Department of Biochemical and Medical Sciences, State University of Novi Pazar, Vuka Karadzića bb, Novi Pazar 36300, Republic of Serbia.
J Phys Chem A. 2009 Dec 24;113(51):14170-9. doi: 10.1021/jp907071v.
Antioxidative properties of naturally occurring flavon-3-ol, fisetin, were examined by both cyclic voltammetry and quantum-chemical based calculations. The three voltametrically detectable consecutive steps, reflected the fisetin molecular structure, catecholic structural unit in the ring B, C3-OH, and C7-OH groups in the rings C and A. Oxidation potential values, used as quantitative parameter in determining its oxidation capability, indicated good antioxidative properties found with this molecule. Oxidation of the C3'C4' dixydroxy moiety at the B ring occurred first at the lowest positive potentials. The first oxidation step induced fast intramolecular transformations in which the C3 hydroxy group disappeared and the product of this transformation participated in the second oxidation step. The highest potential of oxidation was attributed to the oxidation of C7 hydroxy group. The structural and electronic features of fisetin were investigated at the B3LYP/6-311++G** level of theory. Particularly, the interest was focused on the C3' and C4'-OH sites in the B ring and on C3-OH site in the C ring. The calculated bond dissociation enthalpy values for all OH sites of fisetin clearly indicated the importance of the B ring and C3' and C4'-OH group. The importance of keto-enol tautomerism has also been considered. The analysis also included the Mulliken spin density distribution for the radicals formed after H removal on each OH site. The results showed the higher values of the BDE on the C7-OH and C3-OH sites.
采用循环伏安法和基于量子化学的计算方法研究了天然黄酮醇 fisetin 的抗氧化性质。在伏安法中可检测到的三个连续步骤反映了 fisetin 的分子结构、B 环中的邻苯二酚结构单元、C3-OH 和 C7-OH 基团在 C 环和 A 环中的位置。作为确定其氧化能力的定量参数的氧化电位值表明,该分子具有良好的抗氧化性能。B 环中 C3'C4'二羟基部分的氧化首先在最正的电位下发生。第一步氧化诱导了快速的分子内转化,其中 C3 羟基消失,该转化的产物参与第二步氧化。氧化的最高电位归因于 C7 羟基的氧化。在 B3LYP/6-311++G**理论水平上研究了 fisetin 的结构和电子特征。特别关注 B 环中的 C3'和 C4'-OH 位点以及 C 环中的 C3-OH 位点。fisetin 所有 OH 位点的计算键离解焓值清楚地表明了 B 环和 C3'和 C4'-OH 基团的重要性。酮-烯醇互变异构的重要性也得到了考虑。分析还包括在每个 OH 位点上 H 去除后形成的自由基的 Mulliken 自旋密度分布。结果表明,C7-OH 和 C3-OH 位点的 BDE 值较高。