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June 4, 2026Antibiotics0 citationsOpen Access

Parabens at Environmental Levels Modulate Virulence and Antimicrobial Tolerance of Exposed Biofilm Cells

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APA De Sousa PereiraUniversidade do PortoMSManuel SimõesUniversidade do PortoIGInês B. GomesUniversidade do Porto

Key Points

  • This study aims to assess how parabens affect bacterial virulence and tolerance to antibiotics in drinking water biofilms.
  • Biofilms of Acinetobacter calcoaceticus and Stenotrophomonas maltophilia were grown on PVC coupons for 26 days with paraben exposure.
  • Virulence traits and antimicrobial tolerance were evaluated after exposure to methyl-, propyl-, and butyl-paraben at 0.15 µg/L.
  • Prolonged exposure to methyl-paraben for 10 weeks assessed changes in antimicrobial susceptibility.
  • Methyl-paraben exposure reduced biofilm biomass in A. calcoaceticus by 32%; the paraben mixture increased biomass by 25%.
  • S. maltophilia showed a 50% increase in culturability with propyl-paraben; biomass increased 2.6-fold with propyl-paraben exposure.
  • Exposure to buyl-paraben and the mixture enhanced motility, while long-term methyl-paraben exposure decreased susceptibility to ceftazidime and minocycline.

Abstract

Background/Objectives: Parabens are widely used preservatives detected at trace levels in drinking water. Although their endocrine-disrupting effects are well established, their long-term impact on environmental bacteria remains poorly understood. This study investigated the effects of parabens on changes in bacterial phenotypic virulence traits and antimicrobial tolerance of bacteria within drinking water biofilms. Methods: Acinetobacter calcoaceticus and Stenotrophomonas maltophilia biofilms were grown on polyvinyl chloride coupons for 26 days under exposure to methyl- (MP), propyl- (PP), butyl-paraben (BP), or a paraben mixture (MIX) at 0.15 µg/L. Biofilm regrowth and virulence-associated traits, including motility (swimming, swarming, and twitching), extracellular enzymes (gelatinase, protease, and lipase), and siderophore production, were evaluated. The effect of prolonged MP exposure (10 weeks) on antimicrobial tolerance was assessed. Results: In A. calcoaceticus, MP reduced biofilm biomass by 32%, whereas MIX increased biomass by 25% and culturability (1.1-fold). S. maltophilia showed increased biofilm culturability with PP (50%), and increased biomass of 2.6-, 2.4-, and 1.8-fold for PP, BP, and MIX, respectively. Biofilm cells exhibited higher virulence factor production than planktonic counterparts. S. maltophilia biofilm cells exposed to BP and MIX showed enhanced swimming and swarming motility, with halo diameters up to fivefold larger than controls. Lipase production increased under BP and MIX exposure, whereas MP exposure reduced it. A MP-induced reduction in motility was observed for A. calcoaceticus and S. maltophilia. Long-term MP exposure results in reduced susceptibility to ceftazidime and minocycline in A. calcoaceticus. Conclusions: Environmentally relevant concentrations of parabens can modulate bacterial virulence traits, increasing biofilm formation, motility and lipase production, and antimicrobial tolerance.

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Cite This Study

Pereira et al. (2026) studied this question.

synapsesocial.com/papers/6a211611d499ed480b16f22dhttps://doi.org/10.3390/antibiotics15060565
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