The increasing spread of highly pathogenic avian influenza (HPAI) A/H5 viruses poses a pandemic threat. Circulating clade 2.3.4.4b viruses have demonstrated rapid transcontinental dissemination, extensive reassortment, epizootic spread and potential sustained mammal-to-mammal transmission, signifying a heightened risk of becoming a human pathogen of high consequence. A broadly protective, future-proof vaccine against multiple clades of H5 influenza is urgently needed for pandemic preparedness. Here, we combine two novel vaccine technologies to generate a Digitally Immune Optimised and Selected H5 antigen (DIOSvax-H5(inter)) displayed multivalently on the mi3 nanocage using the SpyTag003/SpyCatcher003 conjugation system. Mice immunized with DIOSvax-H5(inter) Homotypic Nanocages at low doses demonstrate potent, cross-clade neutralizing antibody and T cell responses against diverse H5 strains. DIOSvax-H5(inter) Homotypic Nanocages provide a scalable vaccine candidate with the potential for pan-H5 protection against drifted or newly emergent H5 strains. This World Health Organization preferred characteristic is essential for prospective strategic stockpiling in the pre-pandemic phase.
Computationally designed haemagglutinin with nanocage plug-and-display elicits pan-H5 influenza vaccine responses.
利用纳米笼插入式展示技术设计的血凝素可引发泛H5流感疫苗反应
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作者:Huang Chloe Qingzhou, Hills Rory A, Carnell George W, Vishwanath Sneha, Aguinam Ernest T, Chan Andrew C Y, Palmer Phil, O'Reilly Laura, Tonks Paul, Temperton Nigel, Frost Simon D W, Tiley Laurence S, Howarth Mark R, Heeney Jonathan L
| 期刊: | Emerging Microbes & Infections | 影响因子: | 7.500 |
| 时间: | 2025 | 起止号: | 2025 Dec;14(1):2511132 |
| doi: | 10.1080/22221751.2025.2511132 | ||
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