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褪黑素作为一种抗氧化剂:人体中的生化机制及病理生理学意义

Melatonin as an antioxidant: biochemical mechanisms and pathophysiological implications in humans.

作者信息

Reiter Russel J, Tan Dun-Xian, Mayo Juan C, Sainz Rosa M, Leon Josefa, Czarnocki Zbigniew

机构信息

Department of Cellular and Structural Biology, University of Texas Health Science Center, San Antonio, Texas, U.S.A.

出版信息

Acta Biochim Pol. 2003;50(4):1129-46.

Abstract

This brief resume enumerates the multiple actions of melatonin as an antioxidant. This indoleamine is produced in the vertebrate pineal gland, the retina and possibly some other organs. Additionally, however, it is found in invertebrates, bacteria, unicellular organisms as well as in plants, all of which do not have a pineal gland. Melatonin's functions as an antioxidant include: a), direct free radical scavenging, b), stimulation of antioxidative enzymes, c), increasing the efficiency of mitochondrial oxidative phosphorylation and reducing electron leakage (thereby lowering free radical generation), and 3), augmenting the efficiency of other antioxidants. There may be other functions of melatonin, yet undiscovered, which enhance its ability to protect against molecular damage by oxygen and nitrogen-based toxic reactants. Numerous in vitro and in vivo studies have documented the ability of both physiological and pharmacological concentrations to melatonin to protect against free radical destruction. Furthermore, clinical tests utilizing melatonin have proven highly successful; because of the positive outcomes of these studies, melatonin's use in disease states and processes where free radical damage is involved should be increased.

摘要

本简要概述列举了褪黑素作为抗氧化剂的多种作用。这种吲哚胺在脊椎动物的松果体、视网膜以及可能的其他一些器官中产生。然而,此外,它还存在于无脊椎动物、细菌、单细胞生物以及植物中,而这些生物都没有松果体。褪黑素作为抗氧化剂的功能包括:a)直接清除自由基,b)刺激抗氧化酶,c)提高线粒体氧化磷酸化效率并减少电子泄漏(从而降低自由基生成),以及d)增强其他抗氧化剂的效率。褪黑素可能还有其他尚未被发现的功能,这些功能增强了其抵御基于氧和氮的有毒反应物造成分子损伤的能力。大量的体外和体内研究记录了生理浓度和药理浓度的褪黑素防止自由基破坏的能力。此外,使用褪黑素的临床试验已证明非常成功;由于这些研究的积极结果,应增加褪黑素在涉及自由基损伤的疾病状态和过程中的应用。

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