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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Prenylation and Backbone Structure of Flavonoids and Isoflavonoids from Licorice and Hop Influence Their Phase I and II Metabolism
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Prenylation and Backbone Structure of Flavonoids and Isoflavonoids from Licorice and Hop Influence Their Phase I and II Metabolism

机译:甘草和蛇麻草中黄酮类和异黄酮类化合物的异戊烯基化和主链结构影响其一期和二期代谢

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摘要

In vitro liver metabolism of 11 prenylated flavonoids and isoflavonoids was investigated by determining their phase I glucuronyl and sulfate metabolites using pork liver preparations. One hundred metabolites were annotated using RP-UHPLC-ESI-MS". A mass spectrometry-based data interpretation guideline was proposed for the tentative annotation of the position of hydroxyl groups, considering its relevance for estrogenic activity. To relate structure to metabolism, compounds were classified on the basis of three criteria: backbone structure (isoflavene, isoflavan, or flavanone), number of prenyl groups (0, 1, or 2), and prenyl configuration (chain or pyran). Glucuronidation was most extensive for isoflavenes and for unprenylated compounds (yield of 90-100%). Pyran and chain prenylation gave more complex hydroxylation patterns with 4 or more than 6 hydroxyl isomers, respectively, as compared to unprenylated compounds (only 1 hydroxyl isomer). Moreover, the number of hydroxyl isomers also increased with the number of prenyl groups.
机译:通过使用猪肝制剂确定11种异戊烯黄酮和异黄酮的I相葡萄糖醛酸和硫酸盐代谢物的体外肝脏代谢,对其进行了研究。使用RP-UHPLC-ESI-MS注释了一百种代谢物。考虑到其与雌激素活性的相关性,提出了基于质谱的数据解释准则来临时注释羟基的位置。根据三个标准进行分类:骨架结构(异黄酮,异黄烷或黄烷酮),异戊二烯基的数目(0、1或2)和异戊二烯构型(链或吡喃)。与未异戊酸酯化的化合物(只有1个羟基异构体)相比,吡喃和链异戊酸酯化分别具有4种或6种以上羟基异构体的复杂羟基化方式。异戊二烯基的数量也增加。

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