Literature DB >> 21986830

Resistance gene transfer during treatments for experimental avian colibacillosis.

Alexandra Dheilly1, Laëtitia Le Devendec, Gwenaëlle Mourand, Axelle Bouder, Eric Jouy, Isabelle Kempf.   

Abstract

An experiment was conducted in animal facilities to compare the impacts of four avian colibacillosis treatments-oxytetracycline (OTC), trimethoprim-sulfadimethoxine (SXT), amoxicillin (AMX), or enrofloxacin (ENR)-on the susceptibility of Escherichia coli in broiler intestinal tracts. Birds were first orally inoculated with rifampin-resistant E. coli strains bearing plasmid genes conferring resistance to fluoroquinolones (qnr), cephalosporins (bla(CTX-M) or bla(FOX)), trimethoprim-sulfonamides, aminoglycosides, or tetracyclines. Feces samples were collected before, during, and after antimicrobial treatments. The susceptibilities of E. coli strains were studied, and resistance gene transfer was analyzed. An increase in the tetracycline-resistant E. coli population was observed only in OTC-treated birds, whereas multiresistant E. coli was detected in the dominant E. coli populations of SXT-, AMX-, or ENR-treated birds. Most multiresistant E. coli strains were susceptible to rifampin and exhibited various pulsed-field gel electrophoresis profiles, suggesting the transfer of one of the multiresistance plasmids from the inoculated strains to other E. coli strains in the intestinal tract. In conclusion, this study clearly illustrates how, in E. coli, "old" antimicrobials may coselect antimicrobial resistance to recent and critical molecules.

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Year:  2011        PMID: 21986830      PMCID: PMC3256041          DOI: 10.1128/AAC.05617-11

Source DB:  PubMed          Journal:  Antimicrob Agents Chemother        ISSN: 0066-4804            Impact factor:   5.191


  29 in total

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2.  Clinical and microbial efficacy of antimicrobial treatments of experimental avian colibacillosis.

Authors:  Alexandra Dheilly; Axelle Bouder; Laëtitia Le Devendec; Gwenaëlle Hellard; Isabelle Kempf
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7.  Dose-dependent impact of enrofloxacin on broiler chicken gut resistome is mitigated by synbiotic application.

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