Núcleo de Estudos e Seleção de Moléculas Bioativas, Instituto de Ciências da Saúde, Universidade Federal do Pará, Belém, PA, 66075-110, Brazil.
Campus Binacional, Universidade Federal do Amapá, Oiapoque, AP, 68980-000, Brazil.
J Mol Model. 2020 Oct 25;26(11):318. doi: 10.1007/s00894-020-04580-5.
A hypothetical study by using molecular modeling for antioxidant capacity of kojic acid derivatives was performed using quantum chemistry calculations by DFT/B3LYP/6-311++G(3d,2p). Four modification approaches were considered namely simplification, functional modifications, ring regioisomerism, and hydroxylation. Molecular orbitals, single-electron transfers, hydrogen atom transfers, and spin density distributions were used for antioxidant prediction. In accordance with HOMO, LUMO, Gap, ionization potential, bond dissociation energy, and stabilization energy, the molecular simplifications of kojic acid show that enol moiety is more important for antioxidant capacity than alcohol group. Few molecular modifications on alcohol or enol position were more potent than kojic acid. The π conjugation system among ether, alkene, and hydroxyl moieties can be involved on resonance effects of better compounds. A different performance was observed on alcohol molecular modifications when compared to enol position. All lactone derivatives were more potent than kojic acid on both mechanisms, and their hydroxylated derivatives were more potent than ascorbic acid. In conclusion, the ring regioisomers and its hydroxylated derivatives have better antioxidant capacity than kojic acid. Graphical Abstract The theoretical study using molecular modeling for antioxidant capacity prediction of kojic acid was more related to enol moiety than alcohol. The regioisomerism and hybrid derivatives show that the lactone derivatives increase antioxidant capacity more than the pyrone derivatives.
采用量子化学计算 DFT/B3LYP/6-311++G(3d,2p),对曲酸衍生物的抗氧化能力进行了假设性的分子建模研究。考虑了四种修饰方法,即简化、功能修饰、环位置异构和羟化。分子轨道、单电子转移、氢原子转移和自旋密度分布用于抗氧化预测。根据 HOMO、LUMO、间隙、电离势、键离解能和稳定能,曲酸的分子简化表明,烯醇部分比醇基对抗氧化能力更为重要。醇或烯醇位置的一些分子修饰比曲酸更有效。醚、烯烃和羟基之间的π共轭系统可以参与更好化合物的共振效应。与烯醇位置相比,在醇分子修饰上观察到不同的性能。所有内酯衍生物在这两种机制上都比曲酸更有效,其羟基衍生物比抗坏血酸更有效。总之,与曲酸相比,环位置异构体及其羟基衍生物具有更好的抗氧化能力。