An influenza mRNA vaccine protects ferrets from lethal infection with highly pathogenic avian influenza A(H5N1) virus

H5N1亚型流感病毒 病毒学 大流行 接种疫苗 血凝素(流感) 病毒 生物 神经氨酸酶 H5N1基因结构 感染剂量 效价 微生物学 医学 2019年冠状病毒病(COVID-19) 传染病(医学专业) 疾病 病理
作者
Masato Hatta,Yasuko Hatta,Angela Choi,Jaber Hossain,Chenchen Feng,Matthew W. Keller,Jana M. Ritter,Ying Huang,Emma Fang,Elizabeth A. Pusch,Thomas Rowe,Juan A. De La Cruz,Monique Johnson,Jimma Liddell,Nannan Jiang,Daniel Stadlbauer,Li Liu,A K Bhattacharjee,Joseph R Rouse,Michael Currier
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:16 (778) 被引量:3
标识
DOI:10.1126/scitranslmed.ads1273
摘要

The global spread of the highly pathogenic avian influenza (HPAI) A(H5N1) virus poses a serious pandemic threat, necessitating the swift development of effective vaccines. The success of messenger RNA (mRNA) vaccine technology in the COVID-19 pandemic, marked by its rapid development and scalability, demonstrates its potential for addressing other infectious threats, such as HPAI A(H5N1). We therefore evaluated mRNA vaccine candidates targeting panzootic influenza A(H5) clade 2.3.4.4b viruses, which have been shown to infect a range of mammalian species, including most recently being detected in dairy cattle. Ferrets were immunized with mRNA vaccines encoding either hemagglutinin alone or hemagglutinin and neuraminidase, derived from a 2.3.4.4b prototype vaccine virus recommended by the World Health Organization. Kinetics of the immune responses, as well as protection against a lethal challenge dose of A(H5N1) virus, were assessed. Two doses of mRNA vaccination elicited robust neutralizing antibody titers against a 2022 avian isolate and a 2024 human isolate. Further, mRNA vaccination conferred protection from lethal challenge, whereas all unvaccinated ferrets succumbed to infection. It also reduced viral titers in the upper and lower respiratory tracts of infected ferrets. These results underscore the effectiveness of mRNA vaccines against HPAI A(H5N1), showcasing their potential as a vaccine platform for future influenza pandemics.
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