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Cross-protection against Marburg virus strains by using a live, attenuated recombinant vaccine
Kathleen M Daddario-DiCaprio1, Thomas W Geisbert, Joan B Geisbert
1Virology Division, USAMRIID, Fort Detrick, MD 21702-5011, USA.
Abstract:
Marburg virus (MARV) has been associated with sporadic episodes of hemorrhagic fever, including a recent highly publicized outbreak in Angola that produced severe disease and significant mortality in infected patients. MARV is also considered to have potential as a biological weapon. Recently, we reported the development of a promising attenuated, replication-competent vaccine against MARV based on recombinant vesicular stomatitis virus (VSV) expressing the glycoprotein of the Musoke strain of MARV (VSVDeltaG/MARVGP-Musoke). We used this vaccine to demonstrate complete protection of cynomolgus monkeys against a homologous MARV challenge. While these results are highly encouraging, an effective vaccine would need to confer protection against all relevant strains of MARV. Here, we evaluated the protective efficacy of the VSVDeltaG/MARVGP-Musoke vaccine against two heterologous MARV strains, the seemingly more pathogenic Angola strain and the more distantly related Ravn strain. In this study, seven cynomolgus monkeys were vaccinated with the VSVDeltaG/MARVGP-Musoke vector. Three of these animals were challenged with the Angola strain, three with the Ravn strain, and a single animal with the Musoke strain of MARV. Two animals served as controls and were each injected with a nonspecific VSV vector; these controls were challenged with the Angola and Ravn strains, respectively. Both controls succumbed to challenge by day 8. However, none of the specifically vaccinated animals showed any evidence of illness either from the vaccination or from the MARV challenges and all of these animals survived. These data suggest that the VSVDeltaG/MARVGP-Musoke vaccine should be sufficient to protect against all known MARV strains.
Insights
A novel Marburg virus (MARV) vaccine, VSVDeltaG/MARVGP-Musoke, demonstrated complete protection in nonhuman primates against homologous and heterologous MARV strains, including the Angola strain.
Area of Science:
- Virology
- Vaccinology
- Infectious Diseases
Background:
- Marburg virus (MARV) causes severe hemorrhagic fever with significant mortality.
- MARV outbreaks, like the recent Angola epidemic, highlight the urgent need for effective countermeasures.
- MARV is also recognized for its potential as a biological weapon, increasing the demand for robust vaccines.
Purpose of the Study:
- To evaluate the cross-protective efficacy of an experimental Marburg virus vaccine.
- To determine if the VSVDeltaG/MARVGP-Musoke vaccine protects against heterologous MARV strains, specifically the Angola and Ravn strains.
- To assess the vaccine's safety and effectiveness against diverse MARV strains.
Main Methods:
- Development of an attenuated, replication-competent Marburg virus vaccine (VSVDeltaG/MARVGP-Musoke) using recombinant vesicular stomatitis virus.
- Vaccination of seven cynomolgus monkeys with the VSVDeltaG/MARVGP-Musoke vector.
- Challenge of vaccinated and control animals with homologous (Musoke) and heterologous (Angola, Ravn) Marburg virus strains.
Main Results:
- All vaccinated nonhuman primates survived Marburg virus challenges with homologous and heterologous strains.
- Vaccinated animals showed no signs of illness from vaccination or subsequent Marburg virus exposure.
- Control animals receiving a non-specific VSV vector succumbed to Marburg virus challenge by day 8.
Conclusions:
- The VSVDeltaG/MARVGP-Musoke vaccine provides complete protection against homologous and heterologous Marburg virus strains.
- This vaccine candidate shows potential for broad protection against all known Marburg virus strains.
- The study supports the development of this recombinant VSV-based vaccine for Marburg virus disease prevention.
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