Department of Hospital Pharmacy, Faculty of Medicine, University of the Ryukyus, 207 Uehara, Nishihara-Cho, Okinawa 903-0215, Japan.
J Chromatogr B Analyt Technol Biomed Life Sci. 2011 Aug 15;879(24):2465-70. doi: 10.1016/j.jchromb.2011.06.046. Epub 2011 Jul 6.
Studies investigating the relationship between CYP2C19 genotype and the stereoselective metabolism of omeprazole have not been reported. In the present study, we developed a simple and sensitive analytical method based on column switching reversed phase high-performance liquid chromatography (HPLC) with UV detection to determine the concentrations of (R)- and (S)-omeprazole and of its principal metabolites, (R)- and (S)-5-hydroxyomeprazole, and the non-chiral, omeprazole sulfone, in human plasma. Sample preparation involved liquid-liquid extraction with diethyl ether:dichloromethane (60:40, v/v) followed by clean-up on a TSK BSA-ODS/S column (5 μm, 10 mm × 4.6mm i.d.) using phosphate buffer:acetonitrile (97:3, v/v, pH 6.4). After column switching, separation was performed on a Shiseido CD-ph chiral column (5 μm, 150 mm × 4.6mm i.d.) using phosphate buffer:methanol (45:55, v/v, pH 5.0) as mobile phase. The limit of quantitation (LOQ) was 5 ng/mL for all analytes with intra- and inter-day precisions (as coefficient of variation) of <9.5% and <9.6%, respectively for all analytes. The present method was successfully applied to a chiral pharmacokinetic study of omeprazole in human volunteers with different CYP2C19 genotypes. The results show that the formation of (R)-5-hydroxyomeprazole gives the best correlation with CYP2C19 genotype.
目前尚未有研究报道 CYP2C19 基因型与奥美拉唑立体选择性代谢之间的关系。本研究建立了一种基于柱切换反相高效液相色谱(HPLC)-紫外检测的简单、灵敏的分析方法,用于测定人血浆中奥美拉唑(R)-和(S)-对映体及其主要代谢物(R)-和(S)-5-羟奥美拉唑,以及非手性奥美拉唑砜的浓度。样品预处理采用二乙醚:二氯甲烷(60:40,v/v)进行液-液萃取,然后在 TSK BSA-ODS/S 柱(5μm,10mm×4.6mm i.d.)上用磷酸盐缓冲液:乙腈(97:3,v/v,pH6.4)进行净化。柱切换后,在 Shiseido CD-ph 手性柱(5μm,150mm×4.6mm i.d.)上用磷酸盐缓冲液:甲醇(45:55,v/v,pH5.0)作为流动相进行分离。所有分析物的定量下限(LOQ)均为 5ng/mL,日内和日间精密度(以变异系数表示)分别<9.5%和<9.6%。本方法成功应用于不同 CYP2C19 基因型的奥美拉唑人体志愿者手性药代动力学研究。结果表明,(R)-5-羟奥美拉唑的形成与 CYP2C19 基因型相关性最好。