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21 results on '"egg adaptation"'

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1. Relative Vaccine Effectiveness of Cell- vs Egg-Based Quadrivalent Influenza Vaccine Against Test-Confirmed Influenza Over 3 Seasons Between 2017 and 2020 in the United States.

2. Antibody response to sequential vaccination with cell culture, recombinant, or egg-based influenza vaccines among U.S. adults

3. Cell-based influenza vaccines: An effective vaccine option for under 60-year-olds

4. Cell-Based Manufacturing Technology Increases Antigenic Match of Influenza Vaccine and Results in Improved Effectiveness.

5. Cost-Effectiveness Analysis of Cell Versus Egg-Based Seasonal Influenza Vaccination in Children and Adults in Argentina.

6. Cell-based influenza vaccines: An effective vaccine option for under 60-year-olds

7. Antibody response to sequential vaccination with cell culture, recombinant, or egg-based influenza vaccines among U.S. adults.

8. Cell-Based Manufacturing Technology Increases Antigenic Match of Influenza Vaccine and Results in Improved Effectiveness

9. Cost-Effectiveness Analysis of Cell Versus Egg-Based Seasonal Influenza Vaccination in Children and Adults in Argentina

10. Comparison of antigenic mutation during egg and cell passage cultivation of H3N2 influenza virus.

11. Acquisition of Innate Inhibitor Resistance and Mammalian Pathogenicity During Egg Adaptation by the H9N2 Avian Influenza Virus

12. Acquisition of Innate Inhibitor Resistance and Mammalian Pathogenicity During Egg Adaptation by the H9N2 Avian Influenza Virus.

13. The S190R mutation in the hemagglutinin protein of pandemic H1N1 2009 influenza virus increased its pathogenicity in mice.

14. Comparison of antigenic mutation during egg and cell passage cultivation of H3N2 influenza virus

15. Cell-Based Manufacturing Technology Increases Antigenic Match of Influenza Vaccine and Results in Improved Effectiveness.

16. Poor Immunogenicity, Not Vaccine Strain Egg Adaptation, May Explain the Low H3N2 Influenza Vaccine Effectiveness in 2012–2013

17. Molecular Changes Associated with Adaptation of Equine Influenza H3N8 Virus in Embryonated Chicken Eggs.

18. Structural basis for receptor specificity of influenza B virus hemagglutinin.

19. Comparison of antigenic mutation during egg and cell passage cultivation of H3N2 influenza virus.

20. Isolation of an Egg-Adapted Influenza A(H3N2) Virus without Amino Acid Substitutions at the Antigenic Sites of Its Hemagglutinin.

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