Hunyadi Attila, Agbadua Orinhamhe G, Takács Gábor, Balogh Gyorgy T
Institute of Pharmacognosy, Interdisciplinary Excellence Centre, University of Szeged, Szeged, Hungary; Interdisciplinary Centre for Natural Products, University of Szeged, Szeged, Hungary.
Institute of Pharmacognosy, Interdisciplinary Excellence Centre, University of Szeged, Szeged, Hungary.
Vitam Horm. 2023;121:81-108. doi: 10.1016/bs.vh.2022.09.003. Epub 2022 Nov 12.
The term "scavengome" refers to the chemical space of all the metabolites that may be formed from an antioxidant upon scavenging reactive oxygen or nitrogen species (ROS/RNS). This chemical space covers a wide variety of free radical metabolites with drug discovery potential. It is very rich in structures representing an increased chemical complexity as compared to the parent antioxidant: a wide range of unusual heterocyclic structures, new CC bonds, etc. may be formed. Further, in a biological environment, this increased chemical complexity is directly translated from the localized conditions of oxidative stress that determines the amounts and types of ROS/RNS present. Biomimetic oxidative chemistry provides an excellent tool to model chemical reactions between antioxidants and ROS/RNS. In this chapter, we provide an overview on the known metabolites obtained by biomimetic oxidation of a few selected natural antioxidants, i.e., a stilbene (resveratrol), a pair of hydroxycinnamates (caffeic acid and methyl caffeate), and a flavonol (quercetin), and discuss the drug discovery perspectives of the related chemical space.
“清除代谢组”一词指的是抗氧化剂在清除活性氧或氮物种(ROS/RNS)时可能形成的所有代谢物的化学空间。这个化学空间涵盖了具有药物发现潜力的多种自由基代谢物。与母体抗氧化剂相比,它富含代表化学复杂性增加的结构:可能形成各种不寻常的杂环结构、新的碳 - 碳键等。此外,在生物环境中,这种增加的化学复杂性直接源于氧化应激的局部条件,而氧化应激决定了存在的ROS/RNS的数量和类型。仿生氧化化学为模拟抗氧化剂与ROS/RNS之间的化学反应提供了一个极好的工具。在本章中,我们概述了通过对几种选定的天然抗氧化剂进行仿生氧化而获得的已知代谢物,即一种芪类化合物(白藜芦醇)、一对羟基肉桂酸(咖啡酸和咖啡酸甲酯)以及一种黄酮醇(槲皮素),并讨论了相关化学空间的药物发现前景。