Effet protecteur des acides gras contre le stress oxydatif : Implication en physiopathologie vasculaire.

Oxidative stress play a major role in the genesis and the evolution of vascular pathologies. Recent data suggest that redox mechanisms are involved in the signaling network of vascular cells and the physiology of the vascular wall. Experimental cell models allow to analyse the biological effect of pro-oxidants, and the regulation exerted by antioxidants and cytoprotective agents.Fatty acids play a complex role in atherosclerosis, since they exhibit both anti and proatherogenic properties, as function of their concentration and insaturation level. Beside their role in cell metabolism and mitochondrial -oxidation, fatty acids activate various signaling pathways, and could modulate intracellular oxidative stress via an uncoupling effect on mitochondria. We report here that fatty acids protect against mitochondrial oxidative stress by activating cellular glutathione peroxidase (GPX) activity. This effect is independent of the chain length and unsaturation level. EGF receptor is activated by fatty acids and involved in their protective effect against mitochondrial oxidative stress and GPX activation, and similar protective results are observed with EGF. Oleic acid and EGF protect DNA against the formation of 8oxodG lesions occurring subsequently to oxidative stress. Taken together, this new 'antioxidant' and cytoprotective property of fatty acids and EGF could participate to the stabilization of atherosclerotic plaque, and the more general anti-atherogenic properties of oleic acid.

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Main Authors: Negre-Salvayre, Anne, autor. aut 57109, Salvayre, Robert. 57110
Format: Texto biblioteca
Language:Fr
Subjects:Ácidos grasos., Apoptosis., Estrés oxidativo., RECEPTOR EGF,
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spelling dig-fedepalma-123456789-848282022-08-05T10:13:31Z Effet protecteur des acides gras contre le stress oxydatif : Implication en physiopathologie vasculaire. Negre-Salvayre, Anne, autor. aut 57109 Salvayre, Robert. 57110 Ácidos grasos. Apoptosis. Estrés oxidativo. RECEPTOR EGF Oxidative stress play a major role in the genesis and the evolution of vascular pathologies. Recent data suggest that redox mechanisms are involved in the signaling network of vascular cells and the physiology of the vascular wall. Experimental cell models allow to analyse the biological effect of pro-oxidants, and the regulation exerted by antioxidants and cytoprotective agents.Fatty acids play a complex role in atherosclerosis, since they exhibit both anti and proatherogenic properties, as function of their concentration and insaturation level. Beside their role in cell metabolism and mitochondrial -oxidation, fatty acids activate various signaling pathways, and could modulate intracellular oxidative stress via an uncoupling effect on mitochondria. We report here that fatty acids protect against mitochondrial oxidative stress by activating cellular glutathione peroxidase (GPX) activity. This effect is independent of the chain length and unsaturation level. EGF receptor is activated by fatty acids and involved in their protective effect against mitochondrial oxidative stress and GPX activation, and similar protective results are observed with EGF. Oleic acid and EGF protect DNA against the formation of 8oxodG lesions occurring subsequently to oxidative stress. Taken together, this new 'antioxidant' and cytoprotective property of fatty acids and EGF could participate to the stabilization of atherosclerotic plaque, and the more general anti-atherogenic properties of oleic acid. Oxidative stress play a major role in the genesis and the evolution of vascular pathologies. Recent data suggest that redox mechanisms are involved in the signaling network of vascular cells and the physiology of the vascular wall. Experimental cell models allow to analyse the biological effect of pro-oxidants, and the regulation exerted by antioxidants and cytoprotective agents.Fatty acids play a complex role in atherosclerosis, since they exhibit both anti and proatherogenic properties, as function of their concentration and insaturation level. Beside their role in cell metabolism and mitochondrial -oxidation, fatty acids activate various signaling pathways, and could modulate intracellular oxidative stress via an uncoupling effect on mitochondria. We report here that fatty acids protect against mitochondrial oxidative stress by activating cellular glutathione peroxidase (GPX) activity. This effect is independent of the chain length and unsaturation level. EGF receptor is activated by fatty acids and involved in their protective effect against mitochondrial oxidative stress and GPX activation, and similar protective results are observed with EGF. Oleic acid and EGF protect DNA against the formation of 8oxodG lesions occurring subsequently to oxidative stress. Taken together, this new 'antioxidant' and cytoprotective property of fatty acids and EGF could participate to the stabilization of atherosclerotic plaque, and the more general anti-atherogenic properties of oleic acid. text Fr
institution FEDEPALMA
collection DSpace
country Colombia
countrycode CO
component Bibliográfico
access En linea
databasecode dig-fedepalma
tag biblioteca
region America del Sur
libraryname Centro de Información y Documentación Palmero
language Fr
topic Ácidos grasos.
