首页> 外文期刊>Xenobiotica: the fate of foreign compounds in biological systems >Effect of diammonium glycyrrhizinate on pharmacokinetics of omeprazole by regulating cytochrome P450 enzymes and plasma protein binding rate
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Effect of diammonium glycyrrhizinate on pharmacokinetics of omeprazole by regulating cytochrome P450 enzymes and plasma protein binding rate

机译:通过调节细胞色素P450酶和血浆蛋白结合速率对奥美拉唑的药代动力学对奥美拉唑的影响

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1. In clinical practice, diammonium glycyrrhizinate is usually used with omeprazole in patients with viral hepatitis and cirrhosis accompanied by peptic ulcers. However, the drug interaction between diammonium glycyrrhizinate and omeprazole remains unclear. 2. In this study, the effects of diammonium glycyrrhizinate on the pharmacokinetics of omeprazole was investigated by liquid chromatography-tandem mass spectrometry (LC-MS/MS) analytical method. Male Sprague-Dawley rats were randomly assigned to two groups: omeprazole and omeprazole + diammonium glycyrrhizinate, and the main pharmacokinetic parameters were estimated after oral administration. It was found that using the omeprazole along with the diammonium glycyrrhizinate increased the AUC, AUMC, C-max for omeprazole. 3. For this reason, we used the LC-MS/MS to detect the binding rate of plasma protein (BRPP) of omeprazole in rats, it was found that diammonium glycyrrhizinate could decrease the BRPP in rats. In addition, we found that diammonium glycyrrhizinate specifically inhibited the enzyme activity of the CYP2C19 and CYP3A4, which are involved in the metabolism of the omeprazole. 4. These results mean that diammonium glycyrrhizinate could inhibit the metabolism and increase the plasma concentration of the omeprazole in rats. Overall, diammonium glycyrrhizinate can influence the pharmacokinetics of omeprazole by inhibiting CYP2C19 and CYP3A4 activities and decreasing BRPP of omeprazole.
机译:1.在临床实践中,甘草颗粒通常与病毒肝炎患者和肝硬化伴有消化性溃疡的患者使用。然而,二醇甘草酸铵和奥美拉唑之间的药物相互作用仍然不清楚。在本研究中,通过液相色谱 - 串联质谱(LC-MS / MS)分析方法研究了甘氨酸二醇甘草蛋白对奥美拉唑的药代动力学的影响。雄性Sprague-Dawley大鼠随机分配到两组:奥美拉唑和奥美拉唑+二醇甘草酸铵,并且在口服给药后估计主要的药代动力学参数。结果发现,使用奥美唑和甘草铵的二氨基铵,AUM,AUMC,C-MAX对奥美拉唑的含量增加。 3.因此,我们使用LC-MS / MS检测大鼠奥美拉唑的血浆蛋白(BRPP)的结合率,发现二醇甘草酸铵可以降低大鼠的BRPP。此外,我们发现二醇甘草酸铵特异性抑制CYP2C19和CYP3A4的酶活性,其参与奥美拉唑的代谢。这些结果意味着二醇甘草酸铵可以抑制代谢并增加大鼠奥美拉唑的血浆浓度。总体而言,Diammonium甘草蛋白可以通过抑制CYP2C19和CYP3A4活性和降低奥美拉唑的BRPP来影响奥美拉唑的药代动力学。

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