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Argan Oil-Mediated Attenuation of Organelle Dysfunction, Oxidative Stress and Cell Death Induced by 7-Ketocholesterol in Murine Oligodendrocytes 158N

Argan oil is widely used in Morocco in traditional medicine. Its ability to treat cardiovascular diseases is well-established. However, nothing is known about its effects on neurodegenerative diseases, which are often associated with increased oxidative stress leading to lipid peroxidation and the f...

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Autores principales: Badreddine, Asmaa, Zarrouk, Amira, Karym, El Mostafa, Debbabi, Meryam, Nury, Thomas, Meddeb, Wiem, Sghaier, Randa, Bezine, Maryem, Vejux, Anne, Martine, Lucy, Grégoire, Stéphane, Bretillon, Lionel, Prost-Camus, Emmanuelle, Durand, Philippe, Prost, Michel, Moreau, Thibault, Cherkaoui-Malki, Mustapha, Nasser, Boubker, Lizard, Gérard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5666899/
https://www.ncbi.nlm.nih.gov/pubmed/29065513
http://dx.doi.org/10.3390/ijms18102220
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author Badreddine, Asmaa
Zarrouk, Amira
Karym, El Mostafa
Debbabi, Meryam
Nury, Thomas
Meddeb, Wiem
Sghaier, Randa
Bezine, Maryem
Vejux, Anne
Martine, Lucy
Grégoire, Stéphane
Bretillon, Lionel
Prost-Camus, Emmanuelle
Durand, Philippe
Prost, Michel
Moreau, Thibault
Cherkaoui-Malki, Mustapha
Nasser, Boubker
Lizard, Gérard
author_facet Badreddine, Asmaa
Zarrouk, Amira
Karym, El Mostafa
Debbabi, Meryam
Nury, Thomas
Meddeb, Wiem
Sghaier, Randa
Bezine, Maryem
Vejux, Anne
Martine, Lucy
Grégoire, Stéphane
Bretillon, Lionel
Prost-Camus, Emmanuelle
Durand, Philippe
Prost, Michel
Moreau, Thibault
Cherkaoui-Malki, Mustapha
Nasser, Boubker
Lizard, Gérard
author_sort Badreddine, Asmaa
collection PubMed
description Argan oil is widely used in Morocco in traditional medicine. Its ability to treat cardiovascular diseases is well-established. However, nothing is known about its effects on neurodegenerative diseases, which are often associated with increased oxidative stress leading to lipid peroxidation and the formation of 7-ketocholesterol (7KC) resulting from cholesterol auto-oxidation. As 7KC induces oxidative stress, inflammation and cell death, it is important to identify compounds able to impair its harmful effects. These compounds may be either natural or synthetic molecules or mixtures of molecules such as oils. In this context: (i) the lipid profiles of dietary argan oils from Berkane and Agadir (Morocco) in fatty acids, phytosterols, tocopherols and polyphenols were determined by different chromatographic techniques; and (ii) their anti-oxidant and cytoprotective effects in 158N murine oligodendrocytes cultured with 7KC (25–50 µM; 24 h) without and with argan oil (0.1% v/v) or α-tocopherol (400 µM, positive control) were evaluated with complementary techniques of cellular and molecular biology. Among the unsaturated fatty acids present in argan oils, oleate (C18:1 n-9) and linoleate (C18:1 n-6) were the most abundant; the highest quantities of saturated fatty acids were palmitate (C16:0) and stearate (C18:0). Several phytosterols were found, mainly schottenol and spinasterol (specific to argan oil), cycloartenol, β-amyrin and citrostadienol. α- and γ-tocopherols were also present. Tyrosol and protocatechic acid were the only polyphenols detected. Argan and extra virgin olive oils have many compounds in common, principally oleate and linoleate, and tocopherols. Kit Radicaux Libres (KRL) and ferric reducing antioxidant power (FRAP) tests showed that argan and extra virgin olive oils have anti-oxidant properties. Argan oils were able to attenuate the cytotoxic effects of 7KC on 158N cells: loss of cell adhesion, cell growth inhibition, increased plasma membrane permeability, mitochondrial, peroxisomal and lysosomal dysfunction, and the induction of oxiapoptophagy (OXIdation + APOPTOsis + autoPHAGY). Altogether, our data obtained in 158N oligodendrocytes provide evidence that argan oil is able to counteract the toxic effects of 7KC on nerve cells, thus suggesting that some of its compounds could prevent or mitigate neurodegenerative diseases to the extent that they are able to cross the blood-brain barrier.
