2019•Journal of VirologyOpen access

Development of Influenza B Universal Vaccine Candidates Using the “Mosaic” Hemagglutinin Approach

Weina Sun, Ericka Kirkpatrick Roubidoux, Megan E. Ermler, Raffael Nachbagauer, Felix Broecker, Florian Krammer, Peter Palese

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Abstract

This work reports a universal influenza B virus vaccination strategy based on focusing antibody responses to conserved head and stalk epitopes of the hemagglutinin. Recombinant mosaic influenza B hemagglutinin proteins and recombinant viruses have been generated as novel vaccine candidates. This vaccine strategy provided broad cross-protection in the mouse model. Our findings will inform and drive development toward a more effective influenza B virus vaccine.

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This work reports a universal influenza B virus vaccination strategy based on focusing antibody responses to conserved head and stalk epitopes of the hemagglutinin. Recombinant mosaic influenza B hemagglutinin proteins and recombinant viruses have been generated as novel vaccine candidates. This vaccine strategy provided broad cross-protection in the mouse model. Our findings will inform and drive development toward a more effective influenza B virus vaccine.

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Available abstract

This work reports a universal influenza B virus vaccination strategy based on focusing antibody responses to conserved head and stalk epitopes of the hemagglutinin. Recombinant mosaic influenza B hemagglutinin proteins and recombinant viruses have been generated as novel vaccine candidates. This vaccine strategy provided broad cross-protection in the mouse model. Our findings will inform and drive development toward a more effective influenza B virus vaccine.

Key concepts: Virology, Hemagglutinin (influenza), Biology, Influenza vaccine, Recombinant DNA, Epitope, Virus, Vaccination

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