Assessment of human immunity to A/H3N2 influenza subclade K during 2025 emergence
作者:Ruth Harvey, Ceilidh Welsh, Alexander M. P. Byrne, David Greenwood, Phoebe Stevenson-Leggett, Monica Galiano, Dalan Bailey, Yung-Wai Chan, Jacob Boateng, Hannah Wolmuth-Gordon, Heather Whitaker, Kevin Brown, Anna Jeffery-Smith, Alex Allen, Gayatri Amirthanlingam, Even Fossum, Elisabeth Lea Vikse, Andreas Rohringer, Olav Hungnes, Karoline Bragstad, Charles Swanton, Bryan Williams, Sonia Gandhi, Steve Gamblin, Edward J Carr, Nicola S. Lewis, Emma C. Wall, Mary Wu, Giulia Dowgier, Agnieszka Hobbs, Choon Ping Tan, Jarod Zvartau-Hind, Murad Miah, Odiesia Daley, Mauro Miranda, Philip Bawumia, Nicola O’Reilly, Chris Cheshire, Nicholas Wilson, Karen Ambrose, Amy Strange, Gavin Kelly, Svend Kjær, Rupert CL. Beale, Padmasavee Papineni, Tumena Corrah, Richard Gilson · 发表于:EBioMedicine · 年份:2026 · DOI:10.1016/j.ebiom.2026.106332 · 被引用次数:1 · 研究领域:Influenza Virus Research Studies、Immune responses and vaccinations、Diabetes and associated disorders
BACKGROUND: Seasonal influenza causes significant morbidity and mortality annually. In 2025, the genetically divergent A/H3N2 K subclade (J.2.4.1) emerged with substantial haemagglutinin mutations. However, despite suggested antigenic escape, UK vaccine effectiveness estimates and epidemiological data demonstrated a relatively normal influenza season across 2025-26. We examined neutralising antibody responses in human cohorts to investigate existing and vaccine-induced immunity to K clade viruses. METHODS: We characterised the antigenic relationships of a selection of A/H3N2 viruses spanning recent evolution including a subclade K virus using antigenic cartography, followed by serological antibody profiling of four human cohorts from the United Kingdom and Norway using microneutralisation (MN) and haemagglutination inhibition (HAI) assays. FINDINGS: Antigenic cartography from single-infection ferret antisera suggests significant antigenic drift from the vaccine strains. MN and HAI titres from 243 individuals across 4 human cohorts (ages 1-105 years) were measured for comparison. The 2025/26 Northern Hemisphere seasonal inactivated egg-derived trivalent influenza vaccine (eTIV, with J.2 A/H3N2) significantly boosted MN and HAI titres against all A/H3N2 viruses tested, including a subclade K virus (p < 0.001). Furthermore, serological profiles of cohorts stratified by age groups (≤5, >5-≤15, >20-≤25, >25-<60, and ≥60) showed pre-existing reactivity against the emergent subclade...