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Scarlet Fever Epidemic in China Caused by Streptococcus pyogenes Serotype M12: Epidemiologic and Molecular Analysis
Yuanhai You1, Mark R Davies2, Melinda Protani3
1State Key Laboratory for Infectious Disease Prevention and Control, Collaborative Innovation Center for Diagnosis and Treatment of Infectious Diseases, National Institute for Communicable Disease Control and Prevention, Chinese Center for Disease Control and Prevention, Beijing, 102206, China.
Abstract:
From 2011, Hong Kong and mainland China have witnessed a sharp increase in reported cases, with subsequent reports of epidemic scarlet fever in North Asia and the United Kingdom. Here we examine epidemiological data and investigate the genomic context of the predominantly serotype M12 Streptococcus pyogenes scarlet fever isolates from mainland China. Incident case data was obtained from the Chinese Nationwide Notifiable Infectious Diseases Reporting Information System. The relative risk of scarlet fever in recent outbreak years 2011-2016 was calculated using the median age-standardised incidence rate, compared to years 2003-2010 prior this outbreak. Whole genome sequencing was performed on 32 emm12 scarlet fever isolates and 13 emm12 non-scarlet fever isolates collected from different geographic regions of China, and compared with 203 published emm12 S. pyogenes genomes predominantly from scarlet fever outbreaks in Hong Kong (n=134) and the United Kingdom (n=63). We found during the outbreak period (2011-2016), the median age-standardised incidence in China was 4.14/100,000 (95% confidence interval (CI) 4.11-4.18), 2.62-fold higher (95% CI 2.57-2.66) than that of 1.58/100,000 (95% CI 1.56-1.61) during the baseline period prior to the outbreak (2003-2010). Highest incidence was reported for children 5years of age (80.5/100,000). Streptococcal toxin encoding prophage φHKU.vir and φHKU.ssa in addition to the macrolide and tetracycline resistant ICE-emm12 and ICE-HKU397 elements were found amongst mainland China multi-clonal emm12 isolates suggesting a role in selection and expansion of scarlet fever lineages in China. Global dissemination of toxin encoded prophage has played a role in the expansion of scarlet fever emm12 clones. These findings emphasize the role of comprehensive surveillance approaches for monitoring of epidemic human disease.
Insights
Scarlet fever outbreaks in China increased significantly from 2011, with M12 Streptococcus pyogenes strains showing higher incidence in children. Genomic analysis revealed toxin prophages and resistance elements contributing to scarlet fever expansion.
Area of Science:
- Microbiology
- Epidemiology
- Genomics
Background:
- Scarlet fever cases, primarily caused by Streptococcus pyogenes serotype M12, surged in Hong Kong and mainland China starting in 2011.
- Subsequent outbreaks were reported in North Asia and the United Kingdom, indicating a wider epidemic.
Purpose of the Study:
- To investigate the epidemiological data and genomic context of Streptococcus pyogenes M12 scarlet fever isolates from mainland China.
- To determine the relative risk of scarlet fever during the 2011-2016 outbreak period compared to 2003-2010.
Main Methods:
- Analysis of incident case data from the Chinese Nationwide Notifiable Infectious Diseases Reporting Information System.
- Whole genome sequencing of 32 emm12 scarlet fever and 13 emm12 non-scarlet fever isolates from China.
- Comparison with 203 published emm12 S. pyogenes genomes from China, Hong Kong, and the UK.
Main Results:
- The median age-standardized incidence of scarlet fever in China (2011-2016) was 4.14/100,000, a 2.62-fold increase compared to the baseline (2003-2010).
- Children aged 5 years had the highest incidence rate (80.5/100,000).
- Genomic analysis identified streptococcal toxin encoding prophages (φHKU.vir, φHKU.ssa) and mobile genetic elements (ICE-emm12, ICE-HKU397) associated with macrolide and tetracycline resistance in Chinese isolates.
Conclusions:
- The findings suggest that toxin-encoding prophages and antibiotic resistance elements played a role in the selection and expansion of scarlet fever lineages in China.
- Global dissemination of these elements likely contributed to the expansion of scarlet fever emm12 clones worldwide.
- Comprehensive surveillance is crucial for monitoring epidemic human diseases like scarlet fever.
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