Detection and characterization of antiviral-resistant viruses during the influenza season of 2024–25
Mira C. Patel, Ha T. Nguyen, Philippe Noriel Q. Pascua, Mercedes Lopez-Esteva, Chloe Champion, Vasiliy P. Mishin, Han Di, Kristine Lacek, Marie K. Kirby, Allen Bateman, Maureen Sullivan, Susan Trow, Jennifer Laplante, Kirsten St. George, Benjamin Rambo-Martin, Angiezel Merced-Morales, Alicia Budd, Rebecca J. Kondor, Charles T. Davis, Larisa V. GubarevaABSTRACT
During the high severity season of 2024–25, CDC with public health partners sequenced and analyzed genomes of >10,000 influenza viruses for antiviral resistance markers. Available sequence-flagged and representative viruses were tested with antivirals using
IMPORTANCE
Circulation of influenza viruses with reduced susceptibility to antivirals can diminish the usefulness of medications prescribed for influenza. This study informs on the prevalence of drug-resistant influenza viruses in the US during the high severity season of 2024–25. It provides information on susceptibility profile to all approved antiviral medications and on replicative fitness of representative drug-resistant viruses. Most drug-resistant viruses were collected from patients who were not exposed to antivirals indicating their ability to transmit from human to human. Whole-genome sequence (WGS)-based analysis is the cornerstone for surveillance, and numerous laboratories have been utilizing this approach. However, CDC laboratory is the only laboratory in the US conducting phenotypic testing of circulating viruses needed to confirm the outcomes of sequence-based analysis and to identify new molecular markers of resistance. Data gathered through virologic surveillance give much-needed information on drug susceptibility of influenza viruses which are used to guide recommendations on antiviral use.