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采用 UPLC-MS/MS 法同时测定大鼠血浆中的伊古曲替姆及其代谢物:药物相互作用的应用。

Simultaneous determination of iguratimod and its metabolite in rat plasma using a UPLC-MS/MS method: Application for drug-drug interaction.

机构信息

The First Affiliated Hospital of Wenzhou Medical University, Wenzhou, Zhejiang, China.

The Third Affiliated Hospital of Shanghai University (Wenzhou People's Hospital), The Third Clinical Institute Affiliated to Wenzhou Medical University, Zhejiang, China.

出版信息

J Pharm Biomed Anal. 2024 Jun 15;243:116079. doi: 10.1016/j.jpba.2024.116079. Epub 2024 Mar 2.

Abstract

This aim of the work was to establish an acceptable sensitive assay based on ultra-performance liquid chromatography tandem mass spectrometry (UPLC-MS/MS) for quantitatively analyzing the plasma concentrations of iguratimod (IGR) and its metabolite M2 in rats, and to further investigate the effect of fluconazole on the pharmacokinetics of IGR and M2. The mobile phase consisted of acetonitrile and water with 0.1% formic acid, was used to separate IGR, M2 and internal standard (IS) fedratinib on a UPLC BEH C18 column (2.1 mm × 50 mm, 1.7 μm) with the flow rate of 0.4 mL/min. Positive ion mode and multiple reaction monitoring (MRM) were used to construct the quantitative analysis. The calibration standard of IGR and M2 covered 2-10000 and 1-1000 ng/mL respectively, with the lower limit of quantification (LLOQ) as 2 ng/mL and 1 ng/mL respectively. In addition, selectivity, recovery, accuracy, precision, matrix effect and stability of the method validation program were well accepted in this work. Subsequently, this approach was used to assess the effect of fluconazole on the pharmacokinetics of IGR and M2 in rats. In the presence of 20 mg/kg fluconazole (experimental group), we found the main pharmacokinetic parameters were significantly altered when compared with 2.5 mg/kg IGR alone (control group). Among them, AUC and C of IGR in the experimental group was 1.43 and 1.08 times higher than that of the control group, respectively. Moreover, we also found that the other main pharmacokinetic parameters of M2 had no significant changes, except t and T. In conclusion, fluconazole significantly altered the main pharmacokinetics of IGR and M2 in rats. It implys that we should pay more attention to the adverse reaction of IGR when the concomitant use of fluconazole and IGR occur in the future clinical practice.

摘要

本研究旨在建立一种基于超高效液相色谱串联质谱法(UPLC-MS/MS)的可接受的灵敏分析方法,定量分析大鼠血浆中伊古曲班(IGR)及其代谢物 M2 的浓度,并进一步研究氟康唑对 IGR 和 M2 药代动力学的影响。流动相由乙腈和含 0.1%甲酸的水组成,在 UPLC BEH C18 柱(2.1mm×50mm,1.7μm)上分离 IGR、M2 和内标(fedratinib),流速为 0.4mL/min。采用正离子模式和多重反应监测(MRM)进行定量分析。IGR 和 M2 的校准标准范围分别为 2-10000 和 1-1000ng/mL,定量下限(LLOQ)分别为 2ng/mL 和 1ng/mL。此外,本研究中方法验证方案的选择性、回收率、准确性、精密度、基质效应和稳定性均得到了很好的验证。随后,该方法用于评估氟康唑对大鼠 IGR 和 M2 药代动力学的影响。在给予 20mg/kg 氟康唑(实验组)的情况下,与单独给予 2.5mg/kg IGR(对照组)相比,我们发现主要药代动力学参数发生了显著变化。其中,实验组 IGR 的 AUC 和 C 分别是对照组的 1.43 倍和 1.08 倍。此外,我们还发现 M2 的其他主要药代动力学参数除 t 和 T 外均无显著变化。结论:氟康唑显著改变了大鼠中 IGR 和 M2 的主要药代动力学特征。这提示我们在未来的临床实践中,当氟康唑和 IGR 同时使用时,应更加注意 IGR 的不良反应。

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