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钩藤中钩藤碱和异钩藤碱差向异构体在大鼠肝微粒体中的体外立体选择性代谢

Stereoselective in vitro metabolism of rhynchophylline and isorhynchophylline epimers of Uncaria rhynchophylla in rat liver microsomes.

作者信息

Wang Xin, Qiao Zhou, Liu Jia, Zheng Mei, Liu Wenyuan, Wu Chunyong

机构信息

a Department of Pharmaceutical Analysis , China Pharmaceutical University , Nanjing , China.

b Pharmic Laboratory Animal Center , China Pharmaceutical University , Nanjing , China , and.

出版信息

Xenobiotica. 2018 Oct;48(10):990-998. doi: 10.1080/00498254.2017.1390627. Epub 2017 Nov 10.

Abstract

1. The objective was to investigate the underlying mechanism of the stereoselectivity in the metabolism of rhynchophylline (RIN) and isorhynchophylline (IRN) epimers in rat liver microsomes (RLM). 2. After incubation, eight metabolites of RIN (M1-5) and IRN (M6-8) reacted at A- and C-ring were identified using LC-Q-TOF/MS. Metabolic pathways included oxidation, hydroxylation, N-oxidation and dehydrogenation. In addition, hydroxylation at A-ring was the major metabolic pathway for RIN whereas the oxidation at C-ring was the major one for IRN. 3. Enzyme kinetics showed that the intrinsic clearance (CL) for IRN elimination was 1.9-fold higher than RIN and the degradation half-life (T) of RIN was 4.7-fold higher than that of IRN, indicating IRN was more favorable to be metabolized than RIN in RLM. 4. Data from chemical inhibition study demonstrated CYP3A was the predominant isoform involved in the metabolic elimination of both epimers, as well as the formation of M1-8. 5. In conclusion, data revealed that due to the spatial configurations at C-7 position, RIN and IRN epimers possessed different hepatic metabolic pathways and elimination rates which were mainly mediated by CYP3A.

摘要
  1. 目的是研究大鼠肝微粒体(RLM)中钩藤碱(RIN)和异钩藤碱(IRN)差向异构体代谢的立体选择性潜在机制。2. 孵育后,使用液相色谱-四极杆飞行时间质谱(LC-Q-TOF/MS)鉴定了RIN的8种代谢产物(M1-5)和IRN的8种代谢产物(M6-8),它们在A环和C环发生反应。代谢途径包括氧化、羟基化、N-氧化和脱氢。此外,A环羟基化是RIN的主要代谢途径,而C环氧化是IRN的主要代谢途径。3. 酶动力学表明,IRN消除的内在清除率(CL)比RIN高1.9倍,RIN的降解半衰期(T)比IRN高4.7倍,表明在RLM中IRN比RIN更易于代谢。4. 化学抑制研究数据表明,CYP3A是参与两种差向异构体代谢消除以及M1-8形成的主要同工酶。5. 总之,数据显示由于C-7位的空间构型,RIN和IRN差向异构体具有不同的肝脏代谢途径和消除速率,主要由CYP3A介导。

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