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Published on: November 1, 2013
Triclosan is the Predominant Antibacterial Compound in Ontario Sewage Sludge
Holly Barrett1, Jianxian Sun1, Yufeng Gong1
1Department of Chemistry, University of Toronto, Toronto, ON M5S 3H6, Canada.
Abstract:
Sewage treatment plants (STPs) accumulate both antibiotic and nonantibiotic antimicrobial compounds that can select for antibiotic resistant bacteria. Herein, we aimed to identify the predominant antibacterial compounds impacting E. coli from Ontario sewage sludge consisting of thousands of unknown compounds. Among the 10 extracted sludge samples, 6 extracts exerted significant growth inhibition effects in E. coli. A total of 103 compounds were tentatively detected across the 10 sludge samples by suspect screening, among which the bacterial enoyl-ACP reductase (FabI) inhibitor triclocarban was detected at the highest abundance. A hypomorphic FabI knockdown E. coli strain was highly susceptible to the sludge extracts, confirming FabI inhibitors as the primary antibacterial compounds in the sludge. Protein affinity pulldown identified triclosan as the major ligand binding to a His-tagged FabI protein from the sludge, despite the higher abundance of triclocarban in the same samples. Effect-directed analysis was used to determine the contributions of triclosan to the observed antibacterial potencies. Antibacterial effects were only detected in F17 and F18 across 20 fractions, which was consistent with the elution of triclosan and triclocarban in the same two fractions. Further, potency mass balance analysis confirmed that triclosan explained the majority (58-113%) of inhibition effects from sludge extracts. This study highlighted triclosan as the predominant antibacterial compound in sewage sludge impacting E. coli despite the co-occurrence of numerous other antibiotics and nonantibiotics.
Insights
Sewage sludge contains antibacterial compounds. Triclosan was identified as the main compound inhibiting E. coli growth, despite the presence of other antimicrobials.
Area of Science:
- Environmental Science
- Microbiology
- Toxicology
Background:
- Sewage treatment plants (STPs) collect diverse antimicrobial compounds, potentially driving antibiotic resistance.
- Identifying specific antimicrobials in complex environmental matrices like sewage sludge is crucial.
Purpose of the Study:
- To identify the primary antibacterial compounds in Ontario sewage sludge affecting Escherichia coli (E. coli).
- To determine the contribution of identified compounds to the overall antibacterial activity of sludge extracts.
Main Methods:
- Suspect screening and liquid chromatography-mass spectrometry (LC-MS) to detect and quantify compounds.
- Protein affinity pulldown assays to identify target proteins.
- Effect-directed analysis and potency mass balance to link compound activity to observed effects.
Main Results:
- Six of ten sludge extracts showed significant E. coli growth inhibition.
- Triclocarban was the most abundant enoyl-ACP reductase (FabI) inhibitor detected.
- Triclosan was identified as the major ligand binding to FabI and was responsible for the majority of the antibacterial effects.
Conclusions:
- Triclosan is the predominant antibacterial compound in sewage sludge impacting E. coli.
- FabI inhibitors are key antibacterial agents in sludge, with triclosan being the primary driver of observed inhibition.
- Understanding these compounds is vital for assessing risks associated with antibiotic resistance in STPs.
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