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The biocide triclosan induces (p)ppGpp dependent antibiotic tolerance and alters SarA dependent biofilm structures in Staphylococcus aureus

Walsh, Dean; Salzer, Andrea; Wolz, Christiane; Aylott, Jonathan; Hardie, Kim Rachael

The biocide triclosan induces (p)ppGpp dependent antibiotic tolerance and alters SarA dependent biofilm structures in Staphylococcus aureus Thumbnail


Authors

Dean Walsh

Andrea Salzer

Christiane Wolz

Profile image of KIM HARDIE

KIM HARDIE KIM.HARDIE@NOTTINGHAM.AC.UK
Professor of Bacterial Pathogenesis



Abstract

The biocide triclosan is used extensively in both household and hospital settings. The chronic exposure to the biocide occurring in individuals that use triclosan-containing products results in low levels of triclosan present in the human body that has been linked to induction of antibiotic tolerance and altered biofilm formation. Here we aimed to unravel the molecular mechanisms involved in triclosan induced antibiotic tolerance and biofilm formation in Staphylococcus aureus. Triclosan treatment prior to planktonic exposure to bactericidal antibiotics resulted in 1,000 fold higher viable cell counts compared to non-pretreated cultures. Triclosan pretreatment also protected S. aureus biofilms against otherwise lethal doses of antibiotics as shown by live/dead cell staining and viable cell counting. Triclosan mediated antibiotic tolerance in planktonic and biofilm cultures required an active stringent response because a pppGpp0 strain was not protected from antibiotic killing. Incubation of S. aureus with triclosan also altered biofilm structure due to SarA-mediated overproduction of the polysaccharide intercellular adhesin (PIA) in the biofilm matrix. Thus, physiologically relevant concentrations of triclosan can trigger (p)ppGpp dependent antibiotic tolerance as well as SarA dependent biofilm formation.

Citation

Walsh, D., Salzer, A., Wolz, C., Aylott, J., & Hardie, K. R. The biocide triclosan induces (p)ppGpp dependent antibiotic tolerance and alters SarA dependent biofilm structures in Staphylococcus aureus

Working Paper Type Working Paper
Deposit Date Feb 3, 2023
Publicly Available Date Feb 7, 2023
Public URL https://nottingham-repository.worktribe.com/output/16802336
Publisher URL https://www.biorxiv.org/content/10.1101/2023.02.01.525840v1

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