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1. Impact of yellow fever virus envelope protein on wild-type and vaccine epitopes and tissue tropism

2. A genetically stable Zika virus vaccine candidate protects mice against virus infection and vertical transmission

3. Inter- and intra-lineage genetic diversity of wild-type Zika viruses reveals both common and distinctive nucleotide variants and clusters of genomic diversity

4. Using Next Generation Sequencing to Study the Genetic Diversity of Candidate Live Attenuated Zika Vaccines

5. Attenuation of Zika Virus by Passage in Human HeLa Cells

6. Defining New Therapeutics Using a More Immunocompetent Mouse Model of Antibody-Enhanced Dengue Virus Infection

7. Impact of yellow fever virus envelope protein on wild-type and vaccine epitopes and tissue tropism

8. A genetically stable Zika virus vaccine candidate protects mice against virus infection and vertical transmission

9. Ideal Criteria for Accurate Mouse Models of Vector-Borne Diseases with Emphasis on Scrub Typhus and Dengue

10. Spectrum of activity testing for therapeutics against all four dengue virus serotypes in AG129 mouse models: Proof-of-concept studies with the adenosine nucleoside inhibitor NITD-008

11. A DENV-2-type-specific monoclonal antibody binds to the DENV-complex-reactive antigenic site on envelope protein domain 3

12. Finding Their Type: Elusive Antigenic Sites on Dengue Virus 3 Mapped with Human Antibodies

13. Using next generation sequencing to study the genetic diversity of candidate live attenuated zika vaccines

14. An attenuated Zika virus NS4B protein mutant is a potent inducer of antiviral immune responses

15. Attenuation of Zika Virus by Passage in Human HeLa Cells

16. Inter- and intra-lineage genetic diversity of wild-type Zika viruses reveals both common and distinctive nucleotide variants and clusters of genomic diversity

17. Characterization of a murine model of non-lethal, symptomatic dengue virus infection

18. A lethal model of disseminated dengue virus type 1 infection in AG129 mice

19. Characterization of lethal dengue virus type 4 (DENV-4) TVP-376 infection in mice lacking both IFN-α/β and IFN-γ receptors (AG129) and comparison with the DENV-2 AG129 mouse model

20. Mouse models of dengue virus infection for vaccine testing

21. A Dengue Virus Type 4 Model of Disseminated Lethal Infection in AG129 Mice

22. A lethal murine infection model for dengue virus 3 in AG129 mice deficient in type I and II interferon receptors leads to systemic disease

23. A Dengue Virus Type 4 Model of Disseminated Lethal Infection in AG129 Mice.

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