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Extended dosing intervals enhance the durability of a self-amplifying mRNA vaccine against pandemic H5N1 influenza: a randomized, observer-blind, dose-finding Phase I study

Antoinette A. Pragalos, Filippo Pacciarini, Hongfan Jin, Terri Hopkins, Ye Zhang, Roberto Bugarini, Xuexuan Liu, Brian M. Sullivan, Carole Verhoeven, Igor V. Smolenov

Revista con revisión por paresUso en el mundo real

En palabras de los autores

Avian influenza poses a persistent pandemic threat, yet traditional vaccines face production delays. Self-amplifying mRNA (sa-mRNA) technology offers potential advantages, including rapid development, dose sparing, and enhanced, durable immunity. We evaluated ARCT-2304, a bicistronic sa-mRNA vaccine encoding H5N1 hemagglutinin (HA) and neuraminidase (NA), in a Phase 1 randomized, observer-blind trial (NCT06602531). Healthy adults (N = 212) received two doses of ARCT-2304 (1.5, 5, or 12 mcg) or control/placebo on a 4- or 8-week schedule. Primary outcomes evaluated safety and reactogenicity (solicited/unsolicited/serious adverse events [AEs]) and immunogenicity (HA inhibition and NA enzyme-linked lectin assays 28 days post-second dose). Immunogenicity results were benchmarked using serum from a prior study supporting licensure of an H5N1 vaccine. ARCT-2304 was well-tolerated, displaying mostly mild-to-moderate, transient, dose-dependent solicited AEs, with no safety concerns identified. Two doses elicited robust HA and NA humoral responses. An 8-week interval yielded higher magnitude and greater durability than a 4-week schedule, with neutralizing and anti-NA antibodies remaining significantly elevated 6–7 months post-second dose. ARCT-2304 also induced dose-dependent, Th1-polarized T-cell responses peaking at Day 29. These findings support advancing sa-mRNA platforms for pandemic influenza preparedness. Here, the authors present a Phase 1 randomized, observer-blind trial of ARCT-2304, a bicistronic self-amplifying mRNA vaccine against H5N1 influenza. The findings support a potential role for self-amplifying mRNA platforms against influenza.

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Apareció: sábado, 26 de septiembre. Nature Communications. Revista con revisión por pares.

DOI: 10.1038/s41467-026-78031-9