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雷公藤甲素通过抑制大鼠肝微粒体中的细胞色素P450酶诱导肝毒性。

Triptolide Induces hepatotoxicity via inhibition of CYP450s in Rat liver microsomes.

作者信息

Lu Yan, Xie Tong, Zhang Yajie, Zhou Fuqiong, Ruan Jie, Zhu Weina, Zhu Huaxu, Feng Zhe, Zhou Xueping

机构信息

The First Clinical College, Nanjing University of Chinese Medicine, Nanjing, Jiangsu, China.

The Third Affiliated Hospital, Nanjing University of Chinese Medicine, Nanjing, Jiangsu, China.

出版信息

BMC Complement Altern Med. 2017 Jan 5;17(1):15. doi: 10.1186/s12906-016-1504-3.

Abstract

BACKGROUND

Triptolide (TP), an active constituent of Tripterygium wilfordii, possesses numerous pharmacological activities. However, its effects on cytochrome P450 enzymes (CYP450s) in rats remain unexplored.

METHODS

In this study, the effects of triptolide on the six main CYP450 isoforms (1A2, 2C9, 2C19, 2D6, 2E1, and 3A) were investigated both in vivo and in vitro. We monitored the body weight, survival proportions, liver index, changes in pathology, and biochemical index upon TP administration, in vivo. Using a cocktail probe of CYP450 isoform-specific substrates and their metabolites, we then carried out in vitro enzymatic studies in liver microsomal incubation systems via ultra-high performance liquid chromatography-tandem mass spectrometry (UHPLC-MS/MS). Finally, we verified our results at the messenger ribonucleic acid (mRNA) and protein level through quantitative real-time polymerase chain reaction (RT-qPCR), western blotting, and immunohistochemical detection.

RESULTS

The in vivo toxicity study confirmed that Sprague-Dawley (SD) rats exhibited dose-dependent hepatotoxicity after intragastric administration of TP [200, 400, and 600 μg/(kg.day)] for 28 days. In case of the CYP450 isoforms 3A, 2C9, 2C19, and 2E1, the in vitro metabolic study demonstrated a decrease in the substrate metabolic rate, metabolite production rate, and Vmax, with an increase in the Km value, compared with that observed in the control group. Additionally, a TP dose-dependent decrease in the mRNA levels was observed in the four major isoforms of CYP3A subfamily (3A1/3A23, 3A2, 3A9, and 3A62) and CYP2C9. A similar effect was also observed with respect to the protein levels of CYP2C19 and CYP2E1.

CONCLUSIONS

This study suggests that TP can cause hepatotoxicity by reducing the substrate affinity, activity, and expression at the transcriptional and protein levels of the CYP450 isoforms 3A, 2C9, 2C19, and 2E1. TP also has the potential to cause pharmacokinetic drug interactions when co-administered with drugs metabolized by these four isoforms. However, further clinical studies are needed to evaluate the significance of this interaction.

摘要

背景

雷公藤甲素(TP)是雷公藤的一种活性成分,具有多种药理活性。然而,其对大鼠细胞色素P450酶(CYP450s)的影响尚未得到研究。

方法

在本研究中,我们在体内和体外研究了雷公藤甲素对六种主要CYP450亚型(1A2、2C9、2C19、2D6、2E1和3A)的影响。在体内,我们监测了给予TP [200、400和600 μg/(kg·天)] 28天后的体重、存活率、肝脏指数、病理变化和生化指标。然后,我们使用CYP450亚型特异性底物及其代谢物的混合探针,通过超高效液相色谱-串联质谱(UHPLC-MS/MS)在肝微粒体孵育系统中进行体外酶学研究。最后,我们通过定量实时聚合酶链反应(RT-qPCR)、蛋白质印迹和免疫组织化学检测在信使核糖核酸(mRNA)和蛋白质水平验证了我们的结果。

结果

体内毒性研究证实,给予TP [200、400和600 μg/(kg·天)] 28天后,Sprague-Dawley(SD)大鼠表现出剂量依赖性肝毒性。对于CYP450亚型3A、2C9、2C19和2E1,体外代谢研究表明,与对照组相比,底物代谢率、代谢物生成率和Vmax降低,Km值增加。此外,在CYP3A亚家族的四种主要亚型(3A1/3A23、3A2、3A9和3A62)和CYP2C9中观察到TP剂量依赖性的mRNA水平降低。在CYP2C19和CYP2E1的蛋白质水平上也观察到类似的效果。

结论

本研究表明,TP可通过降低CYP450亚型3A、2C9、2C19和2E1在转录和蛋白质水平的底物亲和力、活性和表达而导致肝毒性。当与由这四种亚型代谢的药物合用时,TP也有可能引起药代动力学药物相互作用。然而,需要进一步的临床研究来评估这种相互作用的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a830/5217299/c9f4845fab00/12906_2016_1504_Fig1_HTML.jpg

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