Yang Kyung H, Jung Young S, Lee Dae Y, Lee Joo H, Kim Young C, Lee Myung G
College of Pharmacy and Research Institute of Pharmaceutical Sciences, Seoul National University, San 56-1, Shinlim-Dong, Kwanak-Gu, Seoul 151-742, South Korea.
Drug Metab Dispos. 2008 May;36(5):811-5. doi: 10.1124/dmd.107.018499. Epub 2008 Feb 28.
It has been reported that theophylline is primarily metabolized via hepatic CYP1A1/2, 2B1/2, and 3A1/2, and 1,3-dimethyluric acid (1,3-DMU) is primarily formed via CYP1A1/2 in rats. Compared with control rats, the expression of CYP1A subfamily, 2B1/2, and 3A subfamily significantly decreased 24 h (24-h KPLPS rats) after intravenous administration of lipopolysaccharide derived from Klebsiella pneumoniae (KPLPS) to rats but returned to that in control rats after 96 h (96-h KPLPS rats). After intravenous or oral administration of theophylline to 24-h KPLPS rats, the values for the total area under the plasma concentration-time curve from time zero to time infinity of theophylline and 1,3-DMU became significantly greater (46.5 and 34.0% increase after intravenous and oral administration, respectively) and smaller (36.3 and 21.6% decrease, respectively), respectively. Because theophylline is a low hepatic extraction ratio drug in rats, the above results could have been due to significantly slower CL(int) for the disappearance of theophylline and for the formation of 1,3-DMU (37.1 and 60.6% decrease, respectively). However, in 96-h KPLPS rats, the pharmacokinetic parameters of theophylline and 1,3-DMU returned fully or partially to those in control rats. These findings indicate the existence of time-dependent effects of KPLPS on the pharmacokinetics of theophylline and 1,3-DMU in rats.
据报道,茶碱主要通过肝脏的CYP1A1/2、2B1/2和3A1/2进行代谢,在大鼠中,1,3 - 二甲基尿酸(1,3 - DMU)主要通过CYP1A1/2形成。与对照大鼠相比,给大鼠静脉注射肺炎克雷伯菌来源的脂多糖(KPLPS)后24小时(24小时KPLPS大鼠),CYP1A亚家族、2B1/2和3A亚家族的表达显著降低,但在96小时后(96小时KPLPS大鼠)恢复到对照大鼠的水平。给24小时KPLPS大鼠静脉或口服茶碱后,茶碱和1,3 - DMU从时间零到时间无穷大的血浆浓度 - 时间曲线下的总面积值分别显著增大(静脉注射和口服后分别增加46.5%和34.0%)和减小(分别降低36.3%和21.6%)。由于茶碱在大鼠中是低肝脏提取率药物,上述结果可能是由于茶碱消失和1,3 - DMU形成的体内清除率(CL(int))显著减慢(分别降低37.1%和60.6%)。然而,在96小时KPLPS大鼠中,茶碱和1,3 - DMU的药代动力学参数完全或部分恢复到对照大鼠的水平。这些发现表明KPLPS对大鼠体内茶碱和1,3 - DMU的药代动力学存在时间依赖性效应。