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Preparation and Antioxidant Activity of Ethyl-Linked Anthocyanin-Flavanol Pigments from Model Wine Solutions

机译:葡萄酒溶液中乙基连接的花青素 - 黄烷醇颜料的制备及抗氧化活性

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摘要

Anthocyanin-flavanol pigments, formed during red wine fermentation and storage by condensation reactions between anthocyanins and flavanols (monomers, oligomers, and polymers), are one of the major groups of polyphenols in aged red wine. However, knowledge of their biological activities is lacking. This is probably due to the structural diversity and complexity of these molecules, which makes the large-scale separation and isolation of the individual compounds very difficult, thus restricting their further study. In this study, anthocyanins (i.e., malvidin-3-glucoside, cyanidin-3-glucoside, and peonidin-3-glucoside) and (–)-epicatechin were first isolated at a preparative scale by high-speed counter-current chromatography. The condensation reaction between each of the isolated anthocyanins and (–)-epicatechin, mediated by acetaldehyde, was conducted in model wine solutions to obtain ethyl-linked anthocyanin-flavanol pigments. The effects of pH, molar ratio, and temperature on the reaction rate were investigated, and the reaction conditions of pH 1.7, molar ratio 1:6:10 (anthocyanin/(–)-epicatechin/acetaldehyde), and reaction temperature of 35 °C were identified as optimal for conversion of anthocyanins to ethyl-linked anthocyanin-flavanol pigments. Six ethyl-linked anthocyanin-flavanol pigments were isolated in larger quantities and collected under optimal reaction conditions, and their chemical structures were identified by HPLC-QTOF-MS and ECD analyses. Furthermore, DPPH, ABTS, and FRAP assays indicate that ethyl-linked anthocyanin-flavanol pigments show stronger antioxidant activities than their precursor anthocyanins.
机译:红葡萄酒发酵期间形成的花青素 - 黄烷醇颜料,通过花青素和黄氰胺(单体,低聚物和聚合物)之间的缩合反应形成,是老年红葡萄酒中的主要多酚之一。但是,缺乏对其生物活动的了解。这可能是由于这些分子的结构性多样性和复杂性,这使得大规模分离和单独的化合物的分离非常困难,因此限制了他们的进一步研究。在该研究中,首先以高速反电流色谱法以制备规模分离出分离出分离出分离的三孔蛋白(即,麦类素-3-葡糖苷,花青素-3-葡糖苷,Cyanidin-3-葡糖苷)和( - ) - EpicaTechin。通过乙醛介导的每种分离的花青素和( - ) - EPICATECHIN之间的缩合反应在模型葡萄酒溶液中进行,得到乙基连接的花青素 - 黄烷醇颜料。研究了pH,摩尔比和温度对反应速率的影响,以及pH 1.7,摩尔比1:6:10(花青素/( - ) - EpicateChin /乙醛)的反应条件,反应温度为35°鉴定为将花青素转化为乙基连接的花青素 - 黄烷醇颜料的最佳选择。六个乙基连接的花青素 - 黄烷醇颜料在较大的数量中分离并在最佳反应条件下收集,并通过HPLC-QTOF-MS和ECD分析鉴定它们的化学结构。此外,DPPH,ABT和FRAP测定表明,乙基连接的花青素 - 黄烷醇颜料显示出比其前体花青素的抗氧化活性更强。

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