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Published on: April 7, 2023
Enhancing the Antimicrobial Effect of Ozone with Mentha piperita Essential Oil
Alin-Daniel Floare1,2, Ramona Dumitrescu1,2, Vlad Tiberiu Alexa1,2
1Translational and Experimental Clinical Research Centre in Oral Health, University of Medicine and Pharmacy "Victor Babes", Eftimie Murgu Sq. no 2, 300041 Timisoara, Romania.
Abstract:
This study aimed to obtain and analyse Mentha piperita essential oil (MpEO) for the prospect of being used as an enhancement agent for the antimicrobial potential of ozone against gram-positive and gram-negative bacteria and fungi. The research was done for different exposure times, and it gained time-dose relationships and time-effect correlations. Mentha piperita (Mp) essential oil (MpEO) was obtained via hydrodistillation and further analysed by using GC-MS. The broth microdilution assay was used to determine the strain inhibition/strain mass growth by using spectrophotometric optical density reading (OD). The bacterial/mycelium growth rates (BGR/MGR) and the bacterial/mycelium inhibition rates (BIR/MIR) after ozone treatment in the presence and absence of MpEO on the ATTC strains were calculated; the minimum inhibition concentration (MIC) and statistical interpretations of the time-dose relationship and specific t-test correlations were determined. The effect of ozone on the following tested strains at maximum efficiency was observed after 55 s of single ozone exposure, in order of effect strength: S. aureus > P. aeruginosa > E. coli > C. albicans > S. mutans. For ozone with the addition of 2% MpEO (MIC), maximum efficacy was recorded at 5 s for these strains, in order of effect strength: C. albicans > E. coli > P. aeruginosa > S. aureus > S. mutans. The results suggest a new development and affinity regarding the cell membrane of the different microorganisms tested. In conclusion, the use of ozone, combined with MpEO, is sustained as an alternative therapy in plaque biofilm and suggested as helpful in controlling oral disease-causing microorganisms in medicine.
Insights
Mentha piperita essential oil enhances ozone
Area of Science:
- Microbiology
- Natural Products Chemistry
- Antimicrobial Agents
Background:
- Ozone exhibits antimicrobial properties.
- Essential oils are natural compounds with potential bioactivity.
- Combining antimicrobial agents can lead to synergistic effects.
Purpose of the Study:
- To investigate the potential of Mentha piperita essential oil (MpEO) as an enhancer for ozone's antimicrobial activity.
- To analyze the time-dose relationships and time-effect correlations of ozone and MpEO against various microorganisms.
- To explore the application of MpEO-enhanced ozone therapy for controlling oral pathogens.
Main Methods:
- Mentha piperita essential oil (MpEO) was extracted via hydrodistillation and analyzed using GC-MS.
- Broth microdilution assays with spectrophotometric OD readings determined microbial growth inhibition.
- Bacterial/mycelium growth and inhibition rates, along with minimum inhibition concentration (MIC), were calculated.
Main Results:
- Ozone alone required 55s for maximum efficacy against tested strains (S. aureus > P. aeruginosa > E. coli > C. albicans > S. mutans).
- Ozone combined with 2% MpEO achieved maximum efficacy in just 5s (C. albicans > E. coli > P. aeruginosa > S. aureus > S. mutans).
- Results indicate a potential interaction with microbial cell membranes.
Conclusions:
- Mentha piperita essential oil significantly enhances the antimicrobial efficacy of ozone.
- The combination therapy shows promise as an alternative treatment for plaque biofilm.
- This approach may be beneficial for managing oral disease-causing microorganisms in medical applications.
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