CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Oleuropein

  • Effect of phenolic compounds of virgin olive oil on LDL oxidation resistance ?

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    Abstract Title:

    [Effect of phenolic compounds of virgin olive oil on LDL oxidation resistance].

    Abstract Source:

    Med Clin (Barc). 2003 Feb 8;120(4):128-31. PMID: 12605836

    Abstract Author(s):

    Juan Antonio Moreno, José López-Miranda, Purificación Gómez, Fatiha Benkhalti, Es-Saddik El Boustani, Francisco Pérez-Jiménez

    Article Affiliation:

    Unidad de Lípidos y Arteriosclerosis. Hospital Universitario Reina Sofía. Córdoba. España.

    Abstract:

    BACKGROUND AND OBJECTIVE: Several epidemiological and experimental studies have associated the intake of antioxidants, which are abundant in the Mediterranean diet, with a low incidence of cardiovascular disease. One possible mechanism of this action is the oxidative protection in low density lipoproteins (LDL). The aim of our study was to compare the antioxidative activity of diverse phenolic compounds present in virgin olive oil on these lipoproteins.

    SUBJECTS AND METHOD: LDL was isolated from blood plasma of healthy volunteers by sequential ultracentrifugation. This was followed by oxidation with CuC12 in the presence of different concentrations of phenolic compounds and virgin olive oil extract. Production of conjugated dienes was determined by the continuous monitoring of increased absorbency at 234 nm as an indicator of LDL oxidation.

    RESULTS: Virgin olive oil extract prolonged the latency phase and significantly lowered the progression rate (p<0.05) at low concentrations (2 g/ml). This antioxidative effect was also observed with low concentrations (2 M) of caffeic acid and oleuropein (p<0.05). However, it was necessary to increase the concentration of flavone up to 50 times to observe a similar effect (p<0.05).

    CONCLUSION: Both virgin olive oil extract enriched in phenolic compounds and phenolic compounds present in olive oil (caffeic acid and oleuropein) are potent antioxidants at very low concentrations. Thus, the beneficial effects of a Mediterranean diet may be partly due to the protective action of these compounds.

  • Olive oil and red wine antioxidant polyphenols inhibit endothelial activation: antiatherogenic properties of Mediterranean diet phytochemicals📎

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    Abstract Title:

    Olive oil and red wine antioxidant polyphenols inhibit endothelial activation: antiatherogenic properties of Mediterranean diet phytochemicals.

    Abstract Source:

    Arterioscler Thromb Vasc Biol. 2003 Apr 1;23(4):622-9. Epub 2003 Feb 20. PMID: 12615669

    Abstract Author(s):

    Maria Annunziata Carluccio, Luisa Siculella, Maria Assunta Ancora, Marika Massaro, Egeria Scoditti, Carlo Storelli, Francesco Visioli, Alessandro Distante, Raffaele De Caterina

    Article Affiliation:

    C.N.R. Institute of Clinical Physiology, Lecce, Italy.

    Abstract:

    OBJECTIVE: Epidemiology suggests that Mediterranean diets are associated with reduced risk of cardiovascular disease. Because monocyte adhesion to the endothelium is crucial in early atherogenesis, we evaluated whether typical olive oil and red wine polyphenols affect endothelial-leukocyte adhesion molecule expression and monocyte adhesion.

    METHODS AND RESULTS: Phytochemicals in olive oil and red wine, including oleuropein, hydroxytyrosol, tyrosol, elenolic acid, and resveratrol, with or without antioxidant activity, were incubated with human umbilical vein endothelial cells for 30 minutes, followed by co-incubation with bacterial lipopolysaccharide or cytokines to trigger adhesion molecule expression. At nutritionally relevant concentrations, only oleuropein, hydroxytyrosol, and resveratrol, possessing a marked antioxidant activity, reduced monocytoid cell adhesion to stimulated endothelium, as well as vascular cell adhesion molecule-1 (VCAM-1) mRNA and protein by Northern analysis and cell surface enzyme immunoassay. Reporter gene assays with deletional VCAM-1 promoter constructs indicated the relevance of nuclear factor-kappaB, activator protein-1, and possibly GATA binding sites in mediating VCAM-1 transcriptional inhibition. The involvement of nuclear factor-kappaB and activator protein-1 was finally demonstrated at electrophoretic mobility shift assays.

    CONCLUSIONS: Olive oil and red wine antioxidant polyphenols at nutritionally relevant concentrations transcriptionally inhibit endothelial adhesion molecule expression, thus partially explaining atheroprotection from Mediterranean diets.

  • The effects of polyphenols in olive leaves on platelet function.

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    Abstract Title:

    The effects of polyphenols in olive leaves on platelet function.

    Abstract Source:

    Nutr Metab Cardiovasc Dis. 2008 Feb;18(2):127-32. Epub 2007 Mar 7. PMID: 17346951

    Abstract Author(s):

    Indu Singh, Michelle Mok, Anne-Marie Christensen, Alan H Turner, John A Hawley

    Article Affiliation:

    School of Medical Sciences, RMIT University, Melbourne, Australia.

    Abstract:

    INTRODUCTION: The phenolic compounds of olive leaves and olive oils in the Mediterranean diet have been associated with a reduced incidence of heart disease. Accordingly, antioxidant-rich diets may prevent the deleterious effects of oxidative metabolism by scavenging free radicals, thus inhibiting oxidation and delaying atherosclerosis. The process involves phospholipase C activation and arachidonic acid metabolism, and is thought to reduce hydrogen peroxide (H(2)O(2)). In our study, an extract of Olea europaea L. leaves was used. The active phenolic compounds in this extract are part of the secoiridoid family, known for their capacity to scavenge H(2)O(2). The results from this study will help to improve our understanding of effects of polyphenol antioxidants in olive leaf extract on platelet function.

    METHODS: Full blood examination (FBE), platelet aggregation, and ATP release were performed on samples from fasting, normal, healthy male subjects. Platelet function at increasing concentrations of oleuropein was investigated through measures of platelet aggregation and ATP release from activated platelets.

    RESULTS: Blood analysis (n=11) revealed a significant dose-dependant reduction in platelet activity with olive extract concentrations of 1.0% v/v (P<0.001). ATP Release showed a similar pattern (P=0.02).

    CONCLUSIONS: Olive leaf polyphenols derived from O. europaea L. leaves inhibited in vitro platelet activation in healthy, non-smoking males. Further bioavailability studies need to be undertaken to determine the in vivo effect of extract on platelet function and to validate the present results.

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