4.7 Article

Generation of a Live Attenuated Influenza Vaccine that Elicits Broad Protection in Mice and Ferrets

Journal

CELL HOST & MICROBE
Volume 21, Issue 3, Pages 334-343

Publisher

CELL PRESS
DOI: 10.1016/j.chom.2017.02.007

Keywords

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Funding

  1. Chinese Academy of Medical Sciences, including CAMS Initiative for Innovative Medicine [2016-I2M-1-005]
  2. institutional research fund for Thousand Talents Program at the CAMS
  3. national special research fund for public welfare industry at the CAMS
  4. PUMC Youth Fund [3332015124]
  5. National Natural Science Foundation of China [91542201, 81590765, 81501351]
  6. Ministry of Health of China [201302018]
  7. Ministry of Science and Technology of China [2013CB911103]
  8. national key scientific and technological special project of China for the development of major innovative drug [2015ZX09102023]
  9. Ministry of Health and Family Planning of China [201302018]
  10. NIH [AI069120, AI056154, AI078389, T32 AI089398]

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New influenza vaccines that provide effective and broad protection are desperately needed. Live attenuated viruses are attractive vaccine candidates because they can elicit both humoral and cellular immune responses. However, recent formulations of live attenuated influenza vaccines (LAIVs) have not been protective. We combined high-coverage transposon mutagenesis of influenza virus with a rapid high-throughput screening for attenuation to generate W7-791, a live attenuated mutant virus strain. W7-791 produced only a transient asymptomatic infection in adult and neonatal mice even at doses 100-fold higher than the LD50 of the parent strain. A single administration of W7-791 conferred full protection to mice against lethal challenge with H1N1, H3N2, and H5N1 strains, and improved viral clearance in ferrets. Adoptive transfer of T cells from W7-791-immunized mice conferred heterologous protection, indicating a role for T cell-mediated immunity. These studies present an LAIV development strategy to rapidly generate and screen entire libraries of viral clones.

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