Immunogenicity and clinical protection against equine influenza by gene-based DNA vaccination of ponies

Equine influenza A (H3N8) virus is a leading cause of infectious respiratory disease in horses causing widespread morbidity and economic losses. As with influenza in other species, equine influenza strains continuously mutate, requiring constant re-evaluation of current vaccines and development of n...

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Veröffentlicht in:Vaccine 2012-03, Vol.30 (26), p.3965-3974
Hauptverfasser: Ault, Alida, Zajac, Alyse M., Kong, Wing-Pui, Gorres, J. Patrick, Royals, Michael, Wei, Chih-Jen, Bao, Saran, Yang, Zhi-yong, Reedy, Stephanie E., Sturgill, Tracy L., Page, Allen E., Donofrio-Newman, Jennifer, Adams, Amanda A., Balasuriya, Udeni B.R., Horohov, David W., Chambers, Thomas M., Nabel, Gary J., Rao, Srinivas S.
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Sprache:eng
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Zusammenfassung:Equine influenza A (H3N8) virus is a leading cause of infectious respiratory disease in horses causing widespread morbidity and economic losses. As with influenza in other species, equine influenza strains continuously mutate, requiring constant re-evaluation of current vaccines and development of new vaccines. Current inactivated (killed) vaccines, while efficacious, only offer limited protection against multiple strains and require frequent boosts. Ongoing research into new vaccine technologies, including gene-based vaccines, aims to increase the neutralization potency, breadth, and duration of protective immunity of new or existing vaccines. In these hypothesis-generating experiments, we demonstrate that a DNA vaccine expressing the hemagglutinin protein of equine H3N8 influenza virus generates homologous and heterologous immune responses, and protects against clinical disease and viral replication following homologous H3N8 infection in horses. Furthermore, we demonstrate that a needle-free delivery device is as efficient and effective as conventional parenteral injection using a needle and syringe. The observed trends in this study drive the hypothesis that DNA vaccines offer a safe, effective, and promising alternative approach for veterinary vaccines against influenza, and applicable to combat equine influenza.
ISSN:0264-410X
1873-2518
DOI:10.1016/j.vaccine.2012.03.026