Seasonal influenza vaccines provide variable protection against antigenically drifted influenza A (H1N1 and H3N2) and influenza B viruses. Broadly protective approaches using computationally optimized broadly reactive antigens (COBRAs) can enhance immunity against diverse strains. Bis-(3′,5′)-cyclic dimeric adenosine m...
Camila C. S. Caetano, David A. Prots, Matthew H. Thomas et al.· Frontiers in Immunology· 0 citations
This ex vivo primary ferret nasal epithelial cell and peripheral blood mononuclear cell co-culture model shows that signaling decoupling across the "epithelial-immune bridge" drives suboptimal IBV immunogenicity.
The hemagglutinin (HA) glycoprotein of seasonal influenza viruses undergoes continual antigenic drift, contributing to vaccine mismatch and reduced effectiveness of strain-specific seasonal vaccines. Although vaccination remains the most effective strategy for preventing influenza disease, conventional egg-based vaccin...
James D. Allen, Jessica M. Medina, Camila Caetano et al.· bioRxiv· 0 citations
It is demonstrated that an integrated generation–selection strategy can enhance vaccine coverage across current and future A(H3N2) seasons and may be applicable to other influenza subtypes.
Victoria R. Howard, James D. Allen, Matthew H. Thomas et al.· bioRxiv· 0 citations
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