Milanović Žiko, Dimić Dušan, Avdović Edina H, Simijonović Dušica M, Nakarada Đura, Jakovljević Vladimir, Vojinović Radiša, Marković Zoran S
Department of Science, Institute for Information Technologies, University of Kragujevac, Liceja Kneževine Srbije 1A, 34000 Kragujevac, Serbia.
Faculty of Physical Chemistry, University of Belgrade, Studentski trg 12-16, 11000 Belgrade, Serbia.
Antioxidants (Basel). 2024 Jan 24;13(2):143. doi: 10.3390/antiox13020143.
As part of this study, the mechanisms of the antioxidant activity of previously synthesized coumarin-trihydrobenzohydrazine derivatives were investigated: ()-2,4-dioxo-3-(1-(2-(2″,3″,4″-trihydroxybenzoyl)hydrazineyl)ethylidene)chroman-7-yl acetate () and ()-2,4-dioxo-3-(1-(2-(3″,4″,5″-trihydroxybenzoyl)hydrazineyl)ethylidene)chroman-7-yl acetate (). The capacity of the compounds to neutralize HO was assessed by EPR spectroscopy. The standard mechanisms of antioxidant action, Hydrogen Atom Transfer (HAT), Sequential Proton Loss followed by Electron Transfer (SPLET), Single-Electron Transfer followed by Proton Transfer (SET-PT), and Radical Adduct/Coupling Formation (RAF/RCF) were examined using the QM-ORSA methodology. It was estimated that the newly synthesized compounds, under physiological conditions, exhibited antiradical activity via SPLET and RCF mechanisms. Based on the estimated overall rate constants (), it can be concluded that exhibited a greater antiradical capacity. The obtained values indicated a good correlation with the EPR spectroscopy results. Both compounds exhibit approximately 1.5 times more activity in comparison to the precursor compound used in the synthesis (gallic acid).
作为本研究的一部分,对先前合成的香豆素 - 三羟基苯甲酰肼衍生物的抗氧化活性机制进行了研究:() - 2,4 - 二氧代 - 3 - (1 - (2 - (2″,3″,4″ - 三羟基苯甲酰基)肼基)亚乙基)色满 - 7 - 基乙酸酯()和() - 2,4 - 二氧代 - 3 - (1 - (2 - (3″,4″,5″ - 三羟基苯甲酰基)肼基)亚乙基)色满 - 7 - 基乙酸酯()。通过电子顺磁共振光谱法评估化合物中和羟基自由基(HO)的能力。使用量子力学 - 轨道对称适应微扰理论(QM - ORSA)方法研究了抗氧化作用的标准机制,即氢原子转移(HAT)、质子依次损失后电子转移(SPLET)、单电子转移后质子转移(SET - PT)以及自由基加合物/偶联形成(RAF/RCF)。据估计,新合成的化合物在生理条件下通过SPLET和RCF机制表现出抗自由基活性。根据估计的总速率常数(),可以得出结论,表现出更大的抗自由基能力。所得值与电子顺磁共振光谱结果显示出良好的相关性。与合成中使用的前体化合物(没食子酸)相比,这两种化合物的活性均高出约1.5倍。