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褪黑素在抗氧化防御系统中的意义:反应与产物

Significance of melatonin in antioxidative defense system: reactions and products.

作者信息

Tan D X, Manchester L C, Reiter R J, Qi W B, Karbownik M, Calvo J R

机构信息

Department of Cellular and Structural Biology, The University of Texas Health Science Center, San Antonio, TX 78229-3900, USA.

出版信息

Biol Signals Recept. 2000 May-Aug;9(3-4):137-59. doi: 10.1159/000014635.

Abstract

Melatonin is a potent endogenous free radical scavenger, actions that are independent of its many receptor-mediated effects. In the last several years, hundreds of publications have confirmed that melatonin is a broad-spectrum antioxidant. Melatonin has been reported to scavenge hydrogen peroxide (H(2)O(2)), hydroxyl radical (HO(.)), nitric oxide (NO(.)), peroxynitrite anion (ONOO(-)), hypochlorous acid (HOCl), singlet oxygen ((1)O(2)), superoxide anion (O(2)(-).) and peroxyl radical (LOO(.)), although the validity of its ability to scavenge O(2)(-). and LOO(.) is debatable. Regardless of the radicals scavenged, melatonin prevents oxidative damage at the level of cells, tissues, organs and organisms. The antioxidative mechanisms of melatonin seem different from classical antioxidants such as vitamin C, vitamin E and glutathione. As electron donors, classical antioxidants undergo redox cycling; thus, they have the potential to promote oxidation as well as prevent it. Melatonin, as an electron-rich molecule, may interact with free radicals via an additive reaction to form several stable end-products which are excreted in the urine. Melatonin does not undergo redox cycling and, thus, does not promote oxidation as shown under a variety of experimental conditions. From this point of view, melatonin can be considered a suicidal or terminal antioxidant which distinguishes it from the opportunistic antioxidants. Interestingly, the ability of melatonin to scavenge free radicals is not in a ratio of mole to mole. Indeed, one melatonin molecule scavenges two HO. Also, its secondary and tertiary metabolites, for example, N(1)-acetyl-N(2)-formyl-5-methoxykynuramine, N-acetyl-5-methoxykynuramine and 6-hydroxymelatonin, which are believed to be generated when melatonin interacts with free radicals, are also regarded as effective free radical scavengers. The continuous free radical scavenging potential of the original molecule (melatonin) and its metabolites may be defined as a scavenging cascade reaction. Melatonin also synergizes with vitamin C, vitamin E and glutathione in the scavenging of free radicals. Melatonin has been detected in vegetables, fruits and a variety of herbs. In some plants, especially in flowers and seeds (the reproductive organs which are most vulnerable to oxidative insults), melatonin concentrations are several orders of magnitude higher than measured in the blood of vertebrates. Melatonin in plants not only provides an alternative exogenous source of melatonin for herbivores but also suggests that melatonin may be an important antioxidant in plants which protects them from a hostile environment that includes extreme heat, cold and pollution, all of which generate free radicals.

摘要

褪黑素是一种强大的内源性自由基清除剂,其作用独立于其众多受体介导的效应。在过去几年中,数百篇出版物证实褪黑素是一种广谱抗氧化剂。据报道,褪黑素能清除过氧化氢(H₂O₂)、羟自由基(HO·)、一氧化氮(NO·)、过氧亚硝酸根阴离子(ONOO⁻)、次氯酸(HOCl)、单线态氧(¹O₂)、超氧阴离子(O₂⁻·)和过氧自由基(LOO·),尽管其清除O₂⁻·和LOO·的能力的有效性存在争议。无论清除何种自由基,褪黑素都能在细胞、组织、器官和生物体水平上预防氧化损伤。褪黑素的抗氧化机制似乎不同于维生素C、维生素E和谷胱甘肽等经典抗氧化剂。作为电子供体,经典抗氧化剂会经历氧化还原循环;因此,它们既有促进氧化的潜力,也有预防氧化的作用。褪黑素作为一种富含电子的分子,可能通过加成反应与自由基相互作用,形成几种稳定的终产物,这些终产物会随尿液排出。在各种实验条件下,褪黑素都不会经历氧化还原循环,因此不会促进氧化。从这个角度来看,褪黑素可被视为一种自杀性或终末抗氧化剂,这使其有别于机会主义抗氧化剂。有趣的是,褪黑素清除自由基的能力并非以摩尔比来衡量。实际上,一个褪黑素分子能清除两个HO·。此外,其二级和三级代谢产物,例如N¹-乙酰-N²-甲酰基-5-甲氧基犬尿胺、N-乙酰-5-甲氧基犬尿胺和6-羟基褪黑素,据信是褪黑素与自由基相互作用时产生的,它们也被视为有效的自由基清除剂。原始分子(褪黑素)及其代谢产物持续的自由基清除潜力可被定义为一种清除级联反应。褪黑素在清除自由基方面还与维生素C、维生素E和谷胱甘肽协同作用。在蔬菜、水果和各种草药中都检测到了褪黑素。在一些植物中,尤其是花朵和种子(最易受到氧化损伤的生殖器官)中,褪黑素的浓度比在脊椎动物血液中测得的浓度高出几个数量级。植物中的褪黑素不仅为食草动物提供了一种额外的外源性褪黑素来源,还表明褪黑素可能是植物中的一种重要抗氧化剂,可保护它们免受包括酷热、严寒和污染在内的恶劣环境的影响,所有这些都会产生自由基。

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