Dynamics of antimicrobial resistance in intestinal Escherichia coli from children in community settings in South Asia and sub-Saharan Africa

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作者
Danielle J. Ingle
Myron M. Levine
Karen L. Kotloff
Kathryn E. Holt
Roy M. Robins-Browne
机构
[1] The University of Melbourne,Department of Microbiology and Immunology, Peter Doherty Institute for Infection and Immunity
[2] The University of Melbourne,Department of Biochemistry and Molecular Biology, Bio21 Molecular Science and Biotechnology Institute
[3] University of Maryland School of Medicine,Departments of Pediatrics and Medicine, Center for Vaccine Development
[4] London School of Hygiene and Tropical Medicine,National Centre for Epidemiology and Population Health, Research School of Population Health
[5] Murdoch Children’s Research Institute,Microbiological Diagnostic Unit Public Health Laboratory, Department of Microbiology and Immunology, Peter Doherty Institute for Infection and Immunity
[6] Royal Children’s Hospital,undefined
[7] The Australian National University,undefined
[8] The University of Melbourne,undefined
来源
Nature Microbiology | 2018年 / 3卷
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摘要
The dynamics of antimicrobial resistance (AMR) in developing countries are poorly understood, especially in community settings, due to a sparsity of data on AMR prevalence and genetics. We used a combination of phenotyping, genomics and antimicrobial usage data to investigate patterns of AMR amongst atypical enteropathogenic Escherichia coli (aEPEC) strains isolated from children younger than five years old in seven developing countries (four in sub-Saharan Africa and three in South Asia) over a three-year period. We detected high rates of AMR, with 65% of isolates displaying resistance to three or more drug classes. Whole-genome sequencing revealed a diversity of known genetic mechanisms for AMR that accounted for >95% of phenotypic resistance, with comparable rates amongst aEPEC strains associated with diarrhoea or asymptomatic carriage. Genetic determinants of AMR were associated with the geographic location of isolates, not E. coli lineage, and AMR genes were frequently co-located, potentially enabling the acquisition of multi-drug resistance in a single step. Comparison of AMR with antimicrobial usage data showed that the prevalence of resistance to fluoroquinolones and third-generation cephalosporins was correlated with usage, which was higher in South Asia than in Africa. This study provides much-needed insights into the frequency and mechanisms of AMR in intestinal E. coli in children living in community settings in developing countries.
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页码:1063 / 1073
页数:10
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