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首页> 外文期刊>Biomedical Chromatography: An International Journal Devoted to Research in Chromatographic Methodologies and Their Applications in the Biosciences >In vitro and in vivo identification of metabolites of magnoflorine by LC LTQ-Orbitrap MS and its potential pharmacokinetic interaction in Coptidis Rhizoma decoction in rat
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In vitro and in vivo identification of metabolites of magnoflorine by LC LTQ-Orbitrap MS and its potential pharmacokinetic interaction in Coptidis Rhizoma decoction in rat

机译:LC LTQ-Orbitrap MS在大鼠体内和体内鉴定厚朴素的代谢产物及其在黄连汤中的潜在药代动力学相互作用

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Magnoflorine, an important aporphine alkaloid in Coptidis Rhizoma, is increasingly attracting research attention because of its pharmacological activities. The in vivo and in vitro metabolism of magnoflorine was investigated by LC LTQ-Orbitrap MS. In vivo samples including rat urine, feces, plasma and bile were collected separately after both oral (50mgkg(-1)) and intravenous administration (10mgkg(-1)) of magnoflorine, along with in vitro samples prepared by incubating magnoflorine with rat intestinal flora and liver microsome. As a result, 12 metabolites were found in biological samples. Phase I metabolites were identified in all biological samples, while phase II metabolites were mainly detected in urine, plasma and bile. In a pharmacokinetic study, rats were not only dosed with magnoflorine via oral (15, 30 and 60mgkg(-1)) and intravenous administration (10mgkg(-1)) but also dosed with Coptidis Rhizoma decoction (equivalent to 30mgkg(-1) of magnoflorine) by intragastric administration to investigate the interaction of magnoflorine with the rest of compounds in Coptidis Rhizoma. Studies showed that magnoflorine possessed lower bioavailability and faster absorption and elimination. However, pharmacokinetic parameters altered significantly (p<0.05) when magnoflorine was administered in Coptidis Rhizoma decoction. Oral gavage of Coptidis Rhizoma decoction decreased the absorption and elimination rates of magnoflorine, which revealed that there existed pharmacokinetic interactions between magnoflorine and the rest of ingredients in Coptidis Rhizoma. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:洋紫花碱是黄连中重要的阿菲碱生物碱,由于其药理活性而日益引起研究关注。 LC LTQ-Orbitrap MS研究了厚朴素的体内和体外代谢。口服(50mgkg(-1))和静脉内给药(10mgkg(-1))的木兰花碱后,分别收集包括大鼠尿液,粪便,血浆和胆汁在内的体内样品,以及通过将木兰花碱与大鼠肠温育制备的体外样品菌群和肝脏微粒体。结果,在生物样品中发现了12种代谢产物。在所有生物样品中均鉴定出I期代谢物,而II期代谢物主要在尿液,血浆和胆汁中检出。在药代动力学研究中,大鼠不仅通过口服(15、30和60mgkg(-1))和静脉内给药(10mgkg(-1))服用了厚朴素,还服用了黄连汤(相当于30mgkg(-1))胃内给药法研究木犀草碱与黄连中其余化合物的相互作用。研究表明,厚朴花碱具有较低的生物利用度,吸收和清除速度更快。但是,当在黄连汤中服用木兰花碱时,药代动力学参数发生了显着变化(p <0.05)。黄连汤的口服灌胃降低了厚朴花碱的吸收和消除速率,这表明厚朴黄花与其余成分之间存在药代动力学的相互作用。版权所有(c)2015 John Wiley&Sons,Ltd.

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