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.

Journal of Virology
|September 16, 2006
PubMed

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.