病毒学
免疫
抗原
流感疫苗
生物
接种疫苗
免疫学
免疫系统
作者
Adinda Kok,Samuel Wilks,Sina Türeli,Sarah L. James,Theo M. Bestebroer,David F. Burke,Mathis Funk,Stefan van der Vliet,Monique I. Spronken,Willemijn F. Rijnink,David J. Pattinson,Dennis de Meulder,Miruna E. Rosu,Pascal Lexmond,Judith M. A. van den Brand,Sander Herfst,Derek J. Smith,Ron A. M. Fouchier,Mathilde Richard
出处
期刊:Nature
[Springer Nature]
日期:2025-10-15
卷期号:647 (8091): 1005-1013
标识
DOI:10.1038/s41586-025-09626-3
摘要
Abstract Highly pathogenic avian influenza A(H5) viruses globally impact wild and domestic birds, and have caused severe infections in mammals, including humans, underscoring their pandemic potential 1–5 . The antigenic evolution of the A(H5) haemagglutinin (HA) poses challenges for pandemic preparedness and vaccine design 6 . Here the global antigenic evolution of the A(H5) HA was captured in a high-resolution antigenic map. The map was used to design immunogenic and antigenically central vaccine HA antigens, eliciting antibody responses that broadly cover the A(H5) antigenic space. In ferrets, a central antigen protected as well as homologous vaccines against heterologous infection with two antigenically distinct viruses. This work showcases the rational design of subtype-wide influenza A(H5) pre-pandemic vaccines and demonstrates the value of antigenic maps for the evaluation of vaccine-induced immune responses through antibody profiles.
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