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在超营养维生素 E 补充后,α-生育酚在线粒体和微粒体中的掺入。

α-Tocopherol incorporation in mitochondria and microsomes upon supranutritional vitamin E supplementation.

机构信息

Department of Animal Science, Faculty of Science and Technology, Aarhus University, P.O. Box 50, 8830, Tjele, Denmark,

出版信息

Genes Nutr. 2012 Oct;7(4):475-82. doi: 10.1007/s12263-012-0286-6. Epub 2012 Feb 22.

Abstract

Vitamin E (α-tocopherol) is a major lipid-soluble chain-breaking antioxidant in humans and mammals and plays an important role in normal development and physiology. The localization of α-tocopherol within the highly unsaturated phospholipid bilayer of cell membranes provides a means of controlling lipid oxidation at the initiation site. Mitochondria are the site for major oxidative processes and are important in fat oxidation and energy production, but a side effect is leakage of reactive oxygen species. Thus, incorporation of α-tocopherol and other antioxidants into mitochondria and other cellular compartments is important in order to maintain oxidative stability of the membrane-bound lipids and prevent damage from the reactive oxygen species. Many studies regarding mitochondrial disease and dysfunction have been performed in relation to deficiency of vitamin E and other antioxidants, whereas relatively sparse information is available regarding the eventual beneficial effects of antioxidant-enriched mitochondria in terms of health and function. This may be due to the fact that only little scientific information is available concerning the effect of supranutritional supplementation with antioxidants on their incorporation into mitochondria and other cellular membranes. The purpose of this review is therefore to briefly summarize experimental data performed with dietary vitamin E treatments in relation to the deposition of α-tocopherol in mitochondria and microsomes.

摘要

维生素 E(α-生育酚)是人类和哺乳动物中主要的脂溶性链断裂抗氧化剂,在正常发育和生理中发挥重要作用。α-生育酚在细胞膜的高度不饱和磷脂双层内的定位为控制起始部位的脂质氧化提供了一种手段。线粒体是主要氧化过程的场所,在脂肪氧化和能量产生中很重要,但副作用是活性氧物质的泄漏。因此,将 α-生育酚和其他抗氧化剂掺入线粒体和其他细胞隔室对于维持膜结合脂质的氧化稳定性和防止来自活性氧物质的损伤很重要。已经进行了许多关于线粒体疾病和功能障碍的研究,这些研究与维生素 E 和其他抗氧化剂的缺乏有关,而关于富含抗氧化剂的线粒体在健康和功能方面的最终有益效果的信息相对较少。这可能是因为关于抗氧化剂的超营养补充对其掺入线粒体和其他细胞膜的影响的科学信息很少。因此,本篇综述的目的是简要总结与α-生育酚在线粒体和微粒体中的沉积有关的饮食维生素 E 处理的实验数据。

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