Why the study?
Coxsackievirus A6 has emerged as a significant pathogen responsible for severe hand, foot, and mouth disease, warranting analysis of its viral evolution and demographic characteristics to assist in surveillance and management.
CVA6 associated with severe HFMD in China is predominantly the D3a sub-genotype and exhibits increasing evolutionary diversity, highlighting the need for enhanced surveillance.
I need the full paper and key finding before writing the implication. Searching now.Opening the paper and PDF for the key finding and study details.May warrant closer surveillance of severe HFMD in young children; leaves open whether CVA6 diversification will drive outbreaks.
Introduction Coxsackievirus A6 (CVA6) has emerged as a significant pathogen responsible for severe cases of hand, foot, and mouth disease (HFMD). This study aims to delineate the demographic characteristics and analyze the viral evolution of severe HFMD associated with CVA6, thereby assisting in its surveillance and management. Methods In this investigation, 74 strains of CVA6 were isolated from samples collected from severe HFMD cases between 2012 and 2023. The VP1 gene sequences of CVA6 were amplified and analyzed to assess population historical dynamics and evolutionary characteristics using BEAST, DnaSP6, and PopART. Results A significant portion (94.4%) of severe CVA6-associated HFMD cases (51 out of 54, with 20 lacking age information) were children under 5 years old. Among the 74 CVA6 strains analyzed, 72 belonged to the D3a sub-genotype, while only two strains were D2 sub-genotype. The average genetic distance between VP1 sequences prior to 2015 was 0.027, which increased to 0.051 when compared to sequences post-2015. Historical population dynamics analysis indicated three significant population expansions of severe CVA6-associated HFMD during 2012–2013, 2013–2014, and 2019–2020, resulting in the formation of 65 distinct haplotypes. Consistent with the MCC tree findings, transitioning between regional haplotypes required multiple base substitutions, showcasing an increase in population diversity during the evolutionary process (from 14 haplotypes in 2013 to 55 haplotypes over the subsequent decade). Conclusions CVA6, associated with severe HFMD, is evolving and presents a risk of outbreak occurrence. Thus, enhanced surveillance of severe HFMD is imperative.
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Lu et al. (2024) studied this question.
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