DNA Vaccination Elicits Protective Immune Responses against Pandemic and Classic Swine Influenza Viruses in Pigs
- 1 November 2011
- journal article
- research article
- Published by American Society for Microbiology in Clinical and Vaccine Immunology
- Vol. 18 (11) , 1987-1995
- https://doi.org/10.1128/cvi.05171-11
Abstract
Swine influenza is a highly contagious viral infection in pigs that significantly impacts the pork industry due to weight loss and secondary infections. There is also the potential of a significant threat to public health, as was seen in 2009 when the pandemic H1N1 influenza virus strain emerged from reassortment events among avian, swine, and human influenza viruses within pigs. As classic and pandemic H1N1 strains now circulate in swine, an effective vaccine may be the best strategy to protect the pork industry and public health. Current inactivated-virus vaccines available for swine influenza protect only against viral strains closely related to the vaccine strain, and egg-based production of these vaccines is insufficient to respond to large outbreaks. DNA vaccines are a promising alternative since they can potentially induce broad-based protection with more efficient production methods. In this study we evaluated the potentials of monovalent and trivalent DNA vaccine constructs to (i) elicit both humoral and gamma interferon (IFN-γ) responses and (ii) protect pigs against viral shedding and lung disease after challenge with pandemic H1N1 or classic swine H1N1 influenza virus. We also compared the efficiency of a needle-free vaccine delivery method to that of a conventional needle/syringe injection. We report that DNA vaccination elicits robust serum antibody and cellular responses after three immunizations and confers significant protection against influenza virus challenge. Needle-free delivery elicited improved antibody responses with the same efficiency as conventional injection and should be considered for development as a practical alternative for vaccine administration.Keywords
This publication has 59 references indexed in Scilit:
- Reassortment between seasonal and swine-origin H1N1 influenza viruses generates viruses with enhanced growth capability in cell cultureVirus Research, 2011
- Swine Outbreak of Pandemic Influenza A Virus on a Canadian Research Farm Supports Human-to-Swine TransmissionClinical Infectious Diseases, 2011
- Induction of Broadly Neutralizing H1N1 Influenza Antibodies by VaccinationScience, 2010
- Swine Influenza A Vaccines, Pandemic (H1N1) 2009 Virus, and Cross-ReactivityEmerging Infectious Diseases, 2010
- Pandemic (H1N1) 2009 Infection in Swine Herds, Manitoba, CanadaEmerging Infectious Diseases, 2010
- Cross-Neutralization of 1918 and 2009 Influenza Viruses: Role of Glycans in Viral Evolution and Vaccine DesignScience Translational Medicine, 2010
- A consensus–hemagglutinin-based DNA vaccine that protects mice against divergent H5N1 influenza virusesProceedings of the National Academy of Sciences, 2008
- Multivalent HA DNA Vaccination Protects against Highly Pathogenic H5N1 Avian Influenza Infection in Chickens and MicePLOS ONE, 2008
- Immunization by Avian H5 Influenza Hemagglutinin Mutants with Altered Receptor Binding SpecificityScience, 2007
- Protective immunity to lethal challenge of the 1918 pandemic influenza virus by vaccinationProceedings of the National Academy of Sciences, 2006