted under similar circumstances. Both mutant viruses were transmitted, although the H274Y mutant required a 100-fold-higher dose for infection of donor ferrets and was transmitted more slowly than was the wild type. Both the mutant and the wild-type viruses retained their genotypic characteristics.
Key concepts: Virology, Neuraminidase, Oseltamivir, Neuraminidase inhibitor, Virus, Mutant, Biology, Wild type