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Combination of Chemically-Characterized Essential Oils from Eucalyptus polybractea, Ormenis mixta, and Lavandula burnatii: Optimization of a New Complete Antibacterial Formulation Using Simplex-Centroid Mixture Design

This study aims to identify the volatile profile of three essential oils obtained from Eucalyptus polybractea cryptonifera (EPEO), Ormenis mixta (OMEO), and Lavandula burnatii briquet (LBEO) and to examine their combined antibacterial activity that affords the optimal inhibitory ability against S. a...

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Autores principales: Jeddi, Mohamed, El Hachlafi, Naoufal, Fadil, Mouhcine, Benkhaira, Nesrine, Jeddi, Samir, Benziane Ouaritini, Zineb, Fikri-Benbrahim, Kawtar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10462449/
https://www.ncbi.nlm.nih.gov/pubmed/37645561
http://dx.doi.org/10.1155/2023/5593350
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author Jeddi, Mohamed
El Hachlafi, Naoufal
Fadil, Mouhcine
Benkhaira, Nesrine
Jeddi, Samir
Benziane Ouaritini, Zineb
Fikri-Benbrahim, Kawtar
author_facet Jeddi, Mohamed
El Hachlafi, Naoufal
Fadil, Mouhcine
Benkhaira, Nesrine
Jeddi, Samir
Benziane Ouaritini, Zineb
Fikri-Benbrahim, Kawtar
author_sort Jeddi, Mohamed
collection PubMed
description This study aims to identify the volatile profile of three essential oils obtained from Eucalyptus polybractea cryptonifera (EPEO), Ormenis mixta (OMEO), and Lavandula burnatii briquet (LBEO) and to examine their combined antibacterial activity that affords the optimal inhibitory ability against S. aureus and E. coli using simplex-centroid mixture design and checkerboard assay. Essential oils (EOs) were isolated by hydrodistillation and characterized using gas chromatography-mass spectrometry (GC-MS) and gas chromatography coupled with flame-ionization detector (GC-FID). The antibacterial activity was performed using disc diffusion and microdilution assays. The chemical analysis revealed that 1,8-cineole (23.75%), p-cymene (22.47%), and α-pinene (11.20%) and p-menthane-1,8-diol (18.19%), α-pinene (10.81%), and D-germacrene (9.17%) were the main components detected in E. polybractea and O. mixta EOs, respectively. However, L. burnatii EO was mainly represented by linalool (24.40%) and linalyl acetate (18.68%). The EPEO, LBEO, and OMEO had a strong antibacterial effect on S. aureus with minimal inhibitory concentrations (MICs) values ranging from 0.25 to 0.5% (v/v). Furthermore, the combination of 1/2048 MIC(EPEO) + 1/4 MIC(LBEO) showed a synergistic antibacterial effect on S. aureus with a FIC index of 0.25, while the formulation of 1/4 MIC(EPEO) + 1/4 MIC(OMEO) demonstrated an antibacterial synergistic activity on E. coli with a FIC index of 0.5. Moreover, the simplex-centroid mixture design reported that the most effective combinations on E. coli and S. aureus correspond to 32%/28%/40% and 35%/30%/35% of E. polybractea, O. mixta, and L. burnatii, respectively. Presented information highlights the action of antibacterial formulations of these EOs and suggests their potential applications as alternatives to commercialized drugs to contract the development of bacteria causing serious infections and food deterioration.
