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酚类化合物的结构-抗氧化效率关系及其对沙棘汁抗氧化活性的贡献

Structure-antioxidant efficiency relationships of phenolic compounds and their contribution to the antioxidant activity of sea buckthorn juice.

作者信息

Rösch Daniel, Bergmann Meike, Knorr Dietrich, Kroh Lothar W

机构信息

Institut für Lebensmittelchemie, Technische Universität Berlin, Gustav-Meyer-Allee 25, D-13355 Berlin, Germany.

出版信息

J Agric Food Chem. 2003 Jul 16;51(15):4233-9. doi: 10.1021/jf0300339.

Abstract

The phenolic composition of juice derived from fruits of sea buckthorn (Hippophae rhamnoides) was investigated by high-performance liquid chromatography (HPLC) with diode array and electrochemical detection. Flavonols were found to be the predominating polyphenols while phenolic acids and catechins represent minor components. Of the seven flavonols identified, isorhamnetin 3-O-glycosides were the most important representatives quantitatively. However, because of their structural properties, they were poor radical scavengers as shown by electron spin resonance spectroscopy. Phenolic compounds such as quercetin 3-O-glycosides, catechins, and hydroxybenzoic acids with a catechol structure exhibited good antioxidant capacities, but their concentration in sea buckthorn juice was small. These phenolic compounds, determined by HPLC, accounted for less than 5% of the total antioxidant activity of the filtered juice. Ascorbic acid was shown to be the major antioxidant in sea buckthorn juice. Because of its high concentration of 1.22 g/L, it contributes approximately 75% to total antioxidant activity. The remaining difference can be attributed to higher molecular weight flavan-3-ols (proanthocyanidins), which were determined photometrically after acid depolymerization to colored anthocyanidins.

摘要

采用配有二极管阵列和电化学检测的高效液相色谱法(HPLC)对沙棘(沙棘属)果实的果汁中的酚类成分进行了研究。发现黄酮醇是主要的多酚类物质,而酚酸和儿茶素是次要成分。在所鉴定的七种黄酮醇中,异鼠李素3-O-糖苷在数量上是最重要的代表。然而,由于其结构特性,通过电子自旋共振光谱法表明它们是较差的自由基清除剂。具有儿茶酚结构的酚类化合物,如槲皮素3-O-糖苷、儿茶素和羟基苯甲酸,表现出良好的抗氧化能力,但它们在沙棘汁中的浓度较低。通过HPLC测定的这些酚类化合物占过滤汁总抗氧化活性的不到5%。抗坏血酸被证明是沙棘汁中的主要抗氧化剂。由于其1.22 g/L的高浓度,它对总抗氧化活性的贡献约为75%。其余的差异可归因于较高分子量的黄烷-3-醇(原花青素),它们在酸解聚为有色花青素后通过光度法测定。

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