Hu Xiao-Xia, Yuan Ling-Jing, Fang Ping, Mao Yong-Hui, Zhan Yun-Yun, Li Xiang-Yu, Dai Da-Peng, Cai Jian-Ping, Hu Guo-Xin
Department of Pharmacology, School of Pharmacy of Wenzhou Medical University, Wenzhou, Zhejiang, China.
Department of Nephrology, Beijing Hospital, Ministry of Health, Beijing, China.
Drug Metab Pharmacokinet. 2016 Apr;31(2):133-8. doi: 10.1016/j.dmpk.2016.01.001. Epub 2016 Jan 22.
Genetic polymorphisms of CYP2D6 significantly influence the efficacy and safety of some drugs, which might cause adverse effects and therapeutic failure. We aimed at investigating the role of CYP2D6 in the metabolism of citalopram and identifying the effect of 24 CYP2D6 allelic variants we found in Chinese Han population on the metabolism of citalopram in vitro. These CYP2D6 variants expressed by insect cells system were incubated with 10-1000 μM citalopram for 30 min at 37 °C and the reaction was terminated by cooling to -80 °C immediately. Citalopram and its metabolites were analyzed by high-performance liquid chromatography (HPLC). The intrinsic clearance (Vmax/Km) values of the variants toward citalopram metabolites were significantly altered, 38-129% for demethylcitalopram and 13-138% for citalopram N-oxide when compared with CYP2D6*1. Most of the tested rare alleles exhibited significantly decreased values due to increased Km and/or decreased Vmax values. We conclude that recombinant system could be used to investigate the enzymes involved in drug metabolism and these findings suggest that more attention should be paid to subjects carrying these CYP2D6 alleles when administering citalopram in the clinic.
细胞色素P450 2D6(CYP2D6)的基因多态性显著影响某些药物的疗效和安全性,这可能会导致不良反应和治疗失败。我们旨在研究CYP2D6在西酞普兰代谢中的作用,并确定我们在中国汉族人群中发现的24种CYP2D6等位基因变异体对西酞普兰体外代谢的影响。将昆虫细胞系统表达的这些CYP2D6变异体与10 - 1000μM西酞普兰在37℃孵育30分钟,然后立即冷却至-80℃终止反应。采用高效液相色谱法(HPLC)分析西酞普兰及其代谢产物。与CYP2D6*1相比,各变异体对西酞普兰代谢产物的内在清除率(Vmax/Km)值显著改变,去甲基西酞普兰为38 - 129%,西酞普兰N -氧化物为13 - 138%。由于Km增加和/或Vmax值降低,大多数测试的罕见等位基因表现出显著降低的值。我们得出结论,重组系统可用于研究参与药物代谢的酶,这些发现表明,临床应用西酞普兰时,应更加关注携带这些CYP2D6等位基因的患者。