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推进生物分析方法验证:应用 ICH M10 全面方法验证 LC-MS/MS 定量测定人血浆中氟西汀及其在药代动力学研究中的应用

Advancing Bioanalytical Method Validation: A Comprehensive ICH M10 Approach for Validating LC-MS/MS to Quantify Fluoxetine in Human Plasma and Its Application in Pharmacokinetic Studies.

机构信息

Laboratory of Drugs Sciences, Biomedical Research and Biotechnology, Faculty of Medicine and Pharmacy, Hassan II University of Casablanca, B.P. 9154, Casablanca 20250, Morocco.

Center for Bioequivalence Studies of the Sheikh Zaid Foundation, Av. Allal Al Fassi, Rabat 10000, Morocco.

出版信息

Molecules. 2024 Sep 27;29(19):4588. doi: 10.3390/molecules29194588.

Abstract

A fast and sample cleanup approach for fluoxetine in human plasma was developed using protein precipitation coupled with LC-MS-MS. Samples were treated with methanol prior to LC-MS-MS analysis. Chromatographic separation was performed on a reverse phase column with an isocratic mobile phase of methanol and 10 mM ammonium formate pH acidified with formic acid (80:20, /) at a flow rate of 0.2 mL/min. The run time was 4 min. Mass parameters were optimized to monitor transitions at / [M + H] 310 > > 148 for fluoxetine and / [M + H] 315.1 > > 153 for fluoxetine-d5 as an internal standard. The lower limit of quantification and the dynamic range were 0.25 and 0.25-50 ng/mL, respectively. Linearity was good for intra-day and