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首页> 外文期刊>Metabolism: Clinical and Experimental >Effects of diets enriched with two different plant stanol ester mixtures on plasma ubiquinol-10 and fat-soluble antioxidant concentrations.
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Effects of diets enriched with two different plant stanol ester mixtures on plasma ubiquinol-10 and fat-soluble antioxidant concentrations.

机译:富含两种植物甾烷醇酯混合物的饮食对血浆泛醇10和脂溶性抗氧化剂浓度的影响。

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摘要

Plant stanols lower intestinal cholesterol absorption. This causes a decrease in serum low-density lipoprotein (LDL)-cholesterol, despite a compensatory increase in cholesterol synthesis. We therefore hypothesized that plant stanols also change LDL-cholesterol-standardized concentrations of ubiquinol-10 (a side product of the cholesterol synthesis cascade) and of those fat-soluble antioxidants that are mainly carried by LDL. To examine this, 112 nonhypercholesterolemic subjects consumed low erucic acid rapeseed oil (LEAR)-based margarine and shortening for 4 weeks. For the next 8 weeks, 42 subjects consumed the same products, while the other subjects received products with vegetable oil-based stanols (2.6 g sitostanol plus 1.2 g campestanol daily, n = 36) or wood-based stanols (3.7 g sitostanol plus 0.3 g campestanol daily, n = 34). Consumption of both plant stanol ester mixtures increased cholesterol synthesis and lowered cholesterol absorption, as indicated by increased serum cholesterol-standardized lathosterol and decreased plant sterol concentrations, respectively. Compared with the control group, absolute plasma ubiquinol-10 concentrations were lowered by 12.3% +/- 18.9% (-0.14 microg/mL v. the control group; P =.004; 95% confidence interval [CI] for the difference in changes, -0.05 to -0.22 microg/mL) in the vegetable oil-based group and by 15.4% +/- 13.0% (-0.17 microg/mL v. the control group; P <.001; 95% CI for the difference, -0.08 to -0.27 microg/mL) in the wood-based group. Changes in LDL-cholesterol-standardized ubiquinol-10 concentrations were not significantly changed. The most lipophylic antioxidants, the hydrocarbon carotenoids (beta-carotene, alpha-carotene, and lycopene), decreased most, followed by the less lipophylic oxygenated carotenoids (lutein/zeaxanthin and beta-cryptoxanthin) and the tocopherols. These reductions were related to the reduction in LDL, which carry most of these antioxidants. The decrease in the hydrocarbon carotenoids, however, was also significantly associated with a decrease in cholesterol absorption. LDL-cholesterol-standardized antioxidant concentrations were not changed, except for beta-carotene, which was still, although not significantly, lowered by about 10%. We conclude that the increase in endogenous cholesterol synthesis during plant stanol ester consumption does not result in increased LDL-cholesterol-standardized concentrations of ubiquinol-10, a side product of the cholesterol synthesis cascade. Furthermore, decreases in absolute fat-soluble antioxidant concentrations are related to decreases in LDL-cholesterol. However, for the most lipophylic carotenoids, some of the reduction was also related to the decrease in cholesterol absorption. Copyright 2001 by W.B. Saunders Company
机译:植物甾烷醇可降低肠道胆固醇的吸收。尽管胆固醇合成发生补偿性增加,这仍导致血清低密度脂蛋白(LDL)-胆固醇降低。因此,我们假设植物甾烷醇也会改变LDL-胆固醇标准化浓度的ubiquinol-10(胆固醇合成级联反应的副产物)以及那些主要由LDL携带的脂溶性抗氧化剂。为了对此进行检查,有112名非高胆固醇血症受试者食用了基于低芥酸菜籽油(LEAR)的人造黄油,并缩短了4周。在接下来的8周中,有42名受试者食用了相同的产品,而其他受试者则收到了含有植物油基甾烷醇(2.6克谷甾烷醇加1.2g樟脑甾醇,每天,n = 36)或木质甾烷醇(3.7 g谷甾烷醇加0.3烷烃)的产品。每天每克樟脑甾醇,n = 34)。两种植物甾烷醇酯混合物的消耗均增加了胆固醇的合成,并降低了胆固醇的吸收,这分别通过增加血清胆固醇标准化的谷甾醇和降低植物固醇浓度来表明。与对照组相比,血浆泛醇10的绝对浓度降低了12.3%+/- 18.9%(相对于对照组,为-0.14 microg / mL; P = .004; 95%的置信区间[CI])以植物油为基础的组变化了-0.05至-0.22 microg / mL),而与对照组相比则下降了15.4%+/- 13.0%(-0.17 microg / mL对对照组; P <.001; 95%CI (-0.08至-0.27 microg / mL)。 LDL-胆固醇标准化的泛醇10浓度的变化没有明显变化。最多的类脂抗氧化剂,碳氢化合物类胡萝卜素(β-胡萝卜素,α-胡萝卜素和番茄红素)减少最多,其次是较少类脂性的氧化类胡萝卜素(叶黄素/玉米黄质和β-隐黄质)和生育酚。这些减少与LDL的减少有关,LDL携带了大多数抗氧化剂。但是,碳氢化合物类胡萝卜素的减少也与胆固醇吸收的减少显着相关。 LDL-胆固醇标准化的抗氧化剂浓度没有变化,除了β-胡萝卜素,尽管它没有显着降低,但仍降低了约10%。我们得出结论,在植物甾烷醇酯消耗过程中内源性胆固醇合成的增加不会导致胆固醇合成级联的副产物LDL-胆固醇标准化浓度的泛醇10的增加。此外,绝对脂溶性抗氧化剂浓度的降低与LDL-胆固醇的降低有关。但是,对于大多数脂类胡萝卜素来说,某些减少也与胆固醇吸收的减少有关。 W.B.版权所有2001桑德斯公司

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