S. Renaud and M. Lorgeril, Wine, alcohol, platelets, and the French paradox for coronary heart disease, Lancet, vol.339, pp.1523-1529, 1992.
URL : https://hal.archives-ouvertes.fr/hal-00395771

E. N. Frankel, J. Kanner, J. B. German, E. Parks, and J. E. Kinsella, Inhibition of oxidation of human low-density lipoprotein by phenolic substances in red wine, Lancet, vol.341, pp.454-461, 1993.

R. Corder, W. Mullen, N. Q. Khan, S. C. Marks, E. G. Wood et al., Oenology: red wine procyanidins and vascular health, Nature, p.566, 2006.

C. Blade, L. Arola, and M. J. Salvado, Hypolipidemic effects of proanthocyanidins and their underlying biochemical and molecular mechanisms, Mol. Nutr. Food Res, vol.54, pp.37-59, 2010.

M. I. Covas, P. Gambert, M. Fit, and R. Torre, Wine and oxidative stress: Up-to-date evidence of the effects of moderate wine consumption on oxidative damage in humans, Atherosclerosis, vol.208, pp.297-304, 2010.

I. Spranger, B. Sun, A. M. Mateus, V. O. Freitas, and J. M. Ricardo-da-silva, Chemical characterization and antioxidant activities of oligomeric and polymeric procyanidin fractions from grape seeds, Food Chem, vol.108, pp.519-551, 2008.

M. A. Soobrattee, V. S. Neergheen, A. Luximon-ramma, O. I. Aruoma, and T. Bahorun, Phenolics as potential antioxidant therapeutic agents: mechanism and actions, Mutat. Res., Fundam. Mol. Mech. Mutagen, vol.579, pp.200-213, 2005.

G. Montagut, I. Baiges, J. Valls, X. Terra, J. M. Bas et al., A trimer plus a dimer-gallate reproduce the bioactivity described for an extract of grape seed procyanidins, Food Chem, vol.116, pp.265-70, 2009.

H. F. Gu, C. M. Li, Y. J. Xu, W. F. Hu, M. H. Chen et al., Structural features and antioxidant activity of tannin from persimmon pulp, Food Res. Int, vol.41, pp.208-225, 2008.

S. Uchida, H. Ohta, M. Niwa, A. Mori, G. Nonaka et al., Prolongation of life span of stroke-prone spontaneously hypertensive rats (SHRSP) ingesting persimmon tannin, Chem. Pharm. Bull. (Tokyo), vol.38, pp.1049-52, 1990.

S. Gorinstein, E. Bartnikowska, G. Kulasek, M. Zemser, and S. Trakhtenberg, Dietary persimmon improves lipid metabolism in rats fed diets containing cholesterol, J. Nutr, vol.128, pp.2023-2030, 1998.

T. R. Rathel, R. Samtleben, A. M. Vollmar, and V. M. Dirsch, Activation of endothelial nitric oxide synthase by red wine polyphenols: impact of grape cultivars, growing area and the vinification process, J. Hypertens, vol.25, pp.541-550, 2007.

N. Landrault, P. Poucheret, P. Ravel, F. Gasc, G. Cros et al., Antioxidant capacities and phenolics levels of French wines from different varieties and vintages, J. Agric. Food Chem, vol.49, pp.3341-3349, 2001.

C. Auger, J. M. Rouanet, R. Vanderlinde, A. Bornet, K. Ecord-e et al., Polyphenols-enriched Chardonnay white wine and sparkling Pinot Noir red wine identically prevent early atherosclerosis in hamsters, J. Agric. Food Chem, vol.53, pp.9823-9832, 2005.

T. Sutra, K. Ecord-e, J. Riss, C. Dallas, J. P. Cristol et al., A commercial extract of fruits and vegetables, Oxxynea, acts as a powerful antiatherosclerotic supplement in an animal model by reducing cholesterolemia, oxidative stress, and NADPH oxidase expression, J. Agric. Food Chem, vol.55, pp.4258-63, 2007.

A. Nistor, A. Bulla, D. A. Filip, and A. Radu, The hyperlipidemic hamster as a model of experimental atherosclerosis, Atherosclerosis, vol.68, pp.159-73, 1987.

N. Gupta, K. Gill, and S. Singh, Paraoxonases: structure, gene polymorphism & role in coronary artery disease, Indian J. Med. Res, vol.130, pp.361-369, 2009.

E. Schulz, E. Anter, and J. F. Keaney, Oxidative stress, antioxidants, and endothelial function, Curr. Med. Chem, vol.11, pp.1093-1104, 2004.

