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Hydroxycinnamic Acid Antioxidants: An Electrochemical Overview

机译:羟基肉桂酸抗氧化剂:电化学概述

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摘要

Hydroxycinnamic acids (such as ferulic, caffeic, sinapic, and p-coumaric acids) are a group of compounds highly abundant in food that may account for about one-third of the phenolic compounds in our diet. Hydroxycinnamic acids have gained an increasing interest in health because they are known to be potent antioxidants. These compounds have been described as chain-breaking antioxidants acting through radical scavenging activity, that is related to their hydrogen or electron donating capacity and to the ability to delocalize/stabilize the resulting phenoxyl radical within their structure. The free radical scavenger ability of antioxidants can be predicted from standard one-electron potentials. Thus, voltammetric methods have often been applied to characterize a diversity of natural and synthetic antioxidants essentially to get an insight into their mechanism and also as an important tool for the rational design of new and potent antioxidants. The structure-property-activity relationships (SPARs) correlations already established for this type of compounds suggest that redox potentials could be considered a good measure of antioxidant activity and an accurate guideline on the drug discovery and development process. Due to its magnitude in the antioxidant field, the electrochemistry of hydroxycinnamic acid-based antioxidants is reviewed highlighting the structure-property-activity relationships (SPARs) obtained so far.
机译:羟基肉桂酸(例如阿魏酸,咖啡酸,芥子酸和对香豆酸)是一组在食物中含量很高的化合物,可能占我们饮食中酚类化合物的三分之一。羟基肉桂酸对健康的关注日益增加,因为众所周知它们是有效的抗氧化剂。这些化合物已被描述为通过自由基清除活性起作用的链断裂抗氧化剂,这与它们的氢或电子给体能力以及在其结构内离解/稳定所得苯氧基自由基的能力有关。抗氧化剂的自由基清除剂能力可以通过标准的单电子势来预测。因此,伏安法通常用于表征多种天然和合成抗氧化剂,从本质上了解它们的机理,并作为合理设计新的有效抗氧化剂的重要工具。已经针对此类化合物建立的结构-性质-活性关系(SPAR)相关性表明,氧化还原电位可以被视为抗氧化剂活性的良好衡量标准,并且是药物发现和开发过程的准确指南。由于其在抗氧化剂领域的重要性,对基于羟基肉桂酸的抗氧化剂的电化学进行了综述,突出了到目前为止获得的结构-性质-活性关系(SPAR)。

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