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基于UGT1A1酶介导肝脏微粒体胆红素的大黄素肝毒性

[Hepatotoxicity of emodin based on UGT1A1 enzyme-mediated bilirubin in liver microsomes].

作者信息

Wang Qi, Dai Zhong, Zhang Yu-Jie, Ma Shuang-Cheng

机构信息

National Institutes for Food and Drug Control, Beijing 100050, China.

Beijing University of Chinese Medicine, Beijing 100102, China.

出版信息

Zhongguo Zhong Yao Za Zhi. 2016 Dec;41(23):4424-4427. doi: 10.4268/cjcmm20162321.

Abstract

To study the hepatotoxicity of emodin based on bilirubin metabolism mediated by glucuronidation of UGT1A1 enzyme. In this study, three different incubation systems were established by using RLM, HLM, and rUGT1A1, with bilirubin as the substrate. Different concentrations of bilirubin and emodin were added in the incubation systems. The double reciprocal Michaelis equation was drawn based on the total amount of bilirubin glucuronidation. The apparent inhibition constant Ki was then calculated with the slope curve to predict the hepatotoxicity. The results indicated that emodin had a significant inhibition to the UGT1A1 enzyme in all of the three systems, with Ki=5.400±0.956(P<0.05) in HLM system, Ki =10.020±0.611(P<0.05) in RLM system, Ki=4.850±0.528(P<0.05) in rUGT1A1 system. Meanwhile, emodin had no significant difference between rat and human in terms of inhibition of UGT1A1 enzyme. Emodin had a potential risk of the hepatotoxicity by inhibiting the UGT1A1 enzyme activity. And the method established in this study provides a new thought and new method to evaluate hepatotoxicity and safety of traditional Chinese medicines.

摘要

基于UGT1A1酶葡萄糖醛酸化介导的胆红素代谢研究大黄素的肝毒性。本研究以胆红素为底物,利用大鼠肝脏微粒体(RLM)、人肝脏微粒体(HLM)和重组UGT1A1建立三种不同的孵育体系。在孵育体系中加入不同浓度的胆红素和大黄素。根据胆红素葡萄糖醛酸化总量绘制双倒数米氏方程,然后用斜率曲线计算表观抑制常数Ki来预测肝毒性。结果表明,大黄素在三种体系中对UGT1A1酶均有显著抑制作用,HLM体系中Ki=5.400±0.956(P<0.05),RLM体系中Ki =10.020±0.611(P<0.05),rUGT1A1体系中Ki=4.850±0.528(P<0.05)。同时,大黄素对UGT1A1酶的抑制作用在大鼠和人之间无显著差异。大黄素通过抑制UGT1A1酶活性存在潜在的肝毒性风险。本研究建立的方法为评价中药的肝毒性和安全性提供了新思路和新方法。

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