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奥美拉唑在禁食72小时大鼠体内的药代动力学

Pharmacokinetics of omeprazole in rats with water deprivation for 72 hours.

作者信息

Lee Dae Y, Shin Hyun S, Lee Inchul, Lee Myung G

机构信息

College of Pharmacy and Research Institute of Pharmaceutical Sciences, Seoul National University, Seoul, Republic of Korea.

出版信息

Biopharm Drug Dispos. 2006 Nov;27(8):361-70. doi: 10.1002/bdd.516.

Abstract

Dehydration can occur by excessive sweating, polyuria, severe diarrhea and hyperthermia. Previous studies reported that the expressions of CYP1A1/2 and 3A1(23)/2 were not changed in male Sprague-Dawley rats with 72 h water deprivation (dehydrated rats), and that the metabolism of omeprazole is mainly catalysed via CYP1A1/2, 2D1 and 3A23/2 in rats. Hence, it could be expected that the hepatic metabolism of omeprazole would not be changed considerably in dehydrated rats, if the contribution of CYP2D1 to the metabolism of omeprazole in dehydrated rats is not considerable. Therefore, the pharmacokinetics of omeprazole were compared after intravenous (20 mg/kg) and oral (40 mg/kg) administration in control rats and in dehydrated rats. After intravenous administration, the time-averaged nonrenal clearance (Cl(nr)) values of omeprazole were comparable between the two groups of rats. This could be supported by comparable in vitro intrinsic clearance (Cl(int)) values for the disappearance of omeprazole in rat hepatic microsomes and the comparable free (unbound to plasma proteins) fractions of omeprazole in plasma in the two groups of rats. After oral administration, the AUC values of omeprazole were also comparable in the two groups of rats. The above data suggest that the dehydration state did not affect considerably the pharmacokinetics of omeprazole in rats.

摘要

脱水可因出汗过多、多尿、严重腹泻及体温过高而发生。既往研究报道,在72小时禁水的雄性Sprague-Dawley大鼠(脱水大鼠)中,CYP1A1/2和3A1(23)/2的表达未发生改变,且在大鼠中奥美拉唑的代谢主要由CYP1A1/2、2D1和3A23/2催化。因此,可以预期,如果CYP2D1对脱水大鼠中奥美拉唑代谢的贡献不大,那么脱水大鼠中奥美拉唑的肝脏代谢不会有显著改变。因此,比较了在对照大鼠和脱水大鼠中静脉注射(20 mg/kg)和口服(40 mg/kg)奥美拉唑后的药代动力学。静脉注射后,两组大鼠中奥美拉唑的时间平均非肾清除率(Cl(nr))值相当。这可以通过两组大鼠中大鼠肝微粒体中奥美拉唑消失的体外内在清除率(Cl(int))值相当以及血浆中奥美拉唑的游离(未与血浆蛋白结合)分数相当来支持。口服给药后,两组大鼠中奥美拉唑的AUC值也相当。上述数据表明,脱水状态对大鼠中奥美拉唑的药代动力学没有显著影响。

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