Shi Yuanyuan, Xia Yuanyuan, Wang Jueyu, He Jinfeng, Feng Feng, Liu Wenyuan
Department of Pharmaceutical Analysis, China Pharmaceutical University, Nanjing, 210009, China.
Key Laboratory of Biomedical Functional Materials, China Pharmaceutical University, Nanjing 211198, China.
J Pharm Biomed Anal. 2016 Sep 10;129:60-69. doi: 10.1016/j.jpba.2016.06.047. Epub 2016 Jun 25.
Picrasma quassioides (D. Don) Benn. is a traditional Chinese medicine used clinically to treat gastrointestinal disorders and as a vermifuge. 5-Hydroxy-4-methoxycanthin-6-one (CAN), a major canthinone alkaloid found in P. quassioides, has significant pharmacological activities. In the present study, a method using liquid chromatography-quadrupole time-of-flight tandem mass spectrometry together with multiple data processing techniques, including extracted ion chromatogram, multiple mass defect filter, precursor/product ion scanning and neutral loss scanning was developed to screen and characterize the phase I and II metabolites of CAN in plasma, bile, urine and feces of rats after a single oral dose of 20mg/kg. A total of 17 metabolites were tentatively or conclusively identified. Pathways for the metabolism of CAN have been proposed, and include hydroxylation, N-decarbonylation, methylation, oxidation and sequential conjugation. A previously unknown metabolically active site at the C4-C6 position and a novel N-decarbonylation-oxidation metabolic pathway for the prototypical canthinone alkaloid, CAN, were discovered. Our results provide valuable information about the in vivo metabolism of CAN that can also be used as a comprehensive guide for the biotransformation of other canthinone alkaloids.
苦木(Picrasma quassioides (D. Don) Benn.)是一种临床上用于治疗胃肠道疾病和驱虫的传统中药。5-羟基-4-甲氧基-咔啉-6-酮(CAN)是苦木中发现的一种主要咔啉酮生物碱,具有显著的药理活性。在本研究中,开发了一种使用液相色谱-四极杆飞行时间串联质谱联用多种数据处理技术的方法,包括提取离子色谱图、多质量缺陷过滤器、前体/产物离子扫描和中性丢失扫描,以筛选和表征大鼠单次口服20mg/kg CAN后血浆、胆汁、尿液和粪便中CAN的I相和II相代谢产物。共初步或最终鉴定出17种代谢产物。已提出CAN的代谢途径,包括羟基化、N-脱羰基化、甲基化、氧化和顺序结合。发现了一个位于C4-C6位置的先前未知的代谢活性位点以及原型咔啉酮生物碱CAN的一条新的N-脱羰基化-氧化代谢途径。我们的结果提供了有关CAN体内代谢的有价值信息,也可作为其他咔啉酮生物碱生物转化的综合指南。