Skibiński Robert, Trawiński Jakub, Gawlik Maciej
Department of Medicinal Chemistry, Faculty of Pharmacy, Medical University of Lublin, Jaczewskiego 4, 20-090 Lublin, Poland.
Molecules. 2021 Jun 22;26(13):3794. doi: 10.3390/molecules26133794.
Determination of the metabolism pathway of xenobiotics undergoing the hepatic pass is a crucial aspect in drug development since the presence of toxic biotransformation products may result in significant side effects during the therapy. In this study, the complete hepatic metabolism pathway of dapoxetine established according to the human liver microsome assay with the use of a high-resolution LC-MS system was described. Eleven biotransformation products of dapoxetine, including eight metabolites not reported in the literature so far, were detected and identified. -dealkylation, hydroxylation, -oxidation and dearylation were found to be the main metabolic reactions for the investigated xenobiotic. In silico analysis of toxicity revealed that the reaction of didesmethylation may contribute to the increased carcinogenic potential of dapoxetine metabolites. On the other hand, -oxidation and aromatic hydroxylation biotransformation reactions possibly lead to the formation of mutagenic compounds.
确定经历肝首过效应的外源化合物的代谢途径是药物开发中的一个关键方面,因为有毒生物转化产物的存在可能在治疗过程中导致显著的副作用。在本研究中,描述了使用高分辨率液相色谱 - 质谱系统根据人肝微粒体试验建立的达泊西汀完整肝代谢途径。检测并鉴定了达泊西汀的11种生物转化产物,包括8种迄今文献中未报道的代谢物。N - 去烷基化、羟基化、ω - 氧化和脱芳基化被发现是所研究的外源化合物的主要代谢反应。毒性的计算机模拟分析表明,双去甲基化反应可能导致达泊西汀代谢物致癌潜力增加。另一方面,ω - 氧化和芳香族羟基化生物转化反应可能导致诱变化合物的形成。