New Approaches to the Development of Live Attenuated Rabies Vaccines
- 1 April 2002
- journal article
- review article
- Published by Mary Ann Liebert Inc in Hybridoma and Hybridomics
- Vol. 21 (2) , 129-134
- https://doi.org/10.1089/153685902317401735
Abstract
In the United States, extensive reservoirs of the rabies virus exist in many diverse wild animal species, which continue to pose a serious risk of lethal infection of humans and cause an economic burden exceeding $1 billion annually. Previous experience with rabies control in foxes in Europe has clearly demonstrated that oral immunization with live vaccines is the only practical approach to eradicate rabies in free-ranging animals. However, unlike Europe where vulpine rabies was the only major reservoir, the Americas harbor a variety of species including raccoons, skunks, coyotes, and bats that serve as the primary reservoirs of rabies. Each of these animal reservoirs carries an antigenically distinct virus variant. The currently available modified-live rabies virus vaccines have either safety problems or do not induce sufficient protective immunity in particular wildlife species. Therefore, there is a need for the development of new live rabies virus vaccines that are very safe and highly effective in particular wildlife species. Based on previous observations indicating that the potency of a vaccine is significantly increased if the G protein of the vaccine strain is identical to that of the target virus, we have used a reverse genetics approach to engineer viruses that contain G proteins from virus strains associated with relevant wildlife species. Furthermore, because our recent data also indicate that the pathogenicity of a particular rabies virus strain is inversely proportional to its ability to induce apoptosis and that low-level apoptosis-inducing ability is associated with low anti-viral immune responses, we inserted genes encoding pro-apoptotic proteins to stimulate immunity or otherwise interfere with viral pathogenesis into these recombinant viruses to enhance their efficacy and safety.This publication has 33 references indexed in Scilit:
- Overexpression of the Rabies Virus Glycoprotein Results in Enhancement of Apoptosis and Antiviral Immune ResponseJournal of Virology, 2002
- Overexpression of Cytochromecby a Recombinant Rabies Virus Attenuates Pathogenicity and Enhances Antiviral ImmunityJournal of Virology, 2001
- Control of Viremia and Prevention of Clinical AIDS in Rhesus Monkeys by Cytokine-Augmented DNA VaccinationScience, 2000
- Global infectious disease surveillanceInternational Journal of Infectious Diseases, 2000
- Budding of Rabies Virus Particles in the Absence of the Spike GlycoproteinCell, 1996
- The Ascension of Wildlife Rabies: A Cause for Public Health Concern or Intervention?Emerging Infectious Diseases, 1995
- Control of Rabies in WildlifeScientific American, 1992
- Ineffectiveness and Comparative Pathogenicity of Attenuated Rabies Virus Vaccines for the Striped Skunk (Mephitis mephitis)Journal of Wildlife Diseases, 1990
- Synthetic peptides corresponding to sequences of snake venom neurotoxins and rabies virus glycoprotein bind to the nicotinic acetylcholine receptorProteins-Structure Function and Bioinformatics, 1987
- Characterization of an antigenic determinant of the glycoprotein that correlates with pathogenicity of rabies virus.Proceedings of the National Academy of Sciences, 1983