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Evidence for an efflux pump mediating multiple antibiotic resistance in Salmonella enterica serovar Typhimurium

L J Piddock1, D G White, K Gensberg

  • 1Antimicrobial Agents Research Group, Division of Infection and Immunity, University of Birmingham, Birmingham, B15 2TT, United Kingdom. l.j.v.piddock@bham.ac.uk

Insights

Investigating antibiotic resistance in Salmonella Typhimurium, researchers found that increased expression of the acrB gene, not mutations, played a key role in the reduced accumulation of antibiotics like ciprofloxacin.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Pharmacology

Background:

  • Multiple antibiotic resistance (MAR) is a growing public health concern.
  • Efflux pumps are a significant mechanism contributing to MAR.
  • Salmonella enterica serovar Typhimurium is an important foodborne pathogen.

Purpose of the Study:

  • To investigate the mechanism of MAR in Salmonella Typhimurium isolates from a patient treated with ciprofloxacin.
  • To determine the role of efflux in the observed antibiotic resistance phenotype.

Main Methods:

  • Antibiotic accumulation assays were performed on patient isolates.
  • The effect of carbonyl cyanide m-chlorophenylhydrazone (an efflux inhibitor) was assessed.
  • Gene expression analysis (Northern blotting, quantitative competitive reverse transcription-PCR) of relevant genes (marA, tolC, soxS, acrB) was conducted.
  • Sequence analysis of marO, marR, acrR, and the acrAB promoter region was performed.

Main Results:

  • Five of six isolates showed reduced accumulation of ciprofloxacin, three of six of chloramphenicol, and all six of tetracycline compared to the pretherapy isolate.
  • Efflux inhibition partially restored antibiotic accumulation in most isolates.
  • Increased expression of acrB was observed in three isolates, confirmed by qRT-PCR.
  • No mutations were found in marO, marR, acrR, or the acrAB promoter region.

Conclusions:

  • Increased expression of the acrB gene is implicated in the reduced antibiotic accumulation and MAR phenotype in these Salmonella Typhimurium isolates.
  • Efflux mechanisms, specifically related to AcrB, contribute significantly to ciprofloxacin resistance in this context.
  • Further research into AcrB-mediated efflux is warranted for understanding and combating MAR in Salmonella.

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