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吡喃花色苷多重自由基清除反应的理论研究

Theoretical Study on the Multiple Free Radical Scavenging Reactions of Pyranoanthocyanins.

作者信息

Du Yapeng, Chai Yu, Zheng Xiaoping, Zheng Yanzhen

机构信息

College of Ocean Food and Biological Engineering, Jimei University, Xiamen 361021, China.

出版信息

Antioxidants (Basel). 2023 Dec 22;13(1):33. doi: 10.3390/antiox13010033.

Abstract

The free radical trapping capacities of multiple pyranoanthocyanins in wine storage and ageing were theoretically explored by density functional theory (DFT) methods. Intramolecular hydrogen bonds were detected in all pyranoanthocyanins, and the planarity of the compounds worsened with an increasing dielectric constant in the environment. Solvents significantly influenced the reaction enthalpies; thus, the preferred thermodynamic mechanisms of the free radical scavenging reactions were modified in different phases. This study incorporates hydrogen atom transfer (HAT), proton loss (PL), electron transfer (ET) reactions, and demethylation (De) of methoxy group mechanisms. The three pyranoanthocyanins have the capacity to capture n+1 free radicals, where n represents the number of methoxy groups. In the gas phase, they prefer employing the n-De-HAT mechanism on the guaiacyl moiety of the B ring, resulting in the formation of a stable quinone or a quinone radical to scavenge free radicals. In the benzene phase, pyranoanthocyanins trap free radicals via a PL-n-De-HAT mechanism. In the water phase, the targeted pyranoanthocyanins may dissociate in the form of carboxylate and tend to utilize the n-PL-n-De-ET mechanism, where n and n represent the number of phenolic groups and methoxy groups, respectively, facilitating multiple H/e reactions.

摘要

采用密度泛函理论(DFT)方法从理论上探讨了多种吡喃花色苷在葡萄酒储存和陈酿过程中的自由基捕获能力。在所有吡喃花色苷中均检测到分子内氢键,且随着环境介电常数的增加,化合物的平面性变差。溶剂对反应焓有显著影响;因此,在不同相中自由基清除反应的首选热力学机制发生了改变。本研究纳入了氢原子转移(HAT)、质子损失(PL)、电子转移(ET)反应以及甲氧基脱甲基(De)机制。三种吡喃花色苷有能力捕获n + 1个自由基,其中n代表甲氧基的数量。在气相中,它们更倾向于在B环的愈创木基部分采用n - De - HAT机制,从而形成稳定的醌或醌自由基来清除自由基。在苯相中,吡喃花色苷通过PL - n - De - HAT机制捕获自由基。在水相中,目标吡喃花色苷可能以羧酸盐的形式解离,并倾向于利用n - PL - n - De - ET机制,其中n和n分别代表酚羟基和甲氧基的数量,促进多个H/e反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91cd/10812497/9d1c9bc8812c/antioxidants-13-00033-g001.jpg

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