An Alphavirus Vector-Based Tetravalent Dengue Vaccine Induces a Rapid and Protective Immune Response in Macaques That Differs Qualitatively from Immunity Induced by Live Virus Infection

Author:

White Laura J.1,Sariol Carlos A.2,Mattocks Melissa D.1,Wahala M. P. B. Wahala3,Yingsiwaphat Vorraphun4,Collier Martha L.3,Whitley Jill1,Mikkelsen Rochelle1,Rodriguez Idia V.2,Martinez Melween I.2,de Silva Aravinda3,Johnston Robert E.1

Affiliation:

1. Global Vaccines Inc., Research Triangle Park, North Carolina

2. Caribbean Primate Research Center, Department of Microbiology and Medical Zoology, Department of Internal Medicine, University of Puerto Rico-Medical Sciences Campus, San Juan, Puerto Rico

3. Department of Microbiology and Immunology, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina

4. Department of Biomedical Science, Chulalongkorn University, Bangkok, Thailand

Abstract

ABSTRACT Despite many years of research, a dengue vaccine is not available, and the more advanced live attenuated vaccine candidate in clinical trials requires multiple immunizations with long interdose periods and provides low protective efficacy. Here, we report important contributions to the development of a second-generation dengue vaccine. First, we demonstrate that a nonpropagating vaccine vector based on Venezuelan equine encephalitis virus replicon particles (VRP) expressing two configurations of dengue virus E antigen (subviral particles [prME] and soluble E dimers [E85]) successfully immunized and protected macaques against dengue virus, while antivector antibodies did not interfere with a booster immunization. Second, compared to prME-VRP, E85-VRP induced neutralizing antibodies faster, to higher titers, and with improved protective efficacy. Third, this study is the first to map antigenic domains and specificities targeted by vaccination versus natural infection, revealing that, unlike prME-VRP and live virus, E85-VRP induced only serotype-specific antibodies, which predominantly targeted EDIII, suggesting a protective mechanism different from that induced by live virus and possibly live attenuated vaccines. Fourth, a tetravalent E85-VRP dengue vaccine induced a simultaneous and protective response to all 4 serotypes after 2 doses given 6 weeks apart. Balanced responses and protection in macaques provided further support for exploring the immunogenicity and safety of this vaccine candidate in humans.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

Reference92 articles.

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4. WHO. 2009. Dengue guidelines for diagnosis, treatment, prevention and control. World Health Organization, Geneva, Switzerland.

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