Variable Effects of Exposure to Formulated Microbicides on Antibiotic Susceptibility in Firmicutes and Proteobacteria

Sarah Forbes1, Christopher G Knight2, Nicola L Cowley1

  • 1Manchester Pharmacy School, The University of Manchester, Manchester, United Kingdom.

Abstract

Insights

Repeated exposure to microbicides can alter bacterial antibiotic susceptibility, with formulation effects being minor. This study found no instances of resistance developing in bacteria after microbicide adaptation.

Area of Science:

  • Microbiology
  • Antimicrobial Resistance
  • Bacterial Adaptation

Background:

  • Microbicides are widely used but their potential to drive antimicrobial resistance is debated.
  • Previous studies on resistance selection primarily used simple aqueous solutions, not realistic formulations.
  • The impact of microbicide formulation on bacterial susceptibility changes remains under-investigated.

Purpose of the Study:

  • To assess how repeated exposure to microbicides, in both aqueous solutions and formulated products, affects bacterial antibiotic susceptibility.
  • To determine if microbicide formulation influences the development of antibiotic resistance.
  • To compare susceptibility changes after adaptation to formulated versus aqueous microbicides.

Main Methods:

  • Bacteria were repeatedly exposed to microbicides in either simple aqueous solutions or in formulations containing surfactants and sequestrants.
  • Antibiotic susceptibility testing was performed on adapted bacteria.
  • Linear modeling was used to analyze the effects of phylogeny, microbicide, antibiotic, and formulation on susceptibility.

Main Results:

  • Significant increases in antibiotic susceptibility were observed in 12% (formulated) and 20% (aqueous) of bacteria.
  • Significant decreases in antibiotic susceptibility occurred in 22% of bacteria, irrespective of formulation.
  • No bacterial-antibiotic combinations met resistance breakpoints; formulation effects were small and varied.
  • Adaptation to formulated benzalkonium chloride was more likely to increase antibiotic susceptibility.

Conclusions:

  • Bacterial adaptation to microbicides can lead to both increased and decreased antibiotic susceptibility.
  • Microbicide formulation has a discernible but generally small impact on antibiotic susceptibility changes.
  • No evidence of acquired resistance was observed under the tested conditions.

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