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Characterization of extended-spectrum β-lactamases produced by Escherichia coli isolated from hospitalized and nonhospitalized patients: Emergence of CTX-M-15-producing strains causing urinary tract infections

  • Annemieke Smet
  • , An Martel
  • , Davy Persoons
  • , Jeroen Dewulf
  • , Marc Heyndrickx
  • , Geert Claeys
  • , Marc Lontie
  • , Britt Van Meensel
  • , Lieve Herman
  • , Freddy Haesebrouck
  • , Patrick Butaye

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Extended-spectrum β-lactamase (ESBL)-producing Escherichia coli isolates were obtained from hospitalized and nonhospitalized patients in Belgium between August 2006 and November 2007. The antimicrobial susceptibility of these isolates was determined and their ESBL genes were characterized. Clonal relationships between the CTX-M-producing E. coli isolates causing urinary tract infections were also studied. A total of 90 hospital- and 45 community-acquired cephalosporin-resistant E. coli isolates were obtained. Tetracycline, enrofloxacine, gentamicin, and trimethoprim-sulfamethaxozole resistance rates were significantly different between the community-onset and hospital-acquired isolates. A high diversity of different ESBLs was observed among the hospital-acquired E. coli isolates, whereas CTX-M-15 was dominating among the community-acquired E. coli isolates (n = 28). Thirteen different pulsed-field gel electrophoresis profiles were observed in the community-acquired CTX-M-15-producing E. coli, indicating that multiple clones have acquired the blaCTX-M-15 gene. All community-acquired CTX-M-15-producing E. coli isolates of phylogroups B2 and D were assigned to the sequence type ST131. The hospital-acquired CTX-M-15-producing E. coli isolates of phylogroups B2, B1, A, and D corresponded to ST131, ST617, ST48, and ST405, respectively. In conclusion, CTX-M-type ESBLs have emerged as the predominant class of ESBLs produced by E. coli isolates in the hospital and community in Belgium. Of particular concern is the predominant presence of the CTX-M-15 enzyme in ST131 community-acquired E. coli. © Mary Ann Liebert, Inc. 2010.
Original languageEnglish
Pages (from-to)129-134
JournalMicrobial Drug Resistance
Volume16
Issue number2
DOIs
Publication statusPublished - 1 Jun 2010
Externally publishedYes

Bibliographical note

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Funding

The authors thank all laboratory and clinical staff of the Department of Clinical Microbiology from the Faculty of Medicine in Ghent, Belgium, for contributing to the national surveillance. They also thank Danielle Vandergheynst for her skilled technical assistance. This work was supported by a grant of Federal Public Service of Health, Food Chain Safety and Environment (grant no. RT 06/3 ABRISK).

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