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      Human carriage of cefotaxime-resistant Escherichia coli in North-East India: an analysis of STs and associated resistance mechanisms

      1 , 2 , 1 , 2
      Journal of Antimicrobial Chemotherapy
      Oxford University Press (OUP)

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          Abstract

          Objectives

          To determine the prevalence of Escherichia coli STs and associated resistance mechanisms carried by the community in North-East India.

          Methods

          E. coli (108) were isolated from sewage collected from 19 sites across the city of Silchar by plating on MacConkey agar with/without selection (50 mg/L cefotaxime). Species identification was confirmed by MALDI-TOF MS for 82 isolates. Common resistance mechanisms were determined by WGS of pooled E. coli isolates. PFGE combined with specific probes determined the presence of common resistance mechanisms in all isolates. Phylotypes, multilocus STs, core-genome multilocus STs, resistance genes and virulence genes were determined by in silico analysis of 38 genomes.

          Results and conclusions

          Analysis of isolates collected without selection (n = 33) indicated that cefotaxime resistance in E. coli was 42% (14/33) and estimated meropenem resistance at 9%. The remaining 58% (19/33) were additionally susceptible to ampicillin, trimethoprim, ciprofloxacin and aminoglycosides. The most common ST among the cefotaxime-resistant E. coli was ST167 (29%), followed by ST410 (17%) and ST648 (10%). E. coli ST131 was absent from the collection. Sixty-three isolates were resistant to cefotaxime and harboured blaCTX-M-15 [54% (34/63)] or blaCMY-42 [46% (29/63)], of which 10% (6/63) harboured both genes. Carbapenem resistance was due to blaNDM-5, found in 10/63 cefotaxime-resistant isolates, and/or blaOXA-181, found in 4/63 isolates. NDM-5 was encoded by IncX3 and/or IncFII plasmids and CMY-42 was mostly encoded by IncI plasmids. NDM-5 appears to have replaced NDM-1 in this region and CMY-42 appears to be in the process of replacing CTX-M-15.

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          Author and article information

          Contributors
          (View ORCID Profile)
          Journal
          Journal of Antimicrobial Chemotherapy
          Oxford University Press (OUP)
          0305-7453
          1460-2091
          October 17 2019
          October 17 2019
          Affiliations
          [1 ]Department of Infection and Immunity, Cardiff University, Cardiff, UK
          [2 ]Karaganda Medical University, Karaganda, Kazakhstan
          Article
          10.1093/jac/dkz416
          31622465
          a494ab0b-53d5-4ebc-a1d4-9c2275e2b535
          © 2019

          https://academic.oup.com/journals/pages/open_access/funder_policies/chorus/standard_publication_model

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