Abstract
We describe the preclinical development of a dengue virus vaccine targeting the dengue virus serotype 2 (DENV2) envelope domain III (EDIII). This study provides proof-of-principle that a dengue EDIII protein scaffold/DNA vaccine can protect against dengue challenge. The dengue vaccine (EDIII-E2) is composed of both a protein particle and a DNA expression plasmid delivered simultaneously via intramuscular injection (protein) and gene gun (DNA) into rhesus macaques. The protein component can contain a maximum of 60 copies of EDIII presented on a multimeric scaffold of Geobacillus stearothermophilus E2 proteins. The DNA component is composed of the EDIII portion of the envelope gene cloned into an expression plasmid. The EDIII-E2 vaccine elicited robust antibody responses to DENV2, with neutralizing antibody responses detectable following the first boost and reaching titers of greater than 1:100,000 following the second and final boost. Vaccinated and naïve groups of macaques were challenged with DENV2. All vaccinated macaques were protected from detectable viremia by infectious assay, while naïve animals had detectable viremia for 2–7 days post-challenge. All naïve macaques had detectable viral RNA from day 2–10 post-challenge. In the EDIII-E2 group, three macaques were negative for viral RNA and three were found to have detectable viral RNA post challenge. Viremia onset was delayed and the duration was shortened relative to naïve controls. The presence of viral RNA post-challenge corresponded to a 10–30-fold boost in neutralization titers 28 days post challenge, whereas no boost was observed in the fully protected animals. Based on these results, we determine that pre-challenge 50% neutralization titers of >1:6000 correlated with sterilizing protection against DENV2 challenge in EDIII-E2 vaccinated macaques. Identification of the critical correlate of protection for the EDIII-E2 platform in the robust non-human primate model lays the groundwork for further development of a tetravalent EDIII-E2 dengue vaccine.
| Original language | English (US) |
|---|---|
| Pages (from-to) | 3500-3507 |
| Number of pages | 8 |
| Journal | Vaccine |
| Volume | 34 |
| Issue number | 30 |
| DOIs | |
| State | Published - Jun 24 2016 |
Funding
We thank the ONPRC Division of Comparative Medicine for support of the macaque vaccination and challenge. This research was supported by the Sunlin and Priscilla Chou Foundation (W. Messer), joint pilot funds provided by UL1 TR000128 (N. Haigwood), Oregon Clinical Trials Research Institute (W. Messer and N. Haigwood) and P51 OD011092 (N. Haigwood), Oregon National Primate Research Center, U42 OD010426 (K. Andrews), R01 AI074379 (N. Haigwood), F32 AI106489 (S. McBurney) and T32AI1078903 (J. Sunshine). We thank Aravinda de Silva at the University of North Carolina at Chapel Hill for the mouse monoclonal antibody 8A5, human monoclonal antibodies DVC 3.7, 10.16 and 14.21 and recombinant EDIII protein. We thank Claire Huang, CDC Fort Collins, for generously providing the 16681 DENV2 clone.
| Funders | Funder number |
|---|---|
| Oregon Clinical Trials Research Institute | P51 OD011092 |
| Sunlin and Priscilla Chou Foundation | UL1 TR000128 |
| National Institute of Allergy and Infectious Diseases | F32AI106489 |
| Oregon National Primate Research Center | T32AI1078903, F32 AI106489, U42 OD010426, R01 AI074379 |
Keywords
- DNA vaccine
- Dengue
- Dengue envelope domain III vaccine
- Dengue subunit vaccine
- Dengue vaccine
- Protein scaffold vaccine
ASJC Scopus subject areas
- Molecular Medicine
- General Immunology and Microbiology
- General Veterinary
- Public Health, Environmental and Occupational Health
- Infectious Diseases
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