首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Plasma profiling of intact isoflavone metabolites by high-performance liquid chromatography and mass spectrometric identification of flavone glycosides daidzin and genistin in human plasma after administration of kinako.
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Plasma profiling of intact isoflavone metabolites by high-performance liquid chromatography and mass spectrometric identification of flavone glycosides daidzin and genistin in human plasma after administration of kinako.

机译:施用kinako后,通过高效液相色谱和质谱鉴定人血浆中黄酮苷黄豆苷和染料木苷的完整异黄酮代谢物的血浆谱分析。

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The roles of isoflavones in the prevention of several hormone-dependent cancers and osteoporosis are of great interest. Despite many pharmacokinetics studies of the isoflavones, the actual types of conjugates circulating in the body and the position(s) of conjugation sites on the flavone skeleton are still uncertain because, in general, conjugated compounds in biological fluids have been evaluated by measuring the free aglycones obtained after selective enzymatic hydrolysis. Using an high-performance (HPLC)-UV-diode-array detector (DAD) method combined with solid-phase extraction, we have obtained HPLC profiles of isoflavone glycosides [daidzin (Din) and genistin (Gin)] and of intact isoflavone metabolites in human plasma: daidzein, genistein, daizein-7-glucuronide, daidzein-4'-glucuronide, genistein-7-glucuronide, genistein-4'-glucuronide, daidzein-7-sulfate, daidzein-4'-sulfate, genistein-7-sulfate, and genistein-4'-sulfate. We investigated the plasma profile of intact isoflavone metabolites in plasma obtained 1 to-7 h after orally administration of 50 g of kinako (baked soybean powder) to two healthy volunteers. The results of DAD analysis indicated that the main isoflavone metabolite peaks were identified on the HPLC chromatogram. Furthermore, the intact glycosides Din and Gin were detected in 1-h plasma samples by their positive electrospray ionization mass spectra, demonstrating that the glycosides Din and Gin can be absorbed from the gut.
机译:异黄酮在预防几种激素依赖性癌症和骨质疏松症中的作用备受关注。尽管对异黄酮进行了许多药代动力学研究,但人体中循环的结合物的实际类型和黄酮骨架上结合位点的位置仍不确定,因为通常通过测量游离液中的游离物来评估结合物中的结合物。选择性酶水解后获得的糖苷配基。使用高性能(HPLC)-UV-二极管阵列检测器(DAD)方法与固相萃取相结合,我们获得了异黄酮苷[大豆苷(Din)和genistin(Gin)]和完整的异黄酮代谢物的HPLC谱图在人血浆中:黄豆苷元,染料木黄酮,黄豆苷元7-葡糖醛酸,黄豆苷元4'-葡糖醛酸,染料木黄酮7-葡糖醛酸,染料木黄酮4'-葡糖醛酸,黄豆苷元7-硫酸盐,黄豆苷元4'-硫酸盐,染料木黄酮7 -硫酸盐和染料木黄酮-4'-硫酸盐。我们调查了向两名健康志愿者口服50克kinako(烤大豆粉)后1至7小时获得的血浆中完整异黄酮代谢物的血浆分布。 DAD分析的结果表明,HPLC色谱图中鉴定出了主要的异黄酮代谢物峰。此外,通过正电喷雾电离质谱在1小时血浆样品中检测到完整的糖苷Din和Gin,表明糖苷Din和Gin可从肠道吸收。

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