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Hepatitis A virus subtype IB outbreak among MSM in Hungary with a link to a frozen berry source
Ágnes Dencs1, Andrea Hettmann1, Erzsébet Barcsay1
1National Reference Laboratory for Hepatitis Viruses, Department of Virology, National Center for Public Health and Pharmacy, Albert Florian Rd. 2-6, Budapest H-1097, Hungary.
Abstract:
Men who have sex with men (MSM) are at high risk of acquiring hepatitis A virus (HAV) and in recent years several HAV outbreaks mostly affecting MSM have been described. These outbreaks were caused by subtype IA strains circulating in this high-risk population. After years of low incidence, an outbreak among MSM in Hungary caused a significant increase in reported HAV infections in 2022. Samples from 224 HAV IgM-positive patients diagnosed in 2022 were tested for HAV RNA and positive samples were genotyped by sequencing. In 171 patients a unique subtype IB virus was detected with 99.8-100% sequence identity in the VP1/P2A junction. It was distinct from previously published strains, but most closely related to an Egyptian isolate. Sequence analysis revealed one dominant and three minor variants based on VP1/P2A. Whole genome sequencing revealed limited variation among these variants, suggesting a recent common origin. Epidemiological data indicated that sexual transmission was driving the outbreak for most of the year, suggested by the high male to female ratio and the large number of coinfections with HIV and other sexually transmitted infections among the patients. The outbreak was also associated with a restaurant cluster, in which one of the variants was detected and frozen berries were implicated as the source of infections. The outbreak strain was also detected in other countries around Europe and remained frequently detectable in Hungary in 2023. This study provides insights into the molecular and epidemiological characteristics of the described HAV outbreak. The results show that sequencing is not only useful in connecting cases to an outbreak, but also helps to clarify the relatedness of detected variants. Prevention strategies focusing on vulnerable communities may reduce the burden of HAV infections in the future.
Insights
A 2022 hepatitis A virus (HAV) outbreak in Hungary, primarily affecting men who have sex with men (MSM), was driven by a unique subtype IB strain. Molecular and epidemiological data revealed sexual transmission and a foodborne source, highlighting the need for targeted prevention.
Area of Science:
- Hepatology
- Virology
- Epidemiology
Background:
- Men who have sex with men (MSM) are a high-risk group for hepatitis A virus (HAV) infections, with outbreaks often linked to subtype IA strains.
- Hungary experienced a significant increase in reported HAV infections in 2022, marking a departure from years of low incidence.
Purpose of the Study:
- To investigate the molecular and epidemiological characteristics of the 2022 HAV outbreak in Hungary.
- To identify the specific HAV subtype and genetic variants involved in the outbreak.
- To elucidate the transmission dynamics and potential sources of infection.
Main Methods:
- Genotyping of HAV RNA from 224 IgM-positive patients diagnosed in 2022 using sequencing of the VP1/P2A junction.
- Whole genome sequencing to assess genetic variation among detected strains.
- Analysis of epidemiological data, including patient demographics, coinfections, and potential exposure sources.
Main Results:
- A unique subtype IB HAV strain, distinct from previously described outbreak strains, was identified in 171 patients.
- The outbreak strain exhibited high sequence identity (99.8-100%) in the VP1/P2A junction and limited whole-genome variation, suggesting a recent common origin.
- Epidemiological data pointed to sexual transmission as a primary driver, evidenced by a high male-to-female ratio and coinfections with HIV and other STIs. A restaurant cluster linked to frozen berries was also identified.
Conclusions:
- The 2022 Hungarian HAV outbreak was characterized by a novel subtype IB strain, primarily transmitted sexually among MSM.
- Molecular sequencing proved crucial for outbreak case-finding, variant relatedness assessment, and understanding transmission pathways.
- Targeted prevention strategies in vulnerable populations are essential to mitigate future HAV burdens.
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