Coutts R T, Bolaji O O, Su P, Baker G B
Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, Canada.
Drug Metab Dispos. 1994 Sep-Oct;22(5):756-60.
Metabolism of methoxyphenamine (MP) was conducted in vitro using commercially available microsomes prepared from human AHH-1 TK+/-cells in which CYP2D6 had been expressed. This study has confirmed the involvement of CYP2D6 in the metabolism of MP to O-desmethylmethoxyphenamine (ODMP) and 5-hydroxymethoxyphenamine (5HMP), but not to N-desmethylmethoxyphenamine. It has also revealed that CYP2D6 catalyzes the formation of another, hitherto unknown, ring-hydroxylated metabolite of MP, isomeric with 5HMP. The analytical procedure used to identify and quantify MP metabolites involved an acetylation procedure that had distinct advantages. MP and its basic and amphoteric metabolites were all converted to neutral products that were efficiently extracted into organic solvent. The acetylated products also had good chromatographic properties and provided mass spectra that were readily interpretable. MP metabolism studies were also conducted with CYP2D6 microsomes in the presence of quinidine and quinine. The former was the more potent inhibitor of CYP2D6-catalyzed oxidations of MP. Its inclusion resulted in complete inhibition of metabolism of MP to ODMP, 5HMP, and its novel isomer. This study shows that the in vitro use of human cytochrome P450 isozyme preparations in drug metabolism studies can aid in the identification of possible in vivo metabolites of these drugs in humans and can provide information on putative drug-drug interactions.
使用从表达了CYP2D6的人AHH-1 TK+/-细胞制备的市售微粒体,在体外进行了甲氧那明(MP)的代谢研究。本研究证实了CYP2D6参与MP代谢生成O-去甲基甲氧那明(ODMP)和5-羟基甲氧那明(5HMP),但不参与生成N-去甲基甲氧那明。研究还揭示,CYP2D6催化生成另一种迄今未知的MP的环羟基化代谢物,它与5HMP是异构体。用于鉴定和定量MP代谢物的分析方法涉及一种具有明显优势的乙酰化程序。MP及其碱性和两性代谢物均转化为中性产物,可有效萃取到有机溶剂中。乙酰化产物还具有良好的色谱性质,并提供易于解释的质谱。在奎尼丁和奎宁存在的情况下,也用CYP2D6微粒体进行了MP代谢研究。前者是CYP2D6催化的MP氧化反应的更强效抑制剂。加入它会导致MP代谢生成ODMP、5HMP及其新异构体的反应完全受到抑制。本研究表明,在药物代谢研究中体外使用人细胞色素P450同工酶制剂有助于鉴定这些药物在人体内可能的体内代谢物,并可提供关于推定的药物-药物相互作用的信息。