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酚酸中甲氧基、酚羟基和羧基的结构-抗氧化活性关系。

Structure-antioxidant activity relationship of methoxy, phenolic hydroxyl, and carboxylic acid groups of phenolic acids.

机构信息

School of Chemical Engineering and Technology, North University of China, Taiyuan, 030051, China.

Department of Chemistry and Chemical Engineering, Inha University, Incheon, 22212, Korea.

出版信息

Sci Rep. 2020 Feb 13;10(1):2611. doi: 10.1038/s41598-020-59451-z.

Abstract

The antioxidant activities of 18 typical phenolic acids were investigated using 2, 2'-diphenyl-1-picrylhydrazyl (DPPH) and ferric ion reducing antioxidant power (FRAP) assays. Five thermodynamic parameters involving hydrogen atom transfer (HAT), single-electron transfer followed by proton transfer (SET-PT), and sequential proton-loss electron transfer (SPLET) mechanisms were calculated using density functional theory with the B3LYP/UB3LYP functional and 6-311++G (d, p) basis set and compared in the phenolic acids. Based on the same substituents on the benzene ring, -CHCOOH and -CH = CHCOOH can enhance the antioxidant activities of phenolic acids, compared with -COOH. Methoxyl (-OCH) and phenolic hydroxyl (-OH) groups can also promote the antioxidant activities of phenolic acids. These results relate to the O-H bond dissociation enthalpy of the phenolic hydroxyl group in phenolic acids and the values of proton affinity and electron transfer enthalpy (ETE) involved in the electron donation ability of functional groups. In addition, we speculated that HAT, SET-PT, and SPLET mechanisms may occur in the DPPH reaction system. Whereas SPLET was the main reaction mechanism in the FRAP system, because, except for 4-hydroxyphenyl acid, the ETE values of the phenolic acids in water were consistent with the experimental results.

摘要

采用 2,2-二苯基-1-苦基肼基(DPPH)自由基清除法和铁离子还原抗氧化能力(FRAP)法测定了 18 种典型酚酸的抗氧化活性。利用密度泛函理论(B3LYP/UB3LYP 泛函和 6-311++G(d,p)基组)计算了涉及氢原子转移(HAT)、单电子转移后质子转移(SET-PT)和顺序质子损失电子转移(SPLET)机制的 5 个热力学参数,并对酚酸进行了比较。基于苯环上相同的取代基,-CHCOOH 和 -CH=CHCOOH 可以增强酚酸的抗氧化活性,而-COOH 则不行。甲氧基(-OCH)和酚羟基(-OH)基团也可以促进酚酸的抗氧化活性。这些结果与酚酸中酚羟基的 O-H 键离解焓以及与官能团供电子能力相关的质子亲和力和电子转移焓(ETE)值有关。此外,我们推测 HAT、SET-PT 和 SPLET 机制可能在 DPPH 反应体系中发生。而 SPLET 是 FRAP 体系中的主要反应机制,因为除了 4-羟基苯酸外,酚酸在水中的 ETE 值与实验结果一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9fb/7018807/dbb38befa94f/41598_2020_59451_Fig1_HTML.jpg

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