首页> 外文期刊>Journal of Agricultural and Food Chemistry >Inhibition of lipid peroxidation and structure-activity-related studies of the dietary constituents anthocyanins, anthocyanidins, and catechins.
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Inhibition of lipid peroxidation and structure-activity-related studies of the dietary constituents anthocyanins, anthocyanidins, and catechins.

机译:饮食成分花青素,花青素和儿茶素的脂质过氧化抑制和与结构活性相关的研究。

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The antioxidant activities of a series of commonly consumed and biogenetically related plant phenolics, namely, anthocyanidins, anthocyanins, and catechins, in a liposomal model system have been investigated. The antioxidant efficacies of the compounds were evaluated on their abilities to inhibit the fluorescence intensity decay of an extrinsic probe, 3-[p-(6-phenyl)-1,3,5-hexatrienyl]phenylpropionic acid, caused by free radicals generated during metal ion-induced peroxidation. Distinct structure-activity relationships were revealed for the antioxidant abilities of these structurally related compounds. Whereas antioxidant activity increased with an increasing number of hydroxyl substituents present on the B-ring for anthocyanidins, the converse was observed for catechins. However, substitution by methoxyl groups diminished the antioxidant activity of the anthocyanidins. Substitution at position 3 of ring C played a major role in determining the antioxidant activity of these classes of compounds. The anthocyanidins, which possess a hydroxyl group at position 3, demonstrated potent antioxidant activities. For the cyanidins, an increasing number of glycosyl units at position 3 resulted in decreased antioxidant activity. Similarly, the substitution of a galloyl group at position 3 of the flavonoid moiety resulted in significantly decreased antioxidant activity for the catechins. Among catechins, cis-trans isomerism, epimerization, and racemization did not play a role in overall antioxidant activity. The antioxidant activities of test compounds (at 40 microM concentrations) were compared to the commercial antioxidants tert-butylhydroquinone, butylated hydroxytoluene, butylated hydroxyanisole, and vitamin E (all at 10 microM concentrations).
机译:研究了脂质体模型系统中一系列常用的与生物遗传相关的植物酚类化合物的抗氧化活性,即花青素,花青素和儿茶素。对化合物的抗氧化剂功效进行了评估,以抑制它们在外在探针3- [p-(6-苯基)-1,3,5-己三烯基]苯基丙酸引起的荧光强度衰减的能力,该自由基是由在生成过程中产生的自由基引起的。金属离子引起的过氧化。这些结构相关化合物的抗氧化能力具有明显的构效关系。抗氧化剂活性随着花青素在B环上存在的羟基取代基数量的增加而增加,而儿茶素则相反。但是,被甲氧基取代会降低花青素的抗氧化活性。 C环第3位的取代在确定这类化合物的抗氧化活性中起着重要作用。在3位具有羟基的花青素显示出有效的抗氧化活性。对于花青素,位置3上糖基单元数量的增加导致抗氧化剂活性降低。类似地,在类黄酮部分的3位上的没食子酰基的取代导致儿茶素的抗氧化活性显着降低。在儿茶素中,顺反异构体,差向异构和外消旋在总体抗氧化剂活性中不起作用。将测试化合物(在40 microM浓度下)的抗氧化活性与市售抗氧化剂叔丁基氢醌,丁基化羟基甲苯,丁基化羟基茴香醚和维生素E(均在10 microM浓度下)进行比较。

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