Department of Theoretical Chemistry, Faculty of Chemistry, A Mickiewicz University ul Grunwaldzka 6, 60-780 Poznań, Poland.
Eur J Med Chem. 2010 Mar;45(3):1015-27. doi: 10.1016/j.ejmech.2009.11.044. Epub 2009 Nov 27.
Quantum calculations based on the density functional theory (DFT) have been employed to study the relation between the structure and antioxidant activity of trans-resveratrol (TR), cis-resveratrol (CR), trans-4.4'-dihydroxystilbene (trans-4,4'-DHS), trans-3,4-dihydroxystilbene (trans-3,4-DHS), trans-3,4,4'-trihydroxystilbene (trans-3,4,4'-THS), trans-3,4,5-trihydroxystilbene (trans-3,4,5-THS) and alpha,beta-dihydro-3,4',5-trihydroxystilbene (alpha,beta-dihydro-3,4',5-THS) in the gas phase and water environment. We have shown that the antioxidant activity of trans-stereoisomers of the compounds considered is related to their phenoxy radicals showing a planar and semiquinone conformation that allows delocalization of the unpaired electron through the whole trans-stilbene skeleton. The calculations have revealed that trans-3,4-DHS, trans-3,4,4'-THS, trans-3,4,5-THS and trans-4,4'-DHS exhibit higher antioxidant activity than TR, while alpha,beta-dihydro-3,4',5-THS and CR are less efficient antioxidants than TR. We have proved that all compounds have higher ability to donate hydrogen atom in the gas phase than in the presence of water medium in which they are very sensitive to electron donation. The results obtained demonstrate that the H-transfer mechanism for scavenging of the free radicals is more preferable than the single-electron transfer in both types of environment. They are consistent with the experiments confirming the specific biological activity of the compounds considered.
基于密度泛函理论(DFT)的量子计算被用于研究反式白藜芦醇(TR)、顺式白藜芦醇(CR)、trans-4,4'-二羟基二苯乙烯(trans-4,4'-DHS)、trans-3,4-二羟基二苯乙烯(trans-3,4-DHS)、trans-3,4,4'-三羟基二苯乙烯(trans-3,4,4'-THS)、trans-3,4,5-三羟基二苯乙烯(trans-3,4,5-THS)和α,β-二氢-3,4',5-三羟基二苯乙烯(α,β-二氢-3,4',5-THS)在气相和水环境中的结构与抗氧化活性之间的关系。我们表明,所考虑化合物的反式异构体的抗氧化活性与其酚氧基自由基有关,这些自由基呈现平面和半醌式构象,允许未配对电子通过整个反式二苯乙烯骨架离域。计算结果表明,trans-3,4-DHS、trans-3,4,4'-THS、trans-3,4,5-THS 和 trans-4,4'-DHS 比 TR 具有更高的抗氧化活性,而α,β-二氢-3,4',5-THS 和 CR 则比 TR 具有更低的抗氧化活性。我们已经证明,所有化合物在气相中比在存在水介质中具有更高的氢原子供体能力,在水中介质中它们非常容易发生电子供体。结果表明,在两种环境中,清除自由基的 H 转移机制比单电子转移更可取。这些结果与实验一致,实验证实了所考虑化合物的特定生物活性。