首页> 外文期刊>Analytical and bioanalytical chemistry >Identification and quantification of daidzein-7-glucuronide-4′- sulfate, genistein-7-glucuronide-4′-sulfate and genistein-4′,7- diglucuronide as major metabolites in human plasma after administration of kinako
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Identification and quantification of daidzein-7-glucuronide-4′- sulfate, genistein-7-glucuronide-4′-sulfate and genistein-4′,7- diglucuronide as major metabolites in human plasma after administration of kinako

机译:kinako给药后黄豆苷元7-葡糖醛酸4'-硫酸盐,染料木素7-葡糖醛酸4'-硫酸盐和染料木素4',7-地葡糖醛酸的鉴定和定量

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摘要

Much attention has been paid to the metabolism and disposition of isoflavones daidzein (Dein) and genistein (Gein) with regard to the prevention of several hormone-dependent diseases. Recent studies have reported that several conjugates as well as aglycones may be biologically active or may be activated within target cells. However, the disposition of Dein and Gein in plasma is still uncertain. This paper describes the identification and quantification of the highly polar metabolites, daidzein-7-glucuronide-4′-sulfate (D-7G-4′S), genistein-7-glucuronide-4′-sulfate (G-7G-4′S), daidzein-4′,7-diglucuronide (D-4′,7-diG), and genistein-4′,7- diglucuronide (G-4′,7-diG) in human plasma after dietary administration of kinako (baked soybean powder) to two healthy volunteers. The structure identification of these conjugated metabolites in plasma was performed in comparison to the LC-ESI-MS and 600 MHz ~1H-NMR spectral data of the chemically synthesized compounds. Furthermore, 16 isoflavone metabolites including D-7G-4′S, G-7G-4′S, D-4′,7-diG, and G-4′,7-diG in plasma were simultaneously measured by a high-performance liquid chromatography-UV-diode-array detector method combined with solid-phase extraction using an Oasis HLB cartridge. D-7G-4′S, G-7G-4′S and G-4′,7-diG were found to be major metabolites of Dein and Gein in plasma, while intact aglycones were detected to be only ca. 2% in both subjects. The findings suggest that the conjugated metabolites could be the key compounds responsible for pharmacological and medicinal properties of isoflavones.
机译:在预防几种激素依赖性疾病方面,已经非常重视异黄酮黄豆苷元(Dein)和染料木黄酮(Gein)的代谢和处理。最近的研究报道了几种缀合物以及糖苷配基可能具有生物学活性或可能在靶细胞内被激活。但是,Dein和Gein在等离子体中的位置仍然不确定。本文介绍了高极性代谢产物黄豆苷元7-葡萄糖醛酸4'-硫酸盐(D-7G-4'S),染料木素7-葡萄糖醛酸4'-硫酸盐(G-7G-4')的鉴定和定量(S),黄豆素4',7-地葡糖醛酸(D-4',7-diG)和染料木素4',7-地葡糖醛酸(G-4',7-diG)在饮食中服用kinako(烤大豆粉)给两名健康志愿者。与化学合成的化合物的LC-ESI-MS和600 MHz〜1H-NMR光谱数据相比,进行了血浆中这些共轭代谢物的结构鉴定。此外,通过高效液相色谱仪同时测定了血浆中D-7G-4'S,G-7G-4'S,D-4',7-diG和G-4',7-diG等16种异黄酮代谢物。液相色谱-紫外二极管阵列检测器方法结合使用Oasis HLB柱的固相萃取。发现D-7G-4'S,G-7G-4'S和G-4',7-diG是血浆中Dein和Gein的主要代谢产物,而完整的糖苷配基仅被发现约为。在两个科目中均为2%。研究结果表明,共轭代谢物可能是负责异黄酮药理和医学特性的关键化合物。

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