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spelling pubmed-56668992017-11-09 Argan Oil-Mediated Attenuation of Organelle Dysfunction, Oxidative Stress and Cell Death Induced by 7-Ketocholesterol in Murine Oligodendrocytes 158N Badreddine, Asmaa Zarrouk, Amira Karym, El Mostafa Debbabi, Meryam Nury, Thomas Meddeb, Wiem Sghaier, Randa Bezine, Maryem Vejux, Anne Martine, Lucy Grégoire, Stéphane Bretillon, Lionel Prost-Camus, Emmanuelle Durand, Philippe Prost, Michel Moreau, Thibault Cherkaoui-Malki, Mustapha Nasser, Boubker Lizard, Gérard Int J Mol Sci Article Argan oil is widely used in Morocco in traditional medicine. Its ability to treat cardiovascular diseases is well-established. However, nothing is known about its effects on neurodegenerative diseases, which are often associated with increased oxidative stress leading to lipid peroxidation and the formation of 7-ketocholesterol (7KC) resulting from cholesterol auto-oxidation. As 7KC induces oxidative stress, inflammation and cell death, it is important to identify compounds able to impair its harmful effects. These compounds may be either natural or synthetic molecules or mixtures of molecules such as oils. In this context: (i) the lipid profiles of dietary argan oils from Berkane and Agadir (Morocco) in fatty acids, phytosterols, tocopherols and polyphenols were determined by different chromatographic techniques; and (ii) their anti-oxidant and cytoprotective effects in 158N murine oligodendrocytes cultured with 7KC (25–50 µM; 24 h) without and with argan oil (0.1% v/v) or α-tocopherol (400 µM, positive control) were evaluated with complementary techniques of cellular and molecular biology. Among the unsaturated fatty acids present in argan oils, oleate (C18:1 n-9) and linoleate (C18:1 n-6) were the most abundant; the highest quantities of saturated fatty acids were palmitate (C16:0) and stearate (C18:0). Several phytosterols were found, mainly schottenol and spinasterol (specific to argan oil), cycloartenol, β-amyrin and citrostadienol. α- and γ-tocopherols were also present. Tyrosol and protocatechic acid were the only polyphenols detected. Argan and extra virgin olive oils have many compounds in common, principally oleate and linoleate, and tocopherols. Kit Radicaux Libres (KRL) and ferric reducing antioxidant power (FRAP) tests showed that argan and extra virgin olive oils have anti-oxidant properties. Argan oils were able to attenuate the cytotoxic effects of 7KC on 158N cells: loss of cell adhesion, cell growth inhibition, increased plasma membrane permeability, mitochondrial, peroxisomal and lysosomal dysfunction, and the induction of oxiapoptophagy (OXIdation + APOPTOsis + autoPHAGY). Altogether, our data obtained in 158N oligodendrocytes provide evidence that argan oil is able to counteract the toxic effects of 7KC on nerve cells, thus suggesting that some of its compounds could prevent or mitigate neurodegenerative diseases to the extent that they are able to cross the blood-brain barrier. MDPI 2017-10-23 /pmc/articles/PMC5666899/ /pubmed/29065513 http://dx.doi.org/10.3390/ijms18102220 Text en © 2017 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Badreddine, Asmaa
Zarrouk, Amira
Karym, El Mostafa
Debbabi, Meryam
Nury, Thomas
Meddeb, Wiem
Sghaier, Randa
Bezine, Maryem
Vejux, Anne
Martine, Lucy
Grégoire, Stéphane
Bretillon, Lionel
Prost-Camus, Emmanuelle
Durand, Philippe
Prost, Michel
Moreau, Thibault
Cherkaoui-Malki, Mustapha
Nasser, Boubker
Lizard, Gérard
Argan Oil-Mediated Attenuation of Organelle Dysfunction, Oxidative Stress and Cell Death Induced by 7-Ketocholesterol in Murine Oligodendrocytes 158N
title Argan Oil-Mediated Attenuation of Organelle Dysfunction, Oxidative Stress and Cell Death Induced by 7-Ketocholesterol in Murine Oligodendrocytes 158N
title_full Argan Oil-Mediated Attenuation of Organelle Dysfunction, Oxidative Stress and Cell Death Induced by 7-Ketocholesterol in Murine Oligodendrocytes 158N
title_fullStr Argan Oil-Mediated Attenuation of Organelle Dysfunction, Oxidative Stress and Cell Death Induced by 7-Ketocholesterol in Murine Oligodendrocytes 158N
title_full_unstemmed Argan Oil-Mediated Attenuation of Organelle Dysfunction, Oxidative Stress and Cell Death Induced by 7-Ketocholesterol in Murine Oligodendrocytes 158N
title_short Argan Oil-Mediated Attenuation of Organelle Dysfunction, Oxidative Stress and Cell Death Induced by 7-Ketocholesterol in Murine Oligodendrocytes 158N
title_sort argan oil-mediated attenuation of organelle dysfunction, oxidative stress and cell death induced by 7-ketocholesterol in murine oligodendrocytes 158n
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5666899/
https://www.ncbi.nlm.nih.gov/pubmed/29065513
http://dx.doi.org/10.3390/ijms18102220
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