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Degradation of Cyanidin 3-Rutinoside in the Presence of (-)-Epicatechin and Litchi Pericarp Polyphenol Oxidase

机译:(-)-表儿茶素和荔枝果皮多酚氧化酶存在下氰胺3-芸香苷的降解

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摘要

The degradation mechanism of cyanidin 3-rutinoside in the presence of (-)-epicatechin and litchi pericarp polyphenol oxidase (PPO) was investigated using several model systems. The enzymically generated (-)-epicatechin omicron-quinone could induce cyanidin 3-rutinoside degradation. The results obtained in this study allowed us to propose a pathway for cyanidin 3-rutinoside degradation in the presence of (-)-epicatechin and litchi pericarp PPO. First, enzymatic oxidation of (-)-epicatechin produced the corresponding omicron-quinone, and then cyanidin 3-rutinoside and (-)-epicatechin competed for (-)-epicatechin o-quinone, resulting in degradation of cyanidin 3-rutinoside and regeneration of (-)-epicatechin. Moreover, the results of kinetic studies indicated this competition was influenced by both (-)-epicatechin concentration and cyanidin 3-rutinoside concentration in the model system.
机译:使用几种模型系统研究了在(-)-表儿茶素和荔枝果皮多酚氧化酶(PPO)存在下花青素3-芸苔苷的降解机理。酶促生成的(-)-表儿茶素Omicron-醌可以诱导花青素3-芸香糖苷降解。在这项研究中获得的结果使我们能够提出在(-)-表儿茶素和荔枝果皮PPO存在下花青素3-芸苔苷降解的途径。首先,酶促氧化(-)-表儿茶素产生相应的欧米诺醌,然后花青素3-芸苔苷和(-)-表儿茶素竞争(-)-表儿茶素邻醌,导致花青素3-芸苔苷降解并再生(-)-epicatechin的此外,动力学研究的结果表明,该竞争受到模型系统中(-)-表儿茶素浓度和花青素3-芸苔苷浓度的影响。

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