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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Drug interaction between simvastatin and itraconazole in male and female rats.
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Drug interaction between simvastatin and itraconazole in male and female rats.

机译:辛伐他汀与伊曲康唑之间在雄性和雌性大鼠中的药物相互作用。

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Taking into account the species and sex differences in drug interactions based on the inhibition of cytochrome P450 (P450)-mediated drug metabolism, we examined whether the interaction between simvastatin and itraconazole observed in humans could also occur in rats, the most commonly used animal species for pharmacokinetic studies. Itraconazole inhibited the in vitro metabolism of simvastatin in female rat liver microsomes, but not in male rat liver microsomes. Using anti-P450 antisera, the main P450 isozyme responsible for the metabolism of simvastatin was identified as CYP3A in female rats and CYP2C11 in male rats. Therefore, the sex difference in the inhibition of simvastatin metabolism by itraconazole seems to be caused by a difference in the P450 isozymes responsible for the metabolism of simvastatin in male and female rats and the different ability of itraconazole to inhibit CYP3A and CYP2C11. In addition, the effect of itraconazole on the pharmacokinetics of simvastatin in rats was also investigated. The area under the curve value of simvastatin was increased approximately 1.6-fold by the concomitant use of itraconazole (50 mg/kg) in female rats, whereas in male rats, itraconazole had no effect. In conclusion, it was found that the results obtained in male rats did not reflect the results in humans as far as the inhibition of simvastatin metabolism by itraconazole was concerned. The P450 isozymes involved in the metabolism of drugs should be taken into consideration when rats are used as a model animal for humans in the investigation of drug interactions.
机译:考虑到基于细胞色素P450(P450)介导的药物代谢抑制作用的药物相互作用的物种和性别差异,我们研究了在人类中观察到的辛伐他汀与伊曲康唑之间的相互作用是否也可能在大鼠中发生,大鼠是最常用的动物物种用于药代动力学研究。伊曲康唑抑制雌性大鼠肝微粒体中辛伐他汀的体外代谢,但不抑制雄性大鼠肝微粒体中的辛伐他汀的体外代谢。使用抗P450抗血清,确定负责辛伐他汀代谢的主要P450同工酶为雌性大鼠的CYP3A和雄性大鼠的CYP2C11。因此,伊曲康唑抑制辛伐他汀代谢的性别差异似乎是由负责雌雄大鼠辛伐他汀代谢的P450同工酶的差异以及伊曲康唑抑制CYP3A和CYP2C11的能力不同引起的。此外,还研究了伊曲康唑对辛伐他汀在大鼠体内药代动力学的影响。通过在雌性大鼠中同时使用伊曲康唑(50 mg / kg),辛伐他汀曲线值下的面积增加了约1.6倍,而在雄性大鼠中伊曲康唑则没有作用。总之,发现就伊曲康唑抑制辛伐他汀代谢而言,在雄性大鼠中获得的结果不能反映在人中的结果。当将大鼠用作研究药物相互作用的人类模型动物时,应考虑与药物代谢有关的P450同工酶。

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