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Comparative Evaluation of Various Total Antioxidant Capacity Assays Applied to Phenolic Compounds with the CUPRAC Assay

机译:使用CUPRAC测定法对应用于酚类化合物的各种总抗氧化能力测定法的比较评估

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摘要

It would be desirable to establish and standardize methods that can measure the total antioxidant capacity level directly from vegetable extracts containing phenolics. Antioxidant capacity assays may be broadly classified as electron transfer (ET)− and hydrogen atom transfer (HAT)−based assays. The majority of HAT assays are kinetics-based, and involve a competitive reaction scheme in which antioxidant and substrate compete for peroxyl radicals thermally generated through the decomposition of azo compounds. ET−based assays measure the capacity of an antioxidant in the reduction of an oxidant, which changes colour when reduced. ET assays include the ABTS/TEAC, CUPRAC, DPPH, Folin-Ciocalteu and FRAP methods, each using different chromogenic redox reagents with different standard potentials. This review intends to offer a critical evaluation of existing antioxidant assays applied to phenolics, and reports the development by our research group of a simple and low-cost antioxidant capacity assay for dietary polyphenols, vitamins C and E, and human serum antioxidants, utilizing the copper(II)-neocuproine reagent as the chromogenic oxidizing agent, which we haved named the CUPRAC (cupric ion reducing antioxidant capacity) method. This method offers distinct advantages over other ET−based assays, namely the selection of working pH at physiological pH (as opposed to the Folin and FRAP methods, which work at alkaline and acidic pHs, respectively), applicability to both hydrophilic and lipophilic antioxidants (unlike Folin and DPPH), completion of the redox reactions for most common flavonoids (unlike FRAP), selective oxidation of antioxidant compounds without affecting sugars and citric acid commonly contained in foodstuffs and the capability to assay –SH bearing antioxidants (unlike FRAP). Other similar ET–based antioxidant assays that we have developed or modified for phenolics are the Fe(III)− and Ce(IV)−reducing capacity methods.
机译:建立和标准化可以直接从含有酚类的植物提取物中测量总抗氧化剂容量水平的方法将是合乎需要的。抗氧化能力测定可大致分为基于电子转移(ET)-和氢原子转移(HAT)的测定。多数HAT分析是基于动力学的,涉及竞争性反应方案,其中抗氧化剂和底物竞争通过偶氮化合物分解而热生成的过氧自由基。基于ET的检测方法可测量抗氧化剂在氧化剂还原中的能力,该氧化剂在还原时会变色。 ET分析包括ABTS / TEAC,CUPRAC,DPPH,Folin-Ciocalteu和FRAP方法,每种方法均使用具有不同标准电位的不同生色氧化还原试剂。这篇综述旨在对现有的酚类抗氧化剂测定方法进行关键性评估,并报告我们研究小组开发的一种简单而低成本的抗氧化剂能力测定方法,用于膳​​食多酚,维生素C和E以及人血清抗氧化剂,利用作为显色氧化剂的铜(II)-新up碱试剂,我们将其称为CUPRAC(降低铜离子的抗氧化能力)方法。与其他基于ET的测定法相比,该方法具有明显的优势,即在生理pH下选择工作pH(与分别在碱性pH和酸性pH下起作用的Folin和FRAP方法相反),对亲水性和亲脂性抗氧化剂均适用(与Folin和DPPH不同),完成了最常见的类黄酮的氧化还原反应(与FRAP不同),选择性氧化了抗氧化剂而不影响食品中通常含有的糖和柠檬酸,并且具有测定–SH含抗氧化剂的能力(与FRAP不同)。我们为酚醛树脂开发或修改的其他类似的基于ET的抗氧化剂测定方法是Fe(III)-和Ce(IV)-还原能力方法。

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