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Updated: Oct 8, 2025

Isolation of Fidelity Variants of RNA Viruses and Characterization of Virus Mutation Frequency
Published on: June 16, 2011
Influence of Ribavirin on Mumps Virus Population Diversity
Mirna Jurković1, Anamarija Slović1, Dubravko Forčić1
1Centre for Research and Knowledge Transfer in Biotechnology, University of Zagreb, Rockefellerova 10, 10000 Zagreb, Croatia.
Abstract:
Frequent mumps outbreaks in vaccinated populations and the occurrence of neurological complications (e.g., aseptic meningitis or encephalitis) in patients with mumps indicate the need for the development of more efficient vaccines as well as specific antiviral therapies. RNA viruses are genetically highly heterogeneous populations that exist on the edge of an error threshold, such that additional increases in mutational burden can lead to extinction of the virus population. Deliberate modulation of their natural mutation rate is being exploited as an antiviral strategy and a possibility for rational vaccine design. The aim of this study was to examine the ability of ribavirin, a broad-spectrum antiviral agent, to introduce mutations in the mumps virus (MuV) genome and to investigate if resistance develops during long-term in vitro exposure to ribavirin. An increase in MuV population heterogeneity in the presence of ribavirin has been observed after one passage in cell culture, as well as a bias toward C-to-U and G-to-A transitions, which have previously been defined as ribavirin-related. At higher ribavirin concentration, MuV loses its infectivity during serial passaging and does not recover. At low ribavirin concentration, serial passaging leads to a more significant increase in population diversity and a stronger bias towards ribavirin-related transitions, independently of viral strain or cell culture. In these conditions, the virus retains its initial growth capacity, without development of resistance at a whole-virus population level.
Insights
Ribavirin increases mumps virus (MuV) genetic diversity and mutation rates in cell culture. Low concentrations enhance viral heterogeneity without developing resistance, suggesting potential for antiviral therapy.
Area of Science:
- Virology
- Molecular Biology
- Antiviral Research
Background:
- Mumps outbreaks persist in vaccinated populations, highlighting the need for improved vaccines and therapies.
- RNA viruses' genetic heterogeneity makes them susceptible to increased mutation rates, a potential antiviral strategy.
- Ribavirin is a broad-spectrum antiviral agent known to induce mutations in viral genomes.
Purpose of the Study:
- To investigate ribavirin's capacity to induce mutations in the mumps virus (MuV) genome.
- To determine if mumps virus develops resistance to ribavirin during prolonged in vitro exposure.
Main Methods:
- Serial passaging of mumps virus in cell culture with varying concentrations of ribavirin.
- Analysis of viral genome heterogeneity and mutation patterns (C-to-U and G-to-A transitions).
- Assessment of viral infectivity and growth capacity under ribavirin treatment.
Main Results:
- Ribavirin increased MuV population heterogeneity and induced characteristic C-to-U and G-to-A mutations after one passage.
- High ribavirin concentrations led to irreversible loss of MuV infectivity.
- Low ribavirin concentrations enhanced viral diversity and mutation bias without resistance development or loss of growth capacity.
Conclusions:
- Ribavirin effectively increases mumps virus genetic diversity and mutational burden in vitro.
- Low-dose ribavirin treatment shows potential as an antiviral strategy by destabilizing the viral genome without inducing resistance.
- Further research into ribavirin's application for mumps treatment and vaccine development is warranted.
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