AI Article Synopsis

  • This study assessed the impact of rotavirus vaccination over 13 seasons in Gwangju, Korea, highlighting significant changes in rotavirus prevalence and genotype distribution.
  • It found a drop in prevalence from 16.3% pre-vaccine to 5.4% post-vaccine, with G1P[8] being the dominant genotype before vaccination and a shift to G8P[8] afterwards.
  • The findings underscore the importance of ongoing monitoring of rotavirus genotypes to comprehend its epidemiology and evolving patterns post-vaccination.

Article Abstract

This study evaluated the long-term impact of rotavirus vaccination on prevalence, seasonality, and genotype distribution in Gwangju, Korea for 13 seasons. Rotavirus was identified using ELISA and then sequenced for G and P genotypes by Reverse Transcription Polymerase Chain Reactions for diarrhoeagenic patient specimens from local hospitals between January 2008 and August2020. Of 26,902 fecal samples, 2919 samples (10.9%) were ELISA positive. The prevalence declined from 16.3% in pre-vaccine era to 5.4% in post-vaccine era. In the pre-vaccine period, G1P[8] was the most common genotype, followed by G2P[4], G3P[8], and G9P[8], etc. In the transitional period, the proportion of G2P[4] became the dominant genotype and G1P[8] was still commonly identified. In contrast, the novel genotype G8P[8] was predominant in the post-vaccine period. Meanwhile, G2P[4] and G8P[8] were major genotypes in both Rotarix and RotaTeq groups. The substantial decline of G1P[8] prevalence, reemergence of G1P[8], G3P[8], and G2P[4] rotavirus strains, and surge of the rare G8P[8] after vaccine introduction were interesting points to note. The continuous surveillance on the genotypes of RV will be needed to understand rotavirus epidemiology and their evolutionary patterns, as caution is required when interpreting temporal changes in RV genotype dynamic.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8073504PMC
http://dx.doi.org/10.3390/vaccines9040406DOI Listing

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