van Acker S A, de Groot M J, van den Berg D J, Tromp M N, Donné-Op den Kelder G, van der Vijgh W J, Bast A
Leiden/Amsterdam Center for Drug Research, Department of Pharmacochemistry, Faculty of Chemistry, Vrije Universiteit, Amsterdam, The Netherlands.
Chem Res Toxicol. 1996 Dec;9(8):1305-12. doi: 10.1021/tx9600964.
Flavonoids are a group of naturally occurring antioxidants, which over the past years have gained tremendous interest because of their possible therapeutic applicability. The mechanism of their antioxidant activity has been extensively studied over several decades. However, there is still much confusion about the molecular mechanism of radical scavenging and the relationship between structure and activity. Therefore, we have calculated the heat of formation and the geometry of both the parent compound and the corresponding radical using the ab initio program GAMESS. We have compared their differences in energy in order to gain insight into the stability of the radical and the ease with which it is formed. We have also investigated the spin density of the radical, to determine the delocalization possibilities. These calculated data were compared with experimental data from ESR (hyperfine coupling constants) and electrochemical oxidation (Ep/2) and were found to be in good agreement. By comparing the geometries of several flavonoids, we were able to explain the structural dependency of the antioxidant action of these compounds. The extremely good antioxidant activity of the flavonols could be explained by the formation of an intramolecular hydrogen bond.
黄酮类化合物是一类天然存在的抗氧化剂,在过去几年中,因其可能的治疗应用而备受关注。几十年来,对其抗氧化活性机制进行了广泛研究。然而,关于自由基清除的分子机制以及结构与活性之间的关系仍存在诸多困惑。因此,我们使用从头算程序GAMESS计算了母体化合物及其相应自由基的生成热和几何结构。我们比较了它们的能量差异,以深入了解自由基的稳定性及其形成的难易程度。我们还研究了自由基的自旋密度,以确定离域可能性。将这些计算数据与电子顺磁共振(超精细偶合常数)和电化学氧化(Ep/2)的实验数据进行比较,发现吻合良好。通过比较几种黄酮类化合物的几何结构,我们能够解释这些化合物抗氧化作用的结构依赖性。黄酮醇极高的抗氧化活性可以通过分子内氢键的形成来解释。