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循环伏安法在评估酚类和氨基酸化合物对抗氧化活性协同效应中的有效性:电化学参数的优化

Effectiveness of Cyclic Voltammetry in Evaluation of the Synergistic Effect of Phenolic and Amino Acids Compounds on Antioxidant Activity: Optimization of Electrochemical Parameters.

作者信息

Jara-Palacios María José, Begines Emilio, Heredia Francisco J, Escudero-Gilete María Luisa, Hernanz Dolores

机构信息

Department of Analytical Chemistry, Facultad de Farmacia, Universidad de Sevilla, 41012 Sevilla, Spain.

Food Colour and Quality Laboratory, Facultad de Farmacia, Universidad de Sevilla, 41012 Sevilla, Spain.

出版信息

Foods. 2024 Mar 16;13(6):906. doi: 10.3390/foods13060906.

Abstract

Antioxidant activity can be evaluated using cyclic voltammetry (CV). The aim of this work is to verify the efficacy of CV in evaluating the synergistic effect of bioactive compounds, such as phenolic and amino acid compounds, on antioxidant activity. Therefore, three types of model solutions were prepared: individual model solution (phenol and amino acid), (b) binary model solutions (phenol-phenol and amino acid-amino acid) and (c) mixed phenol-amino acid solutions. Electrochemical measurement conditions were optimized for phenolic compounds (pH 3.0, 1.0 g/L and 100 mV/s) and for amino acids (pH 7.0, 2.0 g/L for amino acids and 100 mV/s), and, for each solution, the functional groups responsible of the anodic and cathodic peaks were established. The peak anodic potential (E) and the onset potential (E) were two parameters of great importance. The first one was used to classify the solutions according to their antioxidant potential. In general, all the binary and mixed solutions had lower values of E than the corresponding individual model solution, which indicates an improvement in the antioxidant potential. The second one was used to evaluate the synergistic effects of phenolic compounds and amino acids.

摘要

抗氧化活性可以通过循环伏安法(CV)进行评估。本研究的目的是验证循环伏安法在评估生物活性化合物(如酚类和氨基酸化合物)对抗氧化活性的协同作用方面的有效性。因此,制备了三种类型的模型溶液:(a)单一模型溶液(苯酚和氨基酸),(b)二元模型溶液(苯酚 - 苯酚和氨基酸 - 氨基酸)以及(c)酚 - 氨基酸混合溶液。针对酚类化合物(pH 3.0、1.0 g/L和100 mV/s)以及氨基酸(pH 7.0、氨基酸浓度2.0 g/L和100 mV/s)优化了电化学测量条件,并确定了每种溶液中阳极峰和阴极峰对应的官能团。阳极峰电位(E)和起始电位(E)是两个非常重要的参数。前者用于根据抗氧化潜力对溶液进行分类。一般来说,所有二元溶液和混合溶液的E值都低于相应的单一模型溶液,这表明抗氧化潜力有所提高。后者用于评估酚类化合物和氨基酸的协同效应。

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