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spelling pubmed-104624492023-08-29 Combination of Chemically-Characterized Essential Oils from Eucalyptus polybractea, Ormenis mixta, and Lavandula burnatii: Optimization of a New Complete Antibacterial Formulation Using Simplex-Centroid Mixture Design Jeddi, Mohamed El Hachlafi, Naoufal Fadil, Mouhcine Benkhaira, Nesrine Jeddi, Samir Benziane Ouaritini, Zineb Fikri-Benbrahim, Kawtar Adv Pharmacol Pharm Sci Research Article This study aims to identify the volatile profile of three essential oils obtained from Eucalyptus polybractea cryptonifera (EPEO), Ormenis mixta (OMEO), and Lavandula burnatii briquet (LBEO) and to examine their combined antibacterial activity that affords the optimal inhibitory ability against S. aureus and E. coli using simplex-centroid mixture design and checkerboard assay. Essential oils (EOs) were isolated by hydrodistillation and characterized using gas chromatography-mass spectrometry (GC-MS) and gas chromatography coupled with flame-ionization detector (GC-FID). The antibacterial activity was performed using disc diffusion and microdilution assays. The chemical analysis revealed that 1,8-cineole (23.75%), p-cymene (22.47%), and α-pinene (11.20%) and p-menthane-1,8-diol (18.19%), α-pinene (10.81%), and D-germacrene (9.17%) were the main components detected in E. polybractea and O. mixta EOs, respectively. However, L. burnatii EO was mainly represented by linalool (24.40%) and linalyl acetate (18.68%). The EPEO, LBEO, and OMEO had a strong antibacterial effect on S. aureus with minimal inhibitory concentrations (MICs) values ranging from 0.25 to 0.5% (v/v). Furthermore, the combination of 1/2048 MIC(EPEO) + 1/4 MIC(LBEO) showed a synergistic antibacterial effect on S. aureus with a FIC index of 0.25, while the formulation of 1/4 MIC(EPEO) + 1/4 MIC(OMEO) demonstrated an antibacterial synergistic activity on E. coli with a FIC index of 0.5. Moreover, the simplex-centroid mixture design reported that the most effective combinations on E. coli and S. aureus correspond to 32%/28%/40% and 35%/30%/35% of E. polybractea, O. mixta, and L. burnatii, respectively. Presented information highlights the action of antibacterial formulations of these EOs and suggests their potential applications as alternatives to commercialized drugs to contract the development of bacteria causing serious infections and food deterioration. Hindawi 2023-08-21 /pmc/articles/PMC10462449/ /pubmed/37645561 http://dx.doi.org/10.1155/2023/5593350 Text en Copyright © 2023 Mohamed Jeddi et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Jeddi, Mohamed
El Hachlafi, Naoufal
Fadil, Mouhcine
Benkhaira, Nesrine
Jeddi, Samir
Benziane Ouaritini, Zineb
Fikri-Benbrahim, Kawtar
Combination of Chemically-Characterized Essential Oils from Eucalyptus polybractea, Ormenis mixta, and Lavandula burnatii: Optimization of a New Complete Antibacterial Formulation Using Simplex-Centroid Mixture Design
title Combination of Chemically-Characterized Essential Oils from Eucalyptus polybractea, Ormenis mixta, and Lavandula burnatii: Optimization of a New Complete Antibacterial Formulation Using Simplex-Centroid Mixture Design
title_full Combination of Chemically-Characterized Essential Oils from Eucalyptus polybractea, Ormenis mixta, and Lavandula burnatii: Optimization of a New Complete Antibacterial Formulation Using Simplex-Centroid Mixture Design
title_fullStr Combination of Chemically-Characterized Essential Oils from Eucalyptus polybractea, Ormenis mixta, and Lavandula burnatii: Optimization of a New Complete Antibacterial Formulation Using Simplex-Centroid Mixture Design
title_full_unstemmed Combination of Chemically-Characterized Essential Oils from Eucalyptus polybractea, Ormenis mixta, and Lavandula burnatii: Optimization of a New Complete Antibacterial Formulation Using Simplex-Centroid Mixture Design
title_short Combination of Chemically-Characterized Essential Oils from Eucalyptus polybractea, Ormenis mixta, and Lavandula burnatii: Optimization of a New Complete Antibacterial Formulation Using Simplex-Centroid Mixture Design
title_sort combination of chemically-characterized essential oils from eucalyptus polybractea, ormenis mixta, and lavandula burnatii: optimization of a new complete antibacterial formulation using simplex-centroid mixture design
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10462449/
https://www.ncbi.nlm.nih.gov/pubmed/37645561
http://dx.doi.org/10.1155/2023/5593350
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