Hoshino Motohiro, Ikarashi Nobutomo, Hirobe Ryuta, Hayashi Mami, Hiraoka Hironori, Yokobori Kohsuke, Ochiai Takumi, Kusunoki Yoshiki, Kon Risako, Tajima Masataka, Ochiai Wataru, Sugiyama Kiyoshi
Department of Clinical Pharmacokinetics, Hoshi University.
Biol Pharm Bull. 2015;38(3):454-60. doi: 10.1248/bpb.b14-00764. Epub 2015 Jan 14.
We have previously shown that menthol attenuates the anticoagulant effect of warfarin by increasing the expression levels of CYP3A and CYP2C in the liver. This study evaluated the effects of menthol on the pharmacokinetics of the CYP3A substrate triazolam and the CYP2C substrate phenytoin. Menthol was orally administered to mice for 7 d. Twenty-four hours after the administration of menthol, triazolam was orally administered, and the plasma concentration was measured. In addition, the CYP3A metabolic activity for triazolam and the CYP3A expression level in the liver were determined. The effects of menthol on the pharmacokinetics of phenytoin were assessed in the same manner. In the menthol-treated group, the area under the blood concentration-time curve (AUC) of triazolam was lower and its clearance was higher compared with the control group. The CYP3A metabolic activity and CYP3A expression level in the liver were significantly increased in the menthol-treated group compared with the control group. Similarly, the AUC of phenytoin was lower and the hepatic CYP2C expression level was higher in the menthol-treated group. Thus, menthol lowered the plasma concentrations of triazolam and phenytoin when concurrently administered. These effects may be attributed to an increased metabolic activity for these drugs due to the increased expression of CYP3A and CYP2C in the liver.
我们之前已经表明,薄荷醇通过增加肝脏中CYP3A和CYP2C的表达水平来减弱华法林的抗凝作用。本研究评估了薄荷醇对CYP3A底物三唑仑和CYP2C底物苯妥英药代动力学的影响。给小鼠口服薄荷醇7天。在给予薄荷醇24小时后,口服三唑仑,并测量血浆浓度。此外,测定了三唑仑的CYP3A代谢活性和肝脏中CYP3A的表达水平。以相同方式评估薄荷醇对苯妥英药代动力学的影响。在薄荷醇治疗组中,与对照组相比,三唑仑的血药浓度-时间曲线下面积(AUC)较低,清除率较高。与对照组相比,薄荷醇治疗组肝脏中的CYP3A代谢活性和CYP3A表达水平显著升高。同样,薄荷醇治疗组中苯妥英的AUC较低,肝脏CYP2C表达水平较高。因此,同时给予薄荷醇会降低三唑仑和苯妥英的血浆浓度。这些影响可能归因于肝脏中CYP3A和CYP2C表达增加导致这些药物的代谢活性增强。