Siano Francesco, Sammarco Anna Sofia, Fierro Olga, Castaldo Domenico, Caruso Tonino, Picariello Gianluca, Vasca Ermanno
Istituto di Scienze dell'Alimentazione, Consiglio Nazionale delle Ricerche, Via Roma 64, 83100 Avellino, Italy.
Dipartimento di Chimica e Biologia "A. Zambelli", Università degli Studi di Salerno, Via Giovanni Paolo II 132, 84084 Fisciano, Italy.
Antioxidants (Basel). 2023 Nov 3;12(11):1963. doi: 10.3390/antiox12111963.
CDAC (coulometrically determined antioxidant capacity) involves the determination of the antioxidant capacity of individual compounds or their mixtures using constant-current coulometry, with electrogenerated Br as the titrant, and biamperometric detection of the endpoint via Br excess. CDAC is an accurate, sensitive, rapid, and cheap measurement of the mol electrons (mol e) transferred in a redox process. In this study, the CDAC of 48 individual antioxidants commonly found in foods has been determined. The molar ratio CDAC (CDACχ, mol e mol) of representative antioxidants is ranked as follows: tannic acid > malvidin-3--glucoside ≃ curcumin > quercetin > catechin ≃ ellagic acid > gallic acid > tyrosol > BHT ≃ hydroxytyrosol > chlorogenic acid ≃ ascorbic acid ≃ Trolox. In many cases, the CDACχ ranking of the flavonoids did not comply with the structural motifs that promote electron or hydrogen atom transfers, known as the Bors criteria. As an accurate esteem of the stoichiometric coefficients for reactions of antioxidants with Br, the CDACχ provides insights into the structure-activity relationships underlying (electro)chemical reactions. The electrochemical ratio (ER), defined as the antioxidant capacity of individual compounds relative to ascorbic acid, represents a dimensionless nutritional index that can be used to estimate the antioxidant power of any foods on an additive basis.
库仑法测定抗氧化能力(CDAC)涉及使用恒电流库仑法测定单个化合物或其混合物的抗氧化能力,以电化学产生的溴作为滴定剂,并通过过量的溴进行双安培终点检测。CDAC是一种准确、灵敏、快速且廉价的测定氧化还原过程中转移的摩尔电子数(mol e)的方法。在本研究中,已测定了食品中常见的48种单个抗氧化剂的CDAC。代表性抗氧化剂的摩尔比CDAC(CDACχ,mol e/mol)排序如下:单宁酸>矢车菊素-3-葡萄糖苷≃姜黄素>槲皮素>儿茶素≃鞣花酸>没食子酸>酪醇>丁基羟基甲苯(BHT)≃羟基酪醇>绿原酸≃抗坏血酸≃Trolox。在许多情况下,黄酮类化合物的CDACχ排序不符合促进电子或氢原子转移的结构基序,即所谓的博尔斯标准。作为对抗氧化剂与溴反应的化学计量系数的准确评估,CDACχ提供了对(电)化学反应背后的构效关系的见解。电化学比(ER)定义为单个化合物相对于抗坏血酸的抗氧化能力,代表一个无量纲的营养指数,可用于在加和基础上估计任何食物的抗氧化能力。