Apoptosis.
Estrés oxidativo.
RECEPTOR EGF
Ácidos grasos.
Apoptosis.
Estrés oxidativo.
RECEPTOR EGF
spellingShingle Ácidos grasos.
Apoptosis.
Estrés oxidativo.
RECEPTOR EGF
Ácidos grasos.
Apoptosis.
Estrés oxidativo.
RECEPTOR EGF
Negre-Salvayre, Anne, autor. aut 57109
Salvayre, Robert. 57110
Effet protecteur des acides gras contre le stress oxydatif : Implication en physiopathologie vasculaire.
description Oxidative stress play a major role in the genesis and the evolution of vascular pathologies. Recent data suggest that redox mechanisms are involved in the signaling network of vascular cells and the physiology of the vascular wall. Experimental cell models allow to analyse the biological effect of pro-oxidants, and the regulation exerted by antioxidants and cytoprotective agents.Fatty acids play a complex role in atherosclerosis, since they exhibit both anti and proatherogenic properties, as function of their concentration and insaturation level. Beside their role in cell metabolism and mitochondrial -oxidation, fatty acids activate various signaling pathways, and could modulate intracellular oxidative stress via an uncoupling effect on mitochondria. We report here that fatty acids protect against mitochondrial oxidative stress by activating cellular glutathione peroxidase (GPX) activity. This effect is independent of the chain length and unsaturation level. EGF receptor is activated by fatty acids and involved in their protective effect against mitochondrial oxidative stress and GPX activation, and similar protective results are observed with EGF. Oleic acid and EGF protect DNA against the formation of 8oxodG lesions occurring subsequently to oxidative stress. Taken together, this new 'antioxidant' and cytoprotective property of fatty acids and EGF could participate to the stabilization of atherosclerotic plaque, and the more general anti-atherogenic properties of oleic acid.
format Texto
topic_facet Ácidos grasos.
Apoptosis.
Estrés oxidativo.
RECEPTOR EGF
author Negre-Salvayre, Anne, autor. aut 57109
Salvayre, Robert. 57110
author_facet Negre-Salvayre, Anne, autor. aut 57109
Salvayre, Robert. 57110
author_sort Negre-Salvayre, Anne, autor. aut 57109
title Effet protecteur des acides gras contre le stress oxydatif : Implication en physiopathologie vasculaire.
title_short Effet protecteur des acides gras contre le stress oxydatif : Implication en physiopathologie vasculaire.
title_full Effet protecteur des acides gras contre le stress oxydatif : Implication en physiopathologie vasculaire.
title_fullStr Effet protecteur des acides gras contre le stress oxydatif : Implication en physiopathologie vasculaire.
title_full_unstemmed Effet protecteur des acides gras contre le stress oxydatif : Implication en physiopathologie vasculaire.
title_sort effet protecteur des acides gras contre le stress oxydatif : implication en physiopathologie vasculaire.
work_keys_str_mv AT negresalvayreanneautoraut57109 effetprotecteurdesacidesgrascontrelestressoxydatifimplicationenphysiopathologievasculaire
AT salvayrerobert57110 effetprotecteurdesacidesgrascontrelestressoxydatifimplicationenphysiopathologievasculaire
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