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复杂样品和单一酚类物质抗氧化能力的测定——多边方法

Antioxidant Capacity Determination of Complex Samples and Individual Phenolics - Multilateral Approach.

作者信息

Petrovic Marija, Suznjevic Desanka, Pastor Ferenc, Veljovic Mile, Pezo Lato, Antic Malisa, Gorjanovic Stanislava

机构信息

Institute of General and Physical Chemistry, Studentski trg 12-16, P.O. Box 45, 11158, Belgrade 118, Serbia.

出版信息

Comb Chem High Throughput Screen. 2016;19(1):58-65. doi: 10.2174/1386207318666151102094227.

Abstract

Antioxidant (AO) capacity of various medicinal plants extracts and phenolic compounds was assessed by the most widely used spectrophotometric assays such as ferric reducing antioxidant power (FRAP) and scavenging of 2,2-azino-bis-3-ethylbenzothiazoline-6-sulfonic acid (ABTS) and 2,2-diphenyl-1-picrylhydrazyl (DPPH). In addition, two direct current (DC) polarographic assays, one based on a decrease of anodic current of [Hg(O2H)(OH)] - HydroxoPerhydroxoMercury(II) Complex (HPMC) formation in alkaline solution of H2O2, at the potential of mercury dissolution and another recently developed Mercury Reduction Antioxidant Power (MRAP), based on a a decrease of cathodic current of Hg(II) reduction were employed. Percentage of both currents decrease was plotted versus the volume of gradually added complex samples or the amount of individual ones and the slopes of these plots were used to express AO capacity. Total phenolic content (TPC) of extracts was determined by Folin- Ciocalteu (FC) assay. Correlations between applied assays were calculated by regression analysis. Relative Antioxidant Capacity Index (RACI), calculated by assigning equal weight to all applied assays and Phenolic Antioxidant Coefficients (PAC), calculated as a ratio between particular AO capacity and TPC, were used to achieve more comprehensive comparison between analyzed samples, as well as applied assays.

摘要

通过最广泛使用的分光光度法,如铁还原抗氧化能力(FRAP)、2,2-联氮-双-3-乙基苯并噻唑啉-6-磺酸(ABTS)清除法和2,2-二苯基-1-苦基肼(DPPH)清除法,评估了各种药用植物提取物和酚类化合物的抗氧化(AO)能力。此外,还采用了两种直流(DC)极谱法,一种基于在过氧化氢碱性溶液中[Hg(O2H)(OH)]-氢过氧汞(II)络合物(HPMC)形成时阳极电流的降低,在汞溶解电位下进行;另一种是最近开发的汞还原抗氧化能力(MRAP),基于汞(II)还原时阴极电流的降低。将两种电流降低的百分比与逐渐添加的复合样品体积或单个样品的量作图,并利用这些图的斜率来表示AO能力。提取物的总酚含量(TPC)通过福林-西奥尔特(FC)法测定。通过回归分析计算所应用分析方法之间的相关性。通过对所有应用分析方法赋予同等权重计算得到的相对抗氧化能力指数(RACI),以及以特定AO能力与TPC的比值计算得到的酚类抗氧化系数(PAC),用于在分析样品以及所应用分析方法之间进行更全面的比较。

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