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March 7, 2026Scientific Reports3 citationsOpen Access

Thyme and cinnamon essential oils inhibit multidrug resistant Escherichia coli and Klebsiella pneumoniae and alter virulence transcripts

NMNawal MagdyCairo UniversityDEDawlat Tharwat EzzatCairo UniversityMDMohamed E. A. Dawood

Key Points

  • The aim is to evaluate the antibacterial effects of thyme and cinnamon essential oils against multidrug-resistant bacteria and their impact on virulence gene expression.
  • Screened 33 essential oils against six multidrug-resistant clinical isolates.
  • Measured inhibition zones and minimum inhibitory concentrations for thyme and cinnamon oils.
  • Performed transcriptional analysis after exposure to cinnamon oil at near-MIC levels.
  • Utilized GC-MS for chemical profiling of essential oils.
  • Conducted molecular docking simulations to explore ligand-target interactions.
  • Thyme and cinnamon essential oils produced significant inhibition zones up to 26 mm.
  • Cinnamon oil showed a consistent minimum inhibitory concentration of 0.0488% across all strains.
  • Exposure to cinnamon oil resulted in decreased levels of virulence-gene transcripts.
  • GC-MS analysis revealed carvacrol and thymol as major components in thyme oil and cinnamaldehyde in cinnamon oil.
  • Cinnamon oil exhibited higher antioxidant capacity compared to thyme.

Abstract

The increasing incidence of multidrug-resistant (MDR) Gram-negative pathogens, particularly Escherichia coli and Klebsiella pneumoniae, continues to narrow effective treatment options and motivates evaluation of alternative antimicrobial strategies. Here, 33 essential oils (EOs) were screened against six MDR clinical isolates, identifying thyme and cinnamon oils as the most active. Both oils produced large inhibition zones (up to 26 mm) and low minimum inhibitory concentrations (MICs), with cinnamon oil showing a uniform MIC of 0.0488% (v/v) across all strains. For transcriptional analysis, cultures were exposed to cinnamon oil at 0.0244% (v/v) (0.5×MIC). Because this exposure corresponds to a near-MIC/inhibitory condition, observed decreases in virulence-gene transcript levels should be interpreted as inhibitory/stress-associated transcriptional responses rather than definitive sub-MIC anti-virulence effects. GC–MS profiling indicated enrichment of carvacrol (23.4%) and thymol (3.58%) in thyme oil, while cinnamon oil was dominated by cinnamaldehyde (45.8%) and eugenol (10.89%). Cinnamon also showed slightly higher antioxidant capacity than thyme (DPPH RSA 70.57% vs. 67%). Finally, molecular docking (HADDOCK/AutoDock Vina) was used as supportive in-silico screening to explore plausible ligand–target interaction hypotheses. Collectively, thyme and cinnamon EOs demonstrated antibacterial activity and were associated with reduced virulence-gene transcript abundance under near-MIC exposure, supporting further validation using verified sub-MIC conditions and growth controls.

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Cite This Study

Magdy et al. (2026) studied this question.

synapsesocial.com/papers/69abc0de5af8044f7a4e98b1https://doi.org/10.1038/s41598-026-38791-2
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