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Cupressus sempervirens Essential Oil: Exploring the Antibacterial Multitarget Mechanisms, Chemcomputational Toxicity Prediction, and Safety Assessment in Zebrafish Embryos

Nowadays, increasing interest has recently been given to the exploration of new food preservatives to avoid foodborne outbreaks or food spoilage. Likewise, new compounds that substitute the commonly used synthetic food preservatives are required to restrain the rising problem of microbial resistance...

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Autores principales: Akermi, Sarra, Smaoui, Slim, Elhadef, Khaoula, Fourati, Mariam, Louhichi, Nacim, Chaari, Moufida, Chakchouk Mtibaa, Ahlem, Baanannou, Aissette, Masmoudi, Saber, Mellouli, Lotfi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9103706/
https://www.ncbi.nlm.nih.gov/pubmed/35565980
http://dx.doi.org/10.3390/molecules27092630
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author Akermi, Sarra
Smaoui, Slim
Elhadef, Khaoula
Fourati, Mariam
Louhichi, Nacim
Chaari, Moufida
Chakchouk Mtibaa, Ahlem
Baanannou, Aissette
Masmoudi, Saber
Mellouli, Lotfi
author_facet Akermi, Sarra
Smaoui, Slim
Elhadef, Khaoula
Fourati, Mariam
Louhichi, Nacim
Chaari, Moufida
Chakchouk Mtibaa, Ahlem
Baanannou, Aissette
Masmoudi, Saber
Mellouli, Lotfi
author_sort Akermi, Sarra
collection PubMed
description Nowadays, increasing interest has recently been given to the exploration of new food preservatives to avoid foodborne outbreaks or food spoilage. Likewise, new compounds that substitute the commonly used synthetic food preservatives are required to restrain the rising problem of microbial resistance. Accordingly, the present study was conducted to examine the chemical composition and the mechanism(s) of action of the Cupressus sempervirens essential oil (CSEO) against Salmonella enterica Typhimuriumand Staphyloccocus aureus. The gas chromatography analysis revealed α-pinene (38.47%) and δ-3-carene (25.14%) are the major components of the CSEO. By using computational methods, such as quantitative structure–activity relationship (QSAR), we revealed that many CSEO components had no toxic effects. Moreover, findings indicated that α-pinene, δ-3-carene and borneol, a minor compound of CSEO, could inhibit the AcrB-TolC and MepR efflux pump activity of S. enterica Typhimurium and S. aureus, respectively. In addition, our molecular docking predictions indicated the high affinity of these three compounds with active sites of bacterial DNA and RNA polymerases, pointing to plausible impairments of the pathogenic bacteria cell replication processes. As well, the safety profile was developed through the zebrafish model. The in vivo toxicological evaluation of (CSEO) exhibited a concentration-dependent manner, with a lethal concentration (LC(50)) equal to 6.6 µg/mL.
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spelling pubmed-91037062022-05-14 Cupressus sempervirens Essential Oil: Exploring the Antibacterial Multitarget Mechanisms, Chemcomputational Toxicity Prediction, and Safety Assessment in Zebrafish Embryos Akermi, Sarra Smaoui, Slim Elhadef, Khaoula Fourati, Mariam Louhichi, Nacim Chaari, Moufida Chakchouk Mtibaa, Ahlem Baanannou, Aissette Masmoudi, Saber Mellouli, Lotfi Molecules Article Nowadays, increasing interest has recently been given to the exploration of new food preservatives to avoid foodborne outbreaks or food spoilage. Likewise, new compounds that substitute the commonly used synthetic food preservatives are required to restrain the rising problem of microbial resistance. Accordingly, the present study was conducted to examine the chemical composition and the mechanism(s) of action of the Cupressus sempervirens essential oil (CSEO) against Salmonella enterica Typhimuriumand Staphyloccocus aureus. The gas chromatography analysis revealed α-pinene (38.47%) and δ-3-carene (25.14%) are the major components of the CSEO. By using computational methods, such as quantitative structure–activity relationship (QSAR), we revealed that many CSEO components had no toxic effects. Moreover, findings indicated that α-pinene, δ-3-carene and borneol, a minor compound of CSEO, could inhibit the AcrB-TolC and MepR efflux pump activity of S. enterica Typhimurium and S. aureus, respectively. In addition, our molecular docking predictions indicated the high affinity of these three compounds with active sites of bacterial DNA and RNA polymerases, pointing to plausible impairments of the pathogenic bacteria cell replication processes. As well, the safety profile was developed through the zebrafish model. The in vivo toxicological evaluation of (CSEO) exhibited a concentration-dependent manner, with a lethal concentration (LC(50)) equal to 6.6 µg/mL. MDPI 2022-04-19 /pmc/articles/PMC9103706/ /pubmed/35565980 http://dx.doi.org/10.3390/molecules27092630 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Akermi, Sarra
Smaoui, Slim
Elhadef, Khaoula
Fourati, Mariam
Louhichi, Nacim
Chaari, Moufida
Chakchouk Mtibaa, Ahlem
Baanannou, Aissette
Masmoudi, Saber
Mellouli, Lotfi
Cupressus sempervirens Essential Oil: Exploring the Antibacterial Multitarget Mechanisms, Chemcomputational Toxicity Prediction, and Safety Assessment in Zebrafish Embryos
title Cupressus sempervirens Essential Oil: Exploring the Antibacterial Multitarget Mechanisms, Chemcomputational Toxicity Prediction, and Safety Assessment in Zebrafish Embryos
title_full Cupressus sempervirens Essential Oil: Exploring the Antibacterial Multitarget Mechanisms, Chemcomputational Toxicity Prediction, and Safety Assessment in Zebrafish Embryos
title_fullStr Cupressus sempervirens Essential Oil: Exploring the Antibacterial Multitarget Mechanisms, Chemcomputational Toxicity Prediction, and Safety Assessment in Zebrafish Embryos
title_full_unstemmed Cupressus sempervirens Essential Oil: Exploring the Antibacterial Multitarget Mechanisms, Chemcomputational Toxicity Prediction, and Safety Assessment in Zebrafish Embryos
title_short Cupressus sempervirens Essential Oil: Exploring the Antibacterial Multitarget Mechanisms, Chemcomputational Toxicity Prediction, and Safety Assessment in Zebrafish Embryos
title_sort cupressus sempervirens essential oil: exploring the antibacterial multitarget mechanisms, chemcomputational toxicity prediction, and safety assessment in zebrafish embryos
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9103706/
https://www.ncbi.nlm.nih.gov/pubmed/35565980
http://dx.doi.org/10.3390/molecules27092630
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