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维生素E:被低估的抗氧化剂。

Vitamin E: underestimated as an antioxidant.

作者信息

Pfluger Paul, Kluth Dirk, Landes Nico, Bumke-Vogt Christiane, Brigelius-Flohé Regina

机构信息

Department of Vitamins and Atherosclerosis, German Institute of Human Nutrition, Potsdam-Rehbrücke, Germany.

出版信息

Redox Rep. 2004;9(5):249-54. doi: 10.1179/135100004225006740.

Abstract

Some 80 years after its discovery, vitamin E has experienced a renaissance which is as surprising as it is trivial. Although vitamin E is essential for reproduction, in rats at least, and deficiency causes neurological disorders in humans, the main interest in the last decades has concentrated on its antioxidant functions. This focus has highly underestimated the biological importance of vitamin E, which by far exceeds the need for acting as a radical scavenger. Only recently has it become clear that vitamin E can regulate cellular signaling and gene expression. Out of the eight different tocols included in the term vitamin E, alpha-tocopherol often exerts specific functions, which is also reflected in its selective recognition by proteins such as the alpha-tocopherol transfer protein and alpha-tocopherol-associated proteins. Vitamin E forms other than alpha-tocopherol are very actively metabolised, which explains their low biopotency. In vivo, metabolism may also attenuate the novel functions of gamma-tocopherol and tocotrienols observed in vitro. On the other hand, metabolites derived from individual forms of vitamin E have been shown to exert effects by themselves. This article focuses on the metabolism and novel functions of vitamin E with special emphasis on differential biological activities of individual vitamin E forms.

摘要

在维生素E被发现约80年后,它迎来了一次复兴,这既令人惊讶又微不足道。尽管维生素E对生殖至关重要,至少对大鼠来说是这样,而且缺乏维生素E会导致人类神经紊乱,但在过去几十年里,人们主要关注的是它的抗氧化功能。这种关注极大地低估了维生素E的生物学重要性,其重要性远远超过作为自由基清除剂的需求。直到最近才清楚,维生素E可以调节细胞信号传导和基因表达。在维生素E这一术语所包含的八种不同生育酚中,α-生育酚常常发挥特定功能,这也体现在它被诸如α-生育酚转运蛋白和α-生育酚相关蛋白等蛋白质选择性识别上。除α-生育酚之外的其他维生素E形式被非常活跃地代谢,这就解释了它们较低的生物活性。在体内,代谢也可能会减弱在体外观察到的γ-生育酚和生育三烯酚的新功能。另一方面,源自维生素E个别形式的代谢产物已被证明自身就能发挥作用。本文重点关注维生素E的代谢和新功能,特别强调个别维生素E形式的不同生物活性。

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