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雷公藤甲素联合甘草次酸对大鼠细胞色素P450酶的体内作用

In vivo effect of triptolide combined with glycyrrhetinic acid on rat cytochrome P450 enzymes.

作者信息

Han Feng-Mei, Peng Zhi-Hong, Wang Jun-Jun, Chen Yong

机构信息

Hubei Province Key Laboratory of Biotechnology of Chinese Traditional Medicine, Hubei University, Wuhan 430062, China.

出版信息

Yao Xue Xue Bao. 2013 Jul;48(7):1136-41.

Abstract

Triptolide (TP) is a major active component in Tripterygium root, but its therapeutic window was very narrow due to its severe multi-organ toxicity. In this work, the effect of TP combined with glycyrrhetic acid (GA) on mRNA expression and activity of four cytochrome P450 (CYP) enzymes in rat liver was studied after intragastric administration of TP (0.05, 0.3 and 0.6 mg x kg(-1) x day(-1)) and TP (0.6 mg x kg(-1) x day(-1)) combined with GA (30 mg x kg(-1) x day(-1)) for 7 consecutive days. Compared with the control, the high dose of TP significantly up-regulated the mRNA expression levels of CYP2E1, 1A2, 3A1 and 2C11, the co-administration of TP and GA further up-regulated the mRNA expression levels of CYP3A1, 2C11 and 2E1 as compared with the high dose of TP. Meanwhile, TP at high dose and combined with GA significantly increased CYP3A-associated testosterone 6beta-hydroxylation activity (2.2-fold and 4.1-fold, respectively) as compared with the control. Because TP is mainly metabolized by CYP3A2 in male rats, the present work indicated that TP-induced increase of CYP3A activity might be an important reason for the rapidly metabolic clearance of TP in rat liver, and GA can reduce the hepatotoxicity of TP by promoting its hepatic metabolic clearance. Furthermore, the results also suggest that the drug interactions might be occurred when TP and GA were co-administered with other CYP3A substrate drug.

摘要

雷公藤甲素(TP)是雷公藤根中的主要活性成分,但其治疗窗非常窄,因为它具有严重的多器官毒性。在本研究中,大鼠连续7天灌胃给予TP(0.05、0.3和0.6 mg·kg⁻¹·d⁻¹)以及TP(0.6 mg·kg⁻¹·d⁻¹)与甘草次酸(GA,30 mg·kg⁻¹·d⁻¹)联合用药后,研究了TP与GA联合用药对大鼠肝脏中四种细胞色素P450(CYP)酶的mRNA表达及活性的影响。与对照组相比,高剂量TP显著上调了CYP2E1、1A2、3A1和2C11的mRNA表达水平,TP与GA联合用药相比高剂量TP进一步上调了CYP3A1、2C11和2E1的mRNA表达水平。同时,高剂量TP及与GA联合用药相比对照组显著增加了CYP3A相关的睾酮6β-羟化活性(分别为2.2倍和4.1倍)。由于在雄性大鼠中TP主要由CYP3A2代谢,本研究表明TP诱导的CYP3A活性增加可能是TP在大鼠肝脏中快速代谢清除的重要原因,GA可通过促进其肝脏代谢清除来降低TP的肝毒性。此外,结果还提示当TP和GA与其他CYP3A底物药物联合使用时可能会发生药物相互作用。

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