Xiao Sa, Huang Ya-Jun, Sun Zhi-Liang, Liu Zhao-Ying
Hunan Co-Innovation Center for Utilization of Botanical Functional Ingredients, College of Veterinary Medicine, Hunan Agricultural University, Changsha, Hunan, 410128, China.
Hunan Engineering Research Center of Veterinary Drug, College of Veterinary Medicine, Hunan Agricultural University, Changsha, Hunan, 410128, China.
Rapid Commun Mass Spectrom. 2017 Feb 15;31(3):309-314. doi: 10.1002/rcm.7797.
Koumine is one of the major components of total alkaloids from Gelsemium. Koumine possesses a variety of interesting pharmacological effects, including anti-tumor, anti-inflammatory, and anxiolytic activities. It might be a promising lead drug because of its pharmacological activities and mild toxicity. However, little information is available on the metabolism of koumine.
A rapid and accurate high-performance liquid chromatography/quadrupole-time-of-flight (HPLC/QqTOF) mass spectrometry method was applied to characterize koumine metabolites. Multiple scans of koumine metabolites, which were formed in rat liver S9, were automatically performed simultaneously through auto MS/MS mode acquisition in only a 30-min analysis. The structural elucidation of these metabolites was performed by comparing their changes in accurate molecular masses and product ions with those of the parent drug or metabolites.
As a result, a total of eleven metabolites of koumine were identified, of which nine new metabolites were found. The present results showed that the N-demethylenation, hydrogenation and the oxidation were the three main metabolic pathways of koumine.
This was the first investigation of in vitro metabolism of koumine in rat liver S9 using a sensitive and specific HPLC/QqTOF-MS method. The possible metabolic pathways of koumine were tentatively proposed based on the structural elucidations of these metabolites. This work may be useful in the in vivo metabolism of koumine in animals and humans. Copyright © 2016 John Wiley & Sons, Ltd.
钩吻素子是钩吻总生物碱的主要成分之一。钩吻素子具有多种有趣的药理作用,包括抗肿瘤、抗炎和抗焦虑活性。由于其药理活性和低毒性,它可能是一种有前途的先导药物。然而,关于钩吻素子的代谢情况知之甚少。
采用快速准确的高效液相色谱/四极杆-飞行时间(HPLC/QqTOF)质谱法对钩吻素子的代谢产物进行表征。在仅30分钟的分析中,通过自动MS/MS模式采集,同时自动对在大鼠肝脏S9中形成的钩吻素子代谢产物进行多次扫描。通过比较这些代谢产物与母体药物或代谢产物的精确分子量和产物离子的变化来进行结构解析。
结果共鉴定出11种钩吻素子的代谢产物,其中发现9种新的代谢产物。目前的结果表明,N-去亚甲基化、氢化和氧化是钩吻素子的三种主要代谢途径。
这是首次使用灵敏且特异的HPLC/QqTOF-MS方法对大鼠肝脏S9中钩吻素子的体外代谢进行研究。基于这些代谢产物的结构解析,初步提出了钩吻素子可能的代谢途径。这项工作可能对钩吻素子在动物和人体内的体内代谢研究有用。版权所有© 2016约翰威立父子有限公司。