K. , A. Agne, D. Lacan, J. Ramos, G. Fouret et al., Preventive effect of a melon extract rich in superoxide scavenging activity on abdominal and liver fat and adipokine imbalance in high-fat-fed hamsters, J. Agric. Food Chem, vol.57, pp.6461-6468, 2009.

B. Fuhrman, N. Volkova, and M. Aviram, Postprandial serum triacylglycerols and oxidative stress in mice after consumption of fish oil, soy oil or olive oil: possible role for paraoxonas-1 triacylglycerol lipase-like activity, Nutrition, vol.22, pp.922-952, 2006.

J. Sun, Y. F. Chu, X. Wu, and R. H. Liu, Antioxidant and antiproliferative activities of common fruits, J. Agric. Food Chem, vol.50, pp.7449-54, 2002.

A. Serra, A. Macia, M. P. Romero, J. Valls, C. Blad-e et al., Bioavailability of procyanidin dimers and trimers and matrix food effects in in vitro and in vivo models, Br. J. Nutr, vol.103, pp.944-52, 2009.

J. Yamakoshi, S. Kataoka, T. Koga, and T. Ariga, Proanthocyanidinrich extract from grape seeds attenuates the development of aortic atherosclerosis in cholesterol-fed rabbits, Atherosclerosis, vol.142, pp.139-188, 1999.

S. Baba, N. Osakabe, M. Natsume, A. Yasuda, T. Takizawa et al., Cocoa powder enhances the level of antioxidative activity in rat plasma, Br. J. Nutr, vol.84, pp.673-80, 2000.

R. Tsao, R. Yang, S. Xie, E. Sockovie, and S. Khanizadeh, Which polyphenolic compounds contribute to the total antioxidant activities of apple?, J. Agric. Food Chem, vol.53, pp.4989-95, 2005.

A. Yasuda, M. Natsume, K. Sasaki, S. Baba, Y. Nakamura et al., Cacao procyanidins reduce plasma cholesterol and increase fecal steroid excretion in rats fed a highcholesterol diet, BioFactors, vol.33, pp.211-234, 2008.

C. Auger, P. Erain, F. Laurent-bichon, K. Portet, A. Bornet et al., Phenolics from commercialized grape extracts prevent early atherosclerotic lesions in hamsters by mechanisms other than antioxidant effect, J. Agric. Food Chem, vol.52, pp.5297-5302, 2004.

C. Auger, B. Caporiccio, N. Landrault, P. L. Teissedre, C. Laurent et al., Red wine phenolic compounds reduce plasma lipids and apolipoprotein B and prevent early aortic atherosclerosis in hypercholesterolemic Golden Syrian hamsters, J. Nutr, vol.132, pp.1207-1220, 2002.

E. Andriambeloson, A. L. Kleschyov, B. Muller, A. Beretz, J. C. Stoclet et al., Nitric oxide production and endothelium-dependent vasorelaxation induced by wine polyphenols in rat aorta, Br. J. Pharmacol, vol.120, pp.1053-1061, 1997.
URL : https://hal.archives-ouvertes.fr/hal-02519336

C. Auger, M. Chaabi, E. Anselm, A. Lobstein, and V. B. Schini-kerth, The red wine extract-induced activation of endothelial nitric oxide synthase is mediated by a great variety of polyphenolic compounds, Mol. Nutr. Food Res, vol.54, pp.1-13, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00508398

V. L. Singleton and J. A. Rossi, Colorimetry of total phenolics with phosphomolybdic-phosphotungstic acid reagents, Am. J. Enol. Vitic, vol.16, pp.144-58, 1965.

K. Chira, G. Schmauch, C. Saucier, S. Fabre, and P. L. , Teiss edre, Grape variety effect on proanthocyanidin composition and sensory perception of skin and seed tannin extracts from bordeaux wine grapes (Cabernet Sauvignon and Merlot) for two consecutive vintages, J. Agric. Food Chem, vol.57, pp.545-53, 2006.

K. , E. Ventura, D. Lacan, J. Ramos, J. P. Cristol et al., An SOD rich melon extract Extramel prevents aortic lipids and liver steatosis in diet-induced model of atherosclerosis, Nutr., Metab. Cardiovasc. Dis, vol.20, pp.301-308, 2010.

L. Jaouad, C. De-guise, H. Berrougui, M. Cloutier, M. Isabelle et al., Age-related decrease in highdensity lipoprotein antioxidant activity is due to an alteration on the PON1's free sulfhydryl groups, Atherosclerosis, vol.185, pp.191-200, 2006.

A. Fort, M. Cordaillat, C. Thollon, G. Salazar, I. Mechaly et al., New insights in the contribution of voltage-gated Na(v) channels to rat aorta contraction, PLoS One, 2009.