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褪黑素作为对抗氧化应激的天然盟友:物理化学研究

Melatonin as a natural ally against oxidative stress: a physicochemical examination.

机构信息

Departamento de Química. Universidad Autónoma Metropolitana-Iztapalapa. Col. Vicentina. Iztapalapa. México D. F. México.

出版信息

J Pineal Res. 2011 Aug;51(1):1-16. doi: 10.1111/j.1600-079X.2011.00916.x.

Abstract

Oxidative stress has been proven to be related to the onset of a large number of health disorders. This chemical stress is triggered by an excess of free radicals, which are generated in cells because of a wide variety of exogenous and endogenous processes. Therefore, finding strategies for efficiently detoxifying free radicals has become a subject of a great interest, from both an academic and practical points of view. Melatonin is a ubiquitous and versatile molecule that exhibits most of the desirable characteristics of a good antioxidant. The amount of data gathered so far regarding the protective action of melatonin against oxidative stress is overwhelming. However, rather little is known concerning the chemical mechanisms involved in this activity. This review summarizes the current progress in understanding the physicochemical insights related to the free radical-scavenging activity of melatonin. Thus far, there is a general agreement that electron transfer and hydrogen transfer are the main mechanisms involved in the reactions of melatonin with free radicals. However, the relative importance of other mechanisms is also analyzed. The chemical nature of the reacting free radical also has an influence on the relative importance of the different mechanisms of these reactions. Therefore, this point has also been discussed in detail in the current review. Based on the available data, it is concluded that melatonin efficiently protects against oxidative stress by a variety of mechanisms. Moreover, it is proposed that even though it has been referred to as the chemical expression of darkness, perhaps it could also be referred to as the chemical light of health.

摘要

氧化应激已被证明与大量健康障碍的发生有关。这种化学应激是由自由基过量引起的,自由基是由于各种外源性和内源性过程在细胞中产生的。因此,寻找有效解毒自由基的策略已成为一个非常感兴趣的课题,从学术和实践的角度来看都是如此。褪黑素是一种普遍存在且多功能的分子,它表现出作为一种良好抗氧化剂的大多数理想特性。迄今为止,关于褪黑素对氧化应激的保护作用所积累的数据是压倒性的。然而,对于涉及这种活性的化学机制,人们知之甚少。这篇综述总结了目前对理解与褪黑素自由基清除活性相关的物理化学见解的研究进展。到目前为止,人们普遍认为电子转移和氢转移是褪黑素与自由基反应的主要机制。然而,其他机制的相对重要性也进行了分析。反应性自由基的化学性质也会影响这些反应中不同机制的相对重要性。因此,这一点在当前的综述中也进行了详细讨论。基于现有数据,结论是褪黑素通过多种机制有效地抵抗氧化应激。此外,有人提出,尽管褪黑素被称为黑暗的化学表现形式,但它也可以被称为健康的化学之光。

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