首页> 外文期刊>Journal of Agricultural and Food Chemistry >Oxygen radical absorbing capacity of phenolics in blueberries, cranberries, chokeberries, and lingonberries.
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Oxygen radical absorbing capacity of phenolics in blueberries, cranberries, chokeberries, and lingonberries.

机译:蓝莓,蔓越莓,苦莓和越橘中酚类的氧自由基吸收能力。

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The antioxidant activity of phenolics in fruits of blueberry (Vaccinium corymbosum cv. Sierra), cranberry (Vaccinium macrocarpon cv. Ben Lear), wild chokeberry (Aronia melanocarpa), and lingonberry (Vaccinium vitis-idaea cv. Amberland) was determined in this study. The phenolic constituents and contents among the different berries varied considerably. Anthocyanins were found to be the main components in all these berries. Chlorogenic acid in blueberry, quercetin glycosides in cranberry and lingonberry, and caffeic acid and its derivative in chokeberry were also present in relatively high concentrations. Chlorogenic acid, peonidin 3-galactoside, cyanidin 3-galactoside, and cyanidin 3-galactoside were the most important antioxidants in blueberry, cranberry, wild chokeberry, and lingonberry, respectively. The contribution of individual phenolics to the total antioxidant capacity was generally dependent on their structure and content in the berries. Phenolics such as quercetin and cyanidin, with 3',4'-dihydroxy substituents in the B ring and conjugation between the A and B rings, had highly effective radical scavenging structures in blueberries, cranberries, chokeberries, and lingonberries. Phenolic acids such as caffeic acid also showed high antioxidant activity, probably due to its dihydroxylation in the 3,4 positions as hydrogen donors.
机译:在这项研究中测定了酚类物质对蓝莓(Vaccinium corymbosum cv。Sierra),蔓越莓(Vaccinium macrocarpon cv。Ben Lear),野生苦莓(Aronia melanocarpa)和越橘(Vaccinium v​​itis-idaea cv。Amberland)水果的抗氧化活性。 。不同浆果之间的酚类成分和含量差异很大。发现花青素是所有这些浆果中的主要成分。蓝莓中的绿原酸,蔓越莓和越橘中的槲皮素苷以及苦莓中的咖啡酸及其衍生物也以相对较高的浓度存在。绿原酸,peonidin 3-半乳糖苷,cyanidin 3-半乳糖苷和cyanidin 3-半乳糖苷分别是蓝莓,蔓越莓,野生苦莓和越橘中最重要的抗氧化剂。单个酚类化合物对总抗氧化剂能力的贡献通常取决于其结构和浆果中的含量。酚醛树脂(例如槲皮素和花青素)在B环中具有3',4'-二羟基取代基,且A和B环之间具有共轭作用,它们在蓝莓,小红莓,苦莓和越橘中具有高效的自由基清除结构。酚酸(例如咖啡酸)也显示出高抗氧化活性,这可能是由于其在3,4位上作为氢供体的二羟基化作用。

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