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首页> 外文期刊>Analytical Sciences >Application of Electrochemiluminescence for the Evaluation of the Antioxidant Capacity of Some Phenolic Compounds Against Superoxide Anion Radicals
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Application of Electrochemiluminescence for the Evaluation of the Antioxidant Capacity of Some Phenolic Compounds Against Superoxide Anion Radicals

机译:电化学发光在超氧化物阴离子抗氧化合物抗氧化能力评价中的应用

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This paper for the first time reports on novel and non-enzymatic method for studying the free radical-scavenging properties of phenolic compounds against superoxide anion radicals (O2·−) by using the cathodic electrochemiluminescence (ECL) of lucigenin (Luc2+). The ECL of Luc2+ at a glassy carbon (GC) electrode is observed in an aeration electrolytic solution (pH 7), which is believed to be due to the reaction of a one-electron reduced form of Luc2+ (i.e. a radical cation, Luc·+) with in situ electrogenerated O2·−. The ECL intensity is dependent on the concentration of dissolved oxygen, and is suppressed dramatically by superoxide dismutase (SOD), a typical O2·− scavenger. Since the coexisting hydrogen peroxide (H2O2) has no influence on the cathodic ECL of Luc2+, it is thus suggested that the ECL signal specifically reflected the O2·− concentration level generated at the electrode surface. When phenolic compounds were added into the solution, this resulted in the inhibition of ECL signals due to the elimination of O2·−. The ECL inhibition rate measured at each concentration was compared against the SOD equivalent (U mL−1), and the relative antioxidant efficiency, Kao (U mmol−1 equivalent SOD), was used to evaluate the antioxidant activity of some phenolic compounds, including flavonoids, in this study. Structurally different water-soluble phenols were compared, and those compounds containing to catechol skeletal structure are found to present the higher antioxidant capacity.
机译:本文首次报告了一种新的和非酶促方法,用于通过使用Lucigenin(Luc2 +)的阴极电化学荧光(ECL)来研究酚类化合物对超氧化物阴离子自由基(O2· - )的自由基清除性质。在曝气电解溶液(pH7)中观察到玻璃碳(GC)电极处的Luc2 +的ECL,这被认为是由于液体2 +的单电子还原形式的反应(即,自由基阳离子,Luc· +)原位电流O2· - 。 ECL强度取决于溶解氧的浓度,并且通过超氧化物歧化酶(SOD),典型的O 2·清除剂抑制。由于共存过氧化氢(H 2 O 2)对Luc2 +的阴极ECL没有影响,因此表明ECL信号特异性地反映在电极表面处产生的O2·浓度水平。当向溶液中加入酚类化合物时,这导致由于消除O2· - - 的ECL信号导致ECL信号。将在每个浓度下测量的ECL抑制率与SOD当量(U mL-1)进行比较,并且使用相对抗氧化效率KaO(Umol-1当量SOD)来评估一些酚类化合物的抗氧化活性,包括本研究中的黄酮类化合物。比较了结构不同的水溶性酚,并发现含有对儿茶酚骨架结构的化合物呈现较高的抗氧化能力。

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