Departamento de Química, Universidad Autónoma Metropolitana-Iztapalapa, México City, México.
Department of Cellular and Structural Biology, UT Health Science Center, San Antonio, TX, USA.
J Pineal Res. 2018 Aug;65(1):e12514. doi: 10.1111/jpi.12514.
Oxidative stress (OS) represents a threat to the chemical integrity of biomolecules including lipids, proteins, and DNA. The associated molecular damage frequently results in serious health issues, which justifies our concern about this phenomenon. In addition to enzymatic defense mechanisms, there are compounds (usually referred to as antioxidants) that offer chemical protection against oxidative events. Among them, melatonin and its metabolites constitute a particularly efficient chemical family. They offer protection against OS as individual chemical entities through a wide variety of mechanisms including electron transfer, hydrogen transfer, radical adduct formation, and metal chelation, and by repairing biological targets. In fact, many of them including melatonin can be classified as multipurpose antioxidants. However, what seems to be unique to the melatonin's family is their collective effects. Because the members of this family are metabolically related, most of them are expected to be present in living organisms wherever melatonin is produced. Therefore, the protection exerted by melatonin against OS may be viewed as a result of the combined antioxidant effects of the parent molecule and its metabolites. Melatonin's family is rather exceptional in this regard, offering versatile and collective antioxidant protection against OS. It certainly seems that melatonin is one of the best nature's defenses against oxidative damage.
氧化应激(OS)代表了对生物分子(包括脂质、蛋白质和 DNA)化学完整性的威胁。相关的分子损伤经常导致严重的健康问题,这使得我们对这种现象感到担忧。除了酶防御机制外,还有一些化合物(通常称为抗氧化剂)可以提供针对氧化事件的化学保护。其中,褪黑素及其代谢物构成了一个特别有效的化学家族。它们通过多种机制提供针对 OS 的保护,包括电子转移、氢转移、自由基加合物形成和金属螯合,以及修复生物靶标。事实上,其中许多物质,包括褪黑素,可以被归类为多用途抗氧化剂。然而,褪黑素家族的独特之处似乎在于它们的集体效应。由于该家族的成员在代谢上是相关的,因此预计只要在产生褪黑素的地方,大多数成员都会存在于生物体中。因此,褪黑素对 OS 发挥的保护作用可以被视为母体分子及其代谢物的联合抗氧化作用的结果。在这方面,褪黑素家族是相当特殊的,它提供了针对 OS 的多方面和集体抗氧化保护。显然,褪黑素是对抗氧化损伤的最佳天然防御之一。