Amić Ana, Mastiľák Cagardová Denisa, Milanović Žiko
Department of Chemistry, Josip Juraj Strossmayer University of Osijek, Ulica cara Hadrijana 8A, 31000 Osijek, Croatia.
Institute of Physical Chemistry and Chemical Physics, Department of Chemical Physics, Slovak University of Technology in Bratislava, Radlinského 9, SK-812 37 Bratislava, Slovakia.
Int J Mol Sci. 2025 Jan 5;26(1):404. doi: 10.3390/ijms26010404.
In this study, the antioxidant and prooxidant potency of protocatechuic aldehyde (PCA) was evaluated using density functional theory (DFT). The potency of direct scavenging of hydroperoxyl (HOO) and lipid peroxyl radicals (modeled by vinyl peroxyl, HC=CHOO) involved in lipid peroxidation was estimated. The repair of oxidative damage in biomolecules (lipids, proteins and nucleic acids) and the prooxidant ability of PCA phenoxyl radicals were considered. The repairing potency of PCA was investigated for damaged tryptophan, cysteine, leucine, DNA base guanine and linolenic acid. The thermodynamics and kinetics of the single electron transfer (SET) and formal hydrogen atom transfer (fHAT) mechanisms underlying the studied processes were investigated under physiological conditions in aqueous and lipid environments using the SMD/M06-2X/6-311++G(d,p) level of theory. Sequestration of catalytic Fe and Fe ions by PCA, which prevents HO production via Fenton-like reactions, was modeled. Molecular docking was used to study the inhibitory capability of PCA against xanthine oxidase (XO), one of the enzymes producing reactive oxygen species. The attained results show that PCA has the capability to scavenge lipid peroxyl radicals, repair damaged tryptophan, leucine and guanine, chelate catalytic iron ions and inhibit XO. Thus, PCA could be considered a possible multifunctional antioxidant.
在本研究中,使用密度泛函理论(DFT)评估了原儿茶醛(PCA)的抗氧化和促氧化能力。估计了PCA对参与脂质过氧化的氢过氧自由基(HOO)和脂质过氧自由基(以乙烯基过氧自由基HC=CHOO为模型)的直接清除能力。考虑了PCA对生物分子(脂质、蛋白质和核酸)氧化损伤的修复以及PCA苯氧自由基的促氧化能力。研究了PCA对受损色氨酸、半胱氨酸、亮氨酸、DNA碱基鸟嘌呤和亚麻酸的修复能力。使用SMD/M06-2X/6-311++G(d,p)理论水平,在生理条件下的水性和脂质环境中研究了所研究过程背后的单电子转移(SET)和形式氢原子转移(fHAT)机制的热力学和动力学。模拟了PCA对催化性铁离子和亚铁离子的螯合作用,这可通过类芬顿反应防止羟基自由基(HO)的产生。使用分子对接研究了PCA对黄嘌呤氧化酶(XO)的抑制能力,XO是一种产生活性氧的酶。所得结果表明,PCA具有清除脂质过氧自由基、修复受损色氨酸、亮氨酸和鸟嘌呤、螯合催化性铁离子以及抑制XO的能力。因此,PCA可被认为是一种可能的多功能抗氧化剂。