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◆ Communications health2026-01-01

Influenza A/H3N2 epidemiology in England during the 2025 to 2026 season: a mathematical modelling study.

James A Hay, Punya Alahakoon, Alexander Greenshields-Watson, Michelle Kendall, Mahan Ghafari, Chris Wymant, Robert Hinch, Luca Ferretti, Jasmina Panovska-Griffiths, Christophe Fraser

一句话结论 · In one sentence

The 2025/26 influenza season is characterised by early but not unusually rapid growth. Earlier growth does not systematically lead to especially large epidemics due to earlier susceptible depletion combined with a dampening effect from school holidays. Laboratory evidence for antibody escape does not directly translate to large reductions in population immunity, supporting the need for complementary real-time epidemiological analyses and modelling.

原始摘要(英文原文)· Original abstract
BACKGROUND: England experienced an unusually early and rapid increase in influenza A/H3N2 subclade K infections in 2025/26. Antigenic change and a fast selective sweep raised concerns over a potentially severe season. Building on analysis conducted as the subclade emerged, we aim to compare epidemic dynamics of the 2025/26 season to previous years and to model plausible epidemiological scenarios. METHODS: We compared peak epidemic growth rates and reproduction numbers across influenza seasons from 2011/12 to 2025/26 using routine surveillance data in England. Weekly epidemic growth rates were estimated using a Gaussian random walk model, and time-varying reproduction numbers using EpiEstim. We also developed an age-stratified transmission model and interactive web tool to explore scenarios varying immune escape, transmissibility, and seed date, using 2022/23 as a baseline season. RESULTS: Peak A/H3N2 growth rates and time-varying reproduction numbers for the 2025/26 season are of similar magnitude but earlier than previous severe seasons. Scenario analyses suggest early trends are compatible with moderate levels of immune escape, a 10% higher R 0 , or an earlier seed date, though it is not possible to distinguish the relative importance of these mechanisms from these data alone. CONCLUSIONS: The 2025/26 influenza season is characterised by early but not unusually rapid growth. Earlier growth does not systematically lead to especially large epidemics due to earlier susceptible depletion combined with a dampening effect from school holidays. Laboratory evidence for antibody escape does not directly translate to large reductions in population immunity, supporting the need for complementary real-time epidemiological analyses and modelling.
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Influenza A/H3N2 epidemiology in England during the 2025 to 2026 season: a mathematical modelling study. — 科研速览 Science Skim