首页> 外文期刊>The Journal of automatic chemistry >Metabolite Profiling, Pharmacokinetics, and In Vitro Glucuronidation of Icaritin in Rats by Ultra-Performance Liquid Chromatography Coupled with Mass Spectrometry
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Metabolite Profiling, Pharmacokinetics, and In Vitro Glucuronidation of Icaritin in Rats by Ultra-Performance Liquid Chromatography Coupled with Mass Spectrometry

机译:超高效液相色谱-质谱联用分析大鼠体内伊立肽的代谢谱,药代动力学和体外葡萄糖醛酸化

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Icaritin is a naturally bioactive flavonoid with several significant effects. This study aimed to clarify the metabolite profiling, pharmacokinetics, and glucuronidation of icaritin in rats. An ultra-performance liquid chromatography coupled with mass spectrometry (UPLC-MS) assay was developed and validated for qualitative and quantitative analysis of icaritin. Glucuronidation rates were determined by incubating icaritin with uridine diphosphate glucuronic acid- (UDPGA-) supplemented microsomes. Kinetic parameters were derived by appropriate model fitting. A total of 30 metabolites were identified or tentatively characterized in rat biosamples based on retention times and characteristic fragmentations, following proposed metabolic pathway which was summarized. Additionally, the pharmacokinetics parameters were investigated after oral administration of icaritin. Moreover, icaritin glucuronidation in rat liver microsomes was efficient with (the intrinsic clearance) values of 1.12 and 1.56?mL/min/mg for icaritin-3-O-glucuronide and icaritin-7-O-glucuronide, respectively. Similarly, the values of icaritin-3-O-glucuronide and icaritin-7-O-glucuronide in rat intestine microsomes (RIM) were 1.45 and 0.86?mL/min/mg, respectively. Taken altogether, dehydrogenation at isopentenyl group and glycosylation and glucuronidation at the aglycone were main biotransformation process in vivo. The general tendency was that icaritin was transformed to glucuronide conjugates to be excreted from rat organism. In conclusion, these results would improve our understanding of metabolic fate of icaritin in vivo.
机译:伊卡瑞汀是一种天然的生物活性类黄酮,具有多种重要作用。这项研究旨在阐明大鼠中伊卡立汀的代谢谱,药代动力学和葡萄糖醛酸苷化。开发了一种超高效液相色谱-质谱联用(UPLC-MS)分析方法,并验证了该方法可用于定性和定量分析伊卡利丁。葡糖醛酸化率是通过将icaritin与尿苷二磷酸葡糖醛酸(-UDPGA-)补充的微粒体孵育而确定的。通过适当的模型拟合得出动力学参数。根据保留的时间和特征性断裂,在大鼠生物样品中共鉴定或初步鉴定了30种代谢物,并遵循建议的代谢途径进行了总结。另外,口服伊卡立汀后,研究了药代动力学参数。此外,大鼠肝脏微粒体中的icaritin葡萄糖醛酸化作用是有效的,icaritin-3-O-葡萄糖醛酸和icaritin-7-O-葡萄糖醛酸的(固有清除率)分别为1.12和1.56?mL / min / mg。同样,大鼠肠微粒体(RIM)中icaritin-3-O-葡萄糖醛酸和icaritin-7-O-葡萄糖醛酸的值分别为1.45和0.86?mL / min / mg。总而言之,异戊烯基上的脱氢以及糖苷配基上的糖基化和葡糖醛酸化是体内的主要生物转化过程。通常的趋势是,icaritin被转化为葡糖醛酸结合物以从大鼠生物体中排出。总而言之,这些结果将增进我们对体内icaritin代谢命运的了解。

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