Strolin Benedetti Margherita, Tipton Keith F, Whomsley Rhys
UCB Pharma, Non Clinical Development, Nanterre, France.
Fundam Clin Pharmacol. 2007 Oct;21(5):467-80. doi: 10.1111/j.1472-8206.2007.00498.x.
In this review, the major enzyme systems involved in vivo in the oxidative metabolism of xenobiotic amines in humans are discussed, i.e. the monooxygenases [cytochrome P450 system (CYPs) and flavin-containing monooxygenases (FMOs)] and the amine oxidases (AOs). Concerning the metabolism of xenobiotic amines (drugs in particular) by monoamine oxidases (MAOs), this aspect has been largely neglected in the past. An exception is the extensive investigation carried out on the inhibition of the metabolism of tyramine, when tyramine-containing food is ingested by subjects taking inhibitors of MAO A or of both MAO A and B. Moreover, investigations in humans on the metabolism of drug amines on the market by AOs, such as semicarbazide-sensitive amine oxidases (SSAOs) and polyamine oxidases (PAOs), are practically nonexistent, with the exception of amlodipine. In contrast to MAOs, monooxygenases (CYP isoenzymes more than FMOs) have been extensively investigated concerning their involvement in the metabolism of xenobiotics. It is possible that the contribution of AOs to the overall metabolism of xenobiotic amines in humans is underestimated or erroneously estimated, as most investigations of drug metabolism are performed using in vitro test systems optimized for CYP activity, such as liver microsomes, and most investigations of drug metabolism in vivo in humans carry out only the identification of the final, stable metabolites. However, for some drugs on the market, the involvement of MAOs in their in vivo metabolism in humans has been demonstrated recently, among these drugs citalopram, sertraline and the triptans are examples that can be mentioned.
在本综述中,讨论了人体内参与外源性胺氧化代谢的主要酶系统,即单加氧酶[细胞色素P450系统(CYPs)和含黄素单加氧酶(FMOs)]以及胺氧化酶(AOs)。关于单胺氧化酶(MAOs)对外源性胺(尤其是药物)的代谢,这方面在过去很大程度上被忽视了。一个例外是,当服用MAO A抑制剂或MAO A和B两者抑制剂的受试者摄入含酪胺的食物时,对酪胺代谢抑制进行了广泛研究。此外,除氨氯地平外,实际上不存在关于人体中AOs(如氨基脲敏感胺氧化酶(SSAOs)和多胺氧化酶(PAOs))对市售药物胺代谢的研究。与MAOs不同,单加氧酶(CYP同工酶比FMOs更受关注)在参与外源性物质代谢方面已得到广泛研究。由于大多数药物代谢研究是使用针对CYP活性优化的体外测试系统(如肝微粒体)进行的,并且大多数人体药物代谢体内研究仅进行最终稳定代谢物的鉴定,因此AOs对人体中外源性胺整体代谢的贡献可能被低估或错误估计。然而,对于一些市售药物,最近已证明MAOs参与其在人体中的体内代谢,其中西酞普兰、舍曲林和曲坦类药物就是可以提及的例子。