Matrix protein 2 vaccination and protection against influenza viruses, including subtype H5N1

Changes in influenza viruses require regular reformulation of strain-specific influenza vaccines. Vaccines based on conserved antigens provide broader protection. Influenza matrix protein 2 (M2) is highly conserved across influenza A subtypes. To evaluate its efficacy as a vaccine candidate, we vacc...

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Veröffentlicht in:Emerging infectious diseases 2007-03, Vol.13 (3), p.426-435
Hauptverfasser: Tompkins, Stephen Mark, Zhao, Zi-Shan, Lo, Chia-Yun, Misplon, Julia A, Liu, Teresa, Ye, Zhiping, Hogan, Robert J, Wu, Zhengqi, Benton, Kimberly A, Tumpey, Terrence M, Epstein, Suzanne L
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Sprache:eng
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Zusammenfassung:Changes in influenza viruses require regular reformulation of strain-specific influenza vaccines. Vaccines based on conserved antigens provide broader protection. Influenza matrix protein 2 (M2) is highly conserved across influenza A subtypes. To evaluate its efficacy as a vaccine candidate, we vaccinated mice with M2 peptide of a widely shared consensus sequence. This vaccination induced antibodies that cross-reacted with divergent M2 peptide from an H5N1 subtype. A DNA vaccine expressing full-length consensus-sequence M2 (M2-DNA) induced M2-specific antibody responses and protected against challenge with lethal influenza. Mice primed with M2-DNA and then boosted with recombinant adenovirus expressing M2 (M2-Ad) had enhanced antibody responses that crossreacted with human and avian M2 sequences and produced T-cell responses. This M2 prime-boost vaccination conferred broad protection against challenge with lethal influenza A, including an H5N1 strain. Vaccination with M2, with key sequences represented, may provide broad protection against influenza A.
ISSN:1080-6040
1080-6059
DOI:10.3201/eid1303.061125