Background-Several epidemiological studies have demonstrated the beneficial effect of red wine intake in reducing total and cardiovascular mortality. This effect has been attributed in part to its antioxidant properties. Because the monocytes/macrophages and the nuclear transcription factor B (NF-B) are implicated in the pathogenesis of atherosclerotic lesions, we examined the effect of red wine intake on the activation of NF-B in peripheral blood mononuclear cells. Methods and Results-Sixteen healthy volunteers were studied 3 times each: after a moderate dose, a low dose, and no wine with a fat-enriched breakfast. Lipid profile and NF-B activation (electrophoretic mobility shift assay) were examined in blood samples taken before and 3, 6, and 9 hours after wine intake. In addition, mononuclear cells were incubated with VLDL in the presence of some antioxidants (quercetin and ␣-tocopherol succinate) contained in red wine to study their effects on NF-B activation. Subjects receiving a fat-enriched breakfast had increased NF-B activation in peripheral blood mononuclear cells coinciding with the augmentation in total triglycerides and chylomicrons. Red wine intake prevented NF-B activity even though it induced a certain increase in serum lipids, particularly VLDL, that did not increase after the fat ingestion alone. However, another form of alcohol intake (vodka) did not modify the NF-B activation provided by postprandial lipemia. In cultured mononuclear cells, isolated human VLDL caused NF-B activation in a time-dependent manner that did not occur in the presence of the red wine antioxidants quercetin and ␣-tocopherol. Conclusions-Our results provide a new potential mechanism to explain the beneficial effects of red wine intake in the reduction of cardiovascular mortality.
To determine the effects of dietary fat saturation on plasma lipoproteins, we studied 21 free-living normolipidemic women (13 pre- and 8 postmenopausal) on three consecutive diet periods. During the first 4 wk they consumed a saturated diet rich in palm oil and butter [19% saturated fatty acids (S), 14% monounsaturated fatty acids (M), and 3.5% polyunsaturated fatty acids (P)], followed by 6 wk of a monounsaturated diet rich in olive oil (11% S, 22% M, and 3.6% P), and 6 wk of a polyunsaturated diet rich in sunflower oil (10.7% S, 12.5% M, and 12.8% P). Compared with the diet rich in saturated fatty acids, both diets rich in unsaturated fatty acids had similar lowering effects on total and low-density-lipoprotein cholesterol. High-density lipoprotein cholesterol and apolipoprotein A-I were higher in the monounsaturated-rich period than in the polyunsaturated-rich (10.5% and 12.7% respectively, P less than 0.001) and the saturated-rich period (5.3%, and 7.9%, respectively, P less than 0.05). These effects were independent of menopause status. Our data show that at this level of fat intake (36% as calories), a monounsaturated-rich diet results in a less atherogenic lipid profile than either polyunsaturated- or saturated-rich diets.
The effect of dietary-fat saturation on plasma lipoprotein concentrations was assessed in 46 men and 32 women placed on a diet enriched in polyunsaturated fatty acids (sunflower oil) for 12 wk and, under isocaloric conditions, on a diet enriched in monounsaturated fatty acids (olive oil) for the next 16 wk in men and 28 wk in women. Fat comprised 37% of the total energy intake in men and 36% in women. At the end of the monounsaturated fatty acid diet no change occurred in total cholesterol (TC) in men but it increased by 9% in women. High-density-lipoprotein (HDL) cholesterol increased by 17% in men and by 30% in women. The atherogenic index (TC:HDL cholesterol) fell significantly in both sexes. No significant changes occurred in plasma low-density-lipoprotein cholesterol or in total triglycerides values. These data show that when compared with polyunsaturates, monounsaturates increased HDL cholesterol and reduced the atherogenic risk profile in both sexes.
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