Applied antibacterial and surface decontamination potential of methyl salicylate-rich Gaultheria fragrantissima essential oil

Abstract Aims The persistence of biofilm-forming nosocomial pathogens on healthcare-associated surfaces represents a major challenge in infection control. This study aimed to evaluate the antibacterial, antibiofilm, membrane-disruptive, and surface decontamination potential of methyl salicylate-rich Gaultheria fragrantissima essential oil (GFEO) against clinically relevant pathogens. Methods and Results Antibacterial activity was determined by broth microdilution, while antibiofilm effects were assessed using crystal violet assays. Membrane-disruptive activity was evaluated by measuring cytoplasmic leakage, and synergistic interactions with antibiotics were analysed using checkerboard titration. Surface disinfection potential was examined using carrier-based assays on stainless steel, glass, and polystyrene surfaces. GFEO exhibited broad-spectrum antibacterial activity (MIC: 0.156–2.5 mg mL⁻¹) and significantly inhibited early-stage biofilm formation (69–92%). Rapid membrane permeabilization was observed within 10 min, with up to approx. 80% disruption at 2 × MIC after 60 min. Synergistic interactions were identified with selected antibiotics (FICI 0.25–0.5). In surface assays, GFEO achieved approximately 3 log₁₀ reductions for most strain-surface combinations within 20 min and up to 4.77 log₁₀ after 60 min. Conclusions GFEO exhibits a potent membrane-mediated antimicrobial profile with strong antibiofilm and surface bactericidal activity, highlighting its potential as a natural agent for healthcare-associated infection control and environmental decontamination.

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Publication Details

Journal
Journal of Applied Microbiology
Published
2026-09-15
DOI
https://doi.org/10.1093/jambio/lxag231
Primary Topic
Bacterial biofilms and quorum sensing
Type
article
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article

Applied antibacterial and surface decontamination potential of methyl salicylate-rich Gaultheria fragrantissima essential oil

Judit Krisch, Margita Utczás, Marianna Kocsis, Béla Kocsis et al.
Journal of Applied Microbiology
Bacterial biofilms and quorum sensing
article

Applied antibacterial and surface decontamination potential of methyl salicylate-rich Gaultheria fragrantissima essential oil

Judit Krisch, Margita Utczás, Marianna Kocsis, Béla Kocsis, Eszter Csikós, Györgyi Horváth, Viktória Lilla Balázs, Tímea Bencsik, Tamás Ollmann, V Bíró, Edit Ormai, Bence Bordás, Sarah Shubail, Erika Bencsik-Kerekes
article en

Abstract

Abstract Aims The persistence of biofilm-forming nosocomial pathogens on healthcare-associated surfaces represents a major challenge in infection control. This study aimed to evaluate the antibacterial, antibiofilm, membrane-disruptive, and surface decontamination potential of methyl salicylate-rich Gaultheria fragrantissima essential oil (GFEO) against clinically relevant pathogens. Methods and Results Antibacterial activity was determined by broth microdilution, while antibiofilm effects were assessed using crystal violet assays. Membrane-disruptive activity was evaluated by measuring cytoplasmic leakage, and synergistic interactions with antibiotics were analysed using checkerboard titration. Surface disinfection potential was examined using carrier-based assays on stainless steel, glass, and polystyrene surfaces. GFEO exhibited broad-spectrum antibacterial activity (MIC: 0.156–2.5 mg mL⁻¹) and significantly inhibited early-stage biofilm formation (69–92%). Rapid membrane permeabilization was observed within 10 min, with up to approx. 80% disruption at 2 × MIC after 60 min. Synergistic interactions were identified with selected antibiotics (FICI 0.25–0.5). In surface assays, GFEO achieved approximately 3 log₁₀ reductions for most strain-surface combinations within 20 min and up to 4.77 log₁₀ after 60 min. Conclusions GFEO exhibits a potent membrane-mediated antimicrobial profile with strong antibiofilm and surface bactericidal activity, highlighting its potential as a natural agent for healthcare-associated infection control and environmental decontamination.

Journal of Applied Microbiology
University of Szeged (HU), Hungarian School Sport Federation (HU), University of Pecs (HU)
Openalex Percentile: Top 18%
Bacterial biofilms and quorum sensing
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