-生育酚是美国饮食中维生素E的主要形式,值得更多关注。

Q. Jiang, Stephan Christen, M. Shigenaga, B. Ames
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引用次数: 750

摘要

-生育酚是许多植物种子和美国饮食中维生素E的主要形式,但与组织中维生素E的主要形式和补充剂中的主要形式-生育酚相比,它引起的关注很少。然而,最近的研究表明,γ -生育酚可能对人体健康很重要,并且它具有与α -生育酚不同的独特特征。与α -生育酚相比,γ -生育酚似乎是亲脂性亲电试剂更有效的诱捕剂。-生育酚被很好地吸收,并在某些人体组织中大量积累;然而,它主要被代谢为2,7,8-三甲基-2-(β -羧基乙基)-6-羟色胺(γ - cehc),主要通过尿液排出。γ - cehc,而不是α -生育酚衍生的相应代谢物,具有可能具有生理重要性的尿钠活性。-生育酚和- cehc,而不是-生育酚,都能抑制环氧化酶活性,因此具有抗炎特性。一些人类和动物研究表明,血浆中γ -生育酚的浓度与心血管疾病和前列腺癌的发病率呈负相关。γ -生育酚及其代谢物的这些显著特征表明,γ -生育酚可能以以前未认识到的方式对人类健康作出重大贡献。这种可能性应该进一步评估,特别是考虑到高剂量的α -生育酚会消耗血浆和组织中的γ -生育酚,而补充γ -生育酚则会增加两者。本文综述了γ -生育酚的生物利用度、代谢、化学和非抗氧化活性方面的最新研究进展,以及有关γ -生育酚与心血管疾病和癌症之间关系的流行病学资料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
gamma-tocopherol, the major form of vitamin E in the US diet, deserves more attention.
gamma-tocopherol is the major form of vitamin E in many plant seeds and in the US diet, but has drawn little attention compared with alpha-tocopherol, the predominant form of vitamin E in tissues and the primary form in supplements. However, recent studies indicate that gamma-tocopherol may be important to human health and that it possesses unique features that distinguish it from alpha-tocopherol. gamma-Tocopherol appears to be a more effective trap for lipophilic electrophiles than is alpha-tocopherol. gamma-Tocopherol is well absorbed and accumulates to a significant degree in some human tissues; it is metabolized, however, largely to 2,7,8-trimethyl-2-(beta-carboxyethyl)-6-hydroxychroman (gamma-CEHC), which is mainly excreted in the urine. gamma-CEHC, but not the corresponding metabolite derived from alpha-tocopherol, has natriuretic activity that may be of physiologic importance. Both gamma-tocopherol and gamma-CEHC, but not alpha-tocopherol, inhibit cyclooxygenase activity and, thus, possess antiinflammatory properties. Some human and animal studies indicate that plasma concentrations of gamma-tocopherol are inversely associated with the incidence of cardiovascular disease and prostate cancer. These distinguishing features of gamma-tocopherol and its metabolite suggest that gamma-tocopherol may contribute significantly to human health in ways not recognized previously. This possibility should be further evaluated, especially considering that high doses of alpha-tocopherol deplete plasma and tissue gamma-tocopherol, in contrast with supplementation with gamma-tocopherol, which increases both. We review current information on the bioavailability, metabolism, chemistry, and nonantioxidant activities of gamma-tocopherol and epidemiologic data concerning the relation between gamma-tocopherol and cardiovascular disease and cancer.
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