首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Metabolic profiling analysis of corilagin in vivo and in vitro using high-performance liquid chromatography quadrupole time-of-flight mass spectrometry
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Metabolic profiling analysis of corilagin in vivo and in vitro using high-performance liquid chromatography quadrupole time-of-flight mass spectrometry

机译:使用高效液相色谱法中的体内和体外核素和体外代谢分析分析四极针飞行时间质谱法

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摘要

Corilagin is an Ellagitannin with favorable pharmacological activities. But there was no report regarding the metabolism of corilagin in vitro or in vivo. In this study, the metabolic profile of corilagin in rats as well as in rat intestinal bacteria and liver microsomes incubation system in vitro were investigated comprehensively for the first time. Consequently, with the aid of sensitive HPLC-Q-TOF-MS/MS, corilagin and its twenty-four metabolites (fourteen phase II conjugate metabolites of corilagin, three hydrolyzed metabolites EA, GA, M3 and their seven derived metabolites) were absolutely or tentatively identified in rat biological samples (urine, feces, plasma and tissues) after oral administration of corilagin. In vitro, the three hydrolyzed metabolites were identified in rat intestinal microfiora and liver microsomes. These results demonstrated that corilagin itself not only could underwent extensive phase II metabolism in rats, but also could underwent hydrolysis reaction in rats as well as in rat intestinal bacteria and liver microsomes in vitro. This study is first report to identify phase II conjugate metabolites (except mono-methylate conjugated metabolites) of pure Ellagitannin and distribution of these metabolites in vivo. In addition, clear, detailed metabolic pathways of corilagin were shown to involve hydrolysis, methylation, glycosylation, reduction, glucuronidation and sulfation. (C) 2018 Elsevier B.V. All rights reserved.
机译:Corilagin是一种含有有利药理学活动的素鞣蛋白。但在体外或体内柯尔加蛋白的新陈代谢没有报道。在这项研究中,首次全面研究了大鼠核苷酸中的核苷酸和大鼠肠细菌和肝微粒体孵育系统的代谢谱。因此,借助于敏感的HPLC-Q-TOF-MS / MS,Corilagin及其二十四个代谢物(二十四个代谢物(柯尔加蛋白的十四阶段II缀合物,三种水解代谢物EA,Ga,M3及其七种衍生的代谢物)绝对或在口服核糖蛋白口服施用后大鼠生物样品(尿液,粪便,血浆和组织)中暂时鉴定。体外,在大鼠肠道微观和肝微粒体中鉴定了三种水解代谢物。这些结果表明,核素本身不仅可以在大鼠中进行广泛的阶段II代谢,而且还可以在大鼠以及大鼠肠道细菌和肝微粒体体外进行水解反应。本研究首先报告鉴定纯素蛋白(单甲基酯共轭代谢物除外)纯素蛋白蛋白和这些代谢物的分布在体内的分布。此外,证明了核素的详细,详细的代谢途径涉及水解,甲基化,糖基化,还原,葡糖醛酸化和硫酸化。 (c)2018年elestvier b.v.保留所有权利。

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