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Assays for the Specific Growth Rate and Cell-binding Ability of Rotavirus
Published on: January 28, 2019
Human rotavirus infection. Strategies for the vaccinal prevention
K P Alekseev1, S L Kalnov1, T V Grebennikova1
1Virology «Federal Research Centre of Epidemilogy and Microbiology named after the honorary academician N.F. Gamaleya».
Insights
Rotavirus, a common childhood pathogen, causes hundreds of thousands of deaths annually, particularly in developing nations. Current vaccines show reduced efficacy and high costs, driving the need for improved rotavirus vaccines.
Area of Science:
- Virology
- Epidemiology
- Vaccinology
Background:
- Rotavirus is a leading cause of severe diarrhea in infants and young children globally.
- It causes hundreds of thousands of child deaths annually, disproportionately affecting impoverished populations.
- Rotavirus exhibits significant genetic and antigenic diversity, complicating vaccine development.
Purpose of the Study:
- To review the epidemiology and genetic diversity of rotavirus.
- To evaluate the development and efficacy of existing rotavirus vaccines.
- To highlight the ongoing need for more effective, affordable, and accessible rotavirus vaccines.
Main Methods:
- Literature review of rotavirus epidemiology, genetics, and vaccine development.
- Analysis of rotavirus vaccine efficacy data, particularly in developing countries.
- Examination of rotavirus interspecies transmission and vaccine strain origins.
Main Results:
- Group A rotavirus is the most significant human pathogen, with common genotypes including G1P[8].
- Existing vaccines like RotaTeq and Rotarix have varying efficacy, with reduced effectiveness (51%) in developing countries.
- The development of vaccines has involved methods like gene reassortment and utilizing specific genotypes.
Conclusions:
- Despite advancements, current rotavirus vaccines face challenges in efficacy, cost, and accessibility, especially in resource-limited settings.
- The genetic diversity of rotavirus necessitates continuous research for broadly protective and cost-effective vaccine solutions.
- Further research is crucial to develop next-generation rotavirus vaccines that address global health disparities.
Abstract:
Rotavirus was first isolated in 1973 in Australia from children with diarrhea. Hundreds of thousands of children die annually in developing countries from this virus with the mortality peaks in the most impoverished among them. According to wHo, rotavirus infection claims about 440 thousands children lives each year, being third in the mortality rate after pneumonia and malaria. Rotavirus is widely spread throughout the world and by the age of five years almost every child encountered this pathogen at least once. Rotavirus has a high genetic and antigenic diversity. The most important for humans is the group A rotavirus, and the most common by far genotypes are G1P [8], G2P [4], G3P [8], G4P [8], G9P [8], and to a lesser extent G12P [8]. There are three gene constellations described in rotavirus designated Wa, Ds-1, and Au-1. It is believed that they originated from rotaviruses of pigs, cattle, dogs, and cats, respectively. Cases of rotavirus interspecies transmission from animal to humans were reported. The first vaccines against rotavirus infection were based on naturally attenuated virus of the animal origin. Their efficiency, especially in developing countries, was inadequate, but today China and India use vaccines based on animal rotaviruses. Using the method of gene reassortation with the cattle rotavirus WC3 as a backbone, pentavalent vaccine against most common human rotavirus serotypes was developed and now successfully used as RotaTeq. The ability of rotavirus to protect against heterologous isolates was taken into account in the development of other vaccine, Rotarix, created on the basis of rotavirus genotype G1P1A [8]. The efficacy of these vaccines in developing countries is significantly reduced (51%), the cost of a dose is high, and so the search for more effective, safe, and inexpensive vaccines against rotavirus continues around the world.
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