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采用超高效液相色谱-高分辨质谱联用技术和 Compound Discoverer 软件检测和鉴定大鼠、犬、猴和人肝微粒体中的欧前胡素代谢物。

Detection and identification of imperatorin metabolites in rat, dog, monkey, and human liver microsomes by ultra-high-performance liquid chromatography combined with high-resolution mass spectrometry and Compound Discoverer software.

机构信息

Department of Pharmacy, Women and Children's Medical Center, Guangzhou, Guangdong Province, China.

出版信息

Biomed Chromatogr. 2023 Oct;37(10):e5702. doi: 10.1002/bmc.5702. Epub 2023 Jul 16.

Abstract

Imperatorin, a furanocoumarin that widely exists in many umbelliferous herbs, has been demonstrated to have a variety of pharmacological effects, including anti-inflammatory, antiosteoporosis, and antitumor activities. The purpose of this study was to investigate the metabolism of imperatorin using liver microsomes. The metabolites were generated by individually incubating imperatorin with rat, dog, monkey, and human liver microsomes. To trap the reactive metabolites during microsomal metabolism, glutathione (GSH) was included in the incubation. A LC technique coupled with benchtop orbitrap MS with full mass/data-dependent tandem mass spectrometry acquisition mode was used to detect and identify the generated metabolites. The possible structures of the metabolites were characterized according to their accurate masses and fragment ions. Under the current conditions, a total of 10 metabolites, including four GSH adducts, were identified. The results indicated that imperatorin underwent extensive metabolic reactions including hydroxylation, oxidation, glucuronidation, and GSH conjugation. This study provides essential data on the metabolism of imperatorin, which will be helpful for us to understand the safety and efficacy of this bioactive compound.

摘要

欧前胡素是一种广泛存在于伞形科植物中的呋喃香豆素,已被证明具有多种药理作用,包括抗炎、抗骨质疏松和抗肿瘤活性。本研究旨在使用肝微粒体研究欧前胡素的代谢。将欧前胡素分别与大鼠、狗、猴和人肝微粒体孵育,生成代谢物。为了在微粒体代谢过程中捕获反应性代谢物,孵育液中包含了谷胱甘肽(GSH)。采用 LC 技术与台式轨道阱 MS 联用,全质量/数据依赖串联质谱采集模式,用于检测和鉴定生成的代谢物。根据代谢物的精确质量和碎片离子,推测出其可能的结构。在当前条件下,共鉴定出 10 种代谢物,包括 4 种 GSH 加合物。结果表明,欧前胡素发生了广泛的代谢反应,包括羟化、氧化、葡萄糖醛酸化和 GSH 缀合。本研究提供了欧前胡素代谢的重要数据,有助于我们了解这种生物活性化合物的安全性和功效。

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