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丹参酮IIA磺酸钠及其与人细胞色素P450酶的相互作用。

Sodium tanshinone IIA sulfonate and its interactions with human CYP450s.

作者信息

Chen D, Lin X-X, Huang W-H, Zhang W, Tan Z-R, Peng J-B, Wang Y-C, Guo Y, Hu D-L, Chen Y

机构信息

a Department of Clinical Pharmacology , Xiangya Hospital, Central South University , Changsha , Hunan , China and.

b Institute of Clinical Pharmacology, Central South University , Changsha , Hunan , China.

出版信息

Xenobiotica. 2016 Dec;46(12):1085-1092. doi: 10.3109/00498254.2016.1152417. Epub 2016 Mar 2.

Abstract

1.Sodium tanshinone IIA sulfonate (STS) is a water-soluble derivative of tanshinone IIA, a famous Chinese medicine used for many years to treat cardiovascular disorders. However, the role of cytochrome P450 (CYP) enzymes in the metabolism of STS was unclear. In this study, we screened the main CYPs for the metabolism of STS and studied their interactions in vitro. 2.Seven CYPs were screened for the metabolism of STS by human liver microsomes (HLMs) or recombinant CYP isoforms. To determine the potential of STS to affect CYP-mediated phase I metabolism in humans, phenacetin (CYP1A2), coumarin (CYP2A6), tolbutamide (CYP2C9), metoprolol (CYP2D6), chlorzoxazone (CYP2E1), S-Mephenytoin (CYP2C19), and midazolam (CYP3A4) were used as the respective probe substrates. Enzyme kinetic studies were performed to investigate the mode of inhibition of the enzyme-substrate interactions. 3.STS inhibited the activity of CYP3A4 in a dose-dependent manner in the HLMs and CYP3A4 isoform. Other CYP isoforms, including CYP1A2, CYP2A6, CYP2C9, CYP2D6, CYP2E1, and CYP2C19, showed minimal or no effect on the metabolism of STS. 4.The results suggested that STS primarily inhibits the activities of CYP3A4 in vitro, and STS has the potential to perpetrate drug-drug interactions with other CYP3A4 substrates.

摘要
  1. 丹参酮IIA磺酸钠(STS)是丹参酮IIA的水溶性衍生物,丹参酮IIA是一种多年来用于治疗心血管疾病的著名中药。然而,细胞色素P450(CYP)酶在STS代谢中的作用尚不清楚。在本研究中,我们筛选了参与STS代谢的主要CYPs,并在体外研究了它们之间的相互作用。2. 通过人肝微粒体(HLMs)或重组CYP同工酶筛选了七种参与STS代谢的CYPs。为了确定STS影响人体中CYP介导的I相代谢的可能性,分别使用非那西丁(CYP1A2)、香豆素(CYP2A6)、甲苯磺丁脲(CYP2C9)、美托洛尔(CYP2D6)、氯唑沙宗(CYP2E1)、S-美芬妥英(CYP2C19)和咪达唑仑(CYP3A4)作为探针底物。进行酶动力学研究以探究酶-底物相互作用的抑制模式。3. STS在HLMs和CYP3A4同工酶中以剂量依赖性方式抑制CYP3A4的活性。其他CYP同工酶,包括CYP1A2、CYP2A6、CYP2C9、CYP2D6、CYP2E1和CYP2C19,对STS的代谢显示出最小影响或无影响。4. 结果表明,STS在体外主要抑制CYP3A4的活性,并且STS有可能与其他CYP3A4底物发生药物-药物相互作用。

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