首页> 外文期刊>Journal of Ethnopharmacology: An Interdisciplinary Journal Devoted to Bioscientific Research on Indigenous Drugs >Glycyrrhizin accelerates the metabolism of triptolide through induction of CYP3A in rats
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Glycyrrhizin accelerates the metabolism of triptolide through induction of CYP3A in rats

机译:甘草甜素通过诱导CYP3A促进大鼠雷公藤甲素的代谢

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Ethnopharmacological relevance Triptolide (TP), a major active component of Tripterygium wilfordii, possesses various pharmacological activities with narrow therapeutic window and severe toxicities. Glycyrrhizin (GL), the principal bioactive ingredient of licorice root extract, has been reported to be concomitantly administered with TP in treatment of rheumatoid arthritis with the aim of potentiated efficacy and reduced toxicity. The aim of the study is to investigate the effect of GL on the pharmacokinetic profiles of TP and related mechanisms. Materials and methods Male and female Wistar rats were randomly divided into two groups: Control group and GL group (pretreated with GL at 100 mg/kg/day for seven consecutive days). After oral administration of TP at a single dose of 450 μg/kg, plasma concentrations of TP were determined using HPLC-MS/MS and pharmacokinetic parameters were calculated by non-compartmental analysis using Phoenix WinNonlin 6.3 software. Since CYP3A is the primary isoform of cytochrome P450s responsible for the metabolism of TP, we further determined to what extent ketoconazole (KCZ), a potent CYP3A inhibitor, could influence the effect of GL on the pharmacokinetics of TP by comparing the pharmacokinetic profiles of TP in GL group (pretreated with GL) and GL+KCZ group (pretreated with both GL and KCZ), as well as verified whether pretreatment of GL could induce the activity of hepatic CYP3A by comparing the AUC parameters after intravenous administration of midazolam (MDZ), a typical probe drug for CYP3A, in rats pretreated with vehicle or GL. Results Our study revealed marked differences in pharmacokinetic profiling patterns of TP between male and female rats in the Control group; the plasma level of TP in males was far lower than that in females. After pretreatment with GL, the pharmacokinetic profiles of TP were significantly altered in both male and female rats; a remarkable decrease was found in the value of AUC∞, MRT∞ and t1/2 in the GL group, compared with the Control group. But such a decrease was reversed by KCZ; compared with the GL group, the values of AUC ∞, MRT∞ and t1/2 were significantly increased in the GL+KCZ group. Pretreatment with GL notably increased the AUC∞ of 1'-hydroxymidazolam (OH-MDZ) and the ratio of AUC ∞ of OH-MDZ to MDZ, demonstrating induction of the activity of CYP3A by GL. Conclusion Pretreatment with GL significantly accelerates the metabolic elimination of TP from the body mainly through induction of hepatic CYP3A activity. These results may help explain why toxicity of TP may be attenuated with concomitant use of GL.
机译:民族药理意义雷公藤内酯醇(雷公藤)是雷公藤的主要活性成分,具有多种药理活性,具有狭窄的治疗范围和严重的毒性。据报道,甘草根提取物的主要生物活性成分甘草甜素(GL)与TP一起用于类风湿关节炎的治疗,目的是增强疗效和降低毒性。本研究的目的是研究GL对TP药代动力学谱的影响及其相关机制。材料和方法将雄性和雌性Wistar大鼠随机分为两组:对照组和GL组(连续7天用GL以100 mg / kg / day预处理)。在以450μg/ kg的单剂量口服TP后,使用HPLC-MS / MS确定TP的血浆浓度,并使用Phoenix WinNonlin 6.3软件通过非房室分析计算出药代动力学参数。由于CYP3A是负责TP代谢的细胞色素P450的主要同工型,因此通过比较TP的药代动力学特征,我们进一步确定了强效CYP3A抑制剂酮康唑(KCZ)在多大程度上可以影响GL对TP的药代动力学的影响。 GL组(经GL预处理)和GL + KCZ组(经GL和KCZ预处理),并通过比较咪达唑仑(MDZ)静脉给药后的AUC参数来验证GL的预处理是否可诱导肝CYP3A的活性CYP3A的典型探针药物,在用媒介物或GL预处理的大鼠中。结果我们的研究表明,对照组的雄性和雌性大鼠中TP的药代动力学分析模式存在显着差异。男性的血浆TP水平远低于女性。 GL预处理后,雄性和雌性大鼠中TP的药代动力学特征均发生了显着改变。与对照组相比,GL组的AUC∞,MRT∞和t1 / 2值显着下降。但是KCZ扭转了这种下降的趋势。与GL组相比,GL + KCZ组的AUC∞,MRT∞和t1 / 2值明显增加。用GL预处理显着增加了1'-羟基咪达唑仑(OH-MDZ)的AUC∞和OH-MDZ与MDZ的AUC∞比率,表明GL诱导了CYP3A的活性。结论GL预处理主要通过诱导肝CYP3A活性显着促进TP代谢从体内清除。这些结果可能有助于解释为什么同时使用GL可以降低TP的毒性。

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