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从富含血浆的红酒原花青素中分离出的低密度脂蛋白可抵抗脂质氧化和生育酚消耗。

LDL isolated from plasma-loaded red wine procyanidins resist lipid oxidation and tocopherol depletion.

作者信息

Lourenço Cátia F, Gago Bruno, Barbosa Rui M, de Freitas Víctor, Laranjinha João

机构信息

Faculty of Pharmacy and Center for Neurosciences and Cell Biology, University of Coimbra, Coimbra, Portugal.

出版信息

J Agric Food Chem. 2008 May 28;56(10):3798-804. doi: 10.1021/jf0733259. Epub 2008 May 3.

Abstract

Dietary phenolic compounds may act as antioxidants in vitro, but because of structural modifications during absorption, its role based on concentrations high enough to afford an antioxidant protection needs to be re-evaluated. We have explored the hypothesis that red wine procyanidins interact with low density lipoproteins (LDL) and that, at this location, the phenolic compounds efficiently protect LDL from oxidation and maintain LDL alpha-tocopherol at a high steady state concentration by recycling it back from the alpha-tocopheroxyl radical. To this end, human plasma was supplemented with wine procyanidins and isolated LDL were challenged with a constant flux of peroxyl radicals. As compared with LDL from plasma-free procyanidins, those LDL better resisted lipid oxidation and exhibited longer lag-phases of alpha-tocopherol consumption. The procyanidins, depending on their structure, were able to reduce the UV-induced alpha-tocopherol radical in a micellar system, as evidenced by electron paramagnetic ressonance. Mechanistically, the protection of LDL was interpreted in terms of quenching of peroxyl radicals and the recycling of alpha-tocopherol by the procyanidins bound to the lipoproteins. These results support the notion that, in human plasma, the procyanidins, via binding to LDL, may act as efficient local antioxidants.

摘要

膳食酚类化合物在体外可能具有抗氧化作用,但由于吸收过程中的结构修饰,其在足够高浓度下提供抗氧化保护的作用需要重新评估。我们探讨了这样一种假设,即红酒原花青素与低密度脂蛋白(LDL)相互作用,并且在这个位置,酚类化合物能有效保护LDL不被氧化,并通过从α-生育酚氧基自由基中回收α-生育酚,使其维持在高稳态浓度。为此,向人血浆中添加红酒原花青素,并使分离出的LDL受到恒定通量的过氧自由基的攻击。与不含原花青素血浆中的LDL相比,这些LDL对脂质氧化的抵抗力更强,并且α-生育酚消耗的滞后期更长。通过电子顺磁共振证明,原花青素根据其结构能够在胶束体系中还原紫外线诱导的α-生育酚自由基。从机制上讲,LDL的保护作用被解释为过氧自由基的淬灭以及与脂蛋白结合的原花青素对α-生育酚的回收。这些结果支持了这样一种观点,即在人血浆中,原花青素通过与LDL结合,可能作为有效的局部抗氧化剂发挥作用。

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