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Selection of Resistant Bacteria at Very Low Antibiotic Concentrations

PLoS Pathogens · 2011 · Vol. 7(7) · pp. e1002158–e1002158
Erik GullbergSha CaoOtto G. BergCarolina IlbäckLinus SandegrenDiarmaid HughesDan I. Andersson

Abstract

The widespread use of antibiotics is selecting for a variety of resistance mechanisms that seriously challenge our ability to treat bacterial infections. Resistant bacteria can be selected at the high concentrations of antibiotics used therapeutically, but what role the much lower antibiotic concentrations present in many environments plays in selection remains largely unclear. Here we show using highly sensitive competition experiments that selection of resistant bacteria occurs at extremely low antibiotic concentrations. Thus, for three clinically important antibiotics, drug concentrations up to several hundred-fold below the minimal inhibitory concentration of susceptible bacteria could enrich for resistant bacteria, even when present at a very low initial fraction. We also show that de novo mutants can be selected at sub-MIC concentrations of antibiotics, and we provide a mathematical model predicting how rapidly such mutants would take over in a susceptible population. These results add another dimension to the evolution of resistance and suggest that the low antibiotic concentrations found in many natural environments are important for enrichment and maintenance of resistance in bacterial populations.

Evolution and Genetic DynamicsPharmaceutical and Antibiotic Environmental ImpactsAntibiotic Resistance in BacteriaAntibioticsBacteriaAntibiotic resistanceBiologyMicrobiologyPopulationDrug resistanceSelection (genetic algorithm)GeneticsMedicine

MeSH terms

Anti-Bacterial AgentsBase SequenceDose-Response Relationship, DrugEscherichia coliModels, BiologicalMolecular Sequence DataSalmonella typhimuriumSelection, GeneticDrug Resistance, Bacterial

Funding

  • Svenska Forskningsrådet Formas
  • Vetenskapsrådet
Citations
1,647
FWCI
39.40
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30
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100%
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References
Antibiotic resistance and its cost: is it possible to reverse resistance?
Nature Reviews Microbiology · 2010 · 2,315 citations
Effluent from drug manufactures contains extremely high levels of pharmaceuticals
Journal of Hazardous Materials · 2007 · 1,540 citations
The mutant selection window and antimicrobial resistance
Journal of Antimicrobial Chemotherapy · 2003 · 441 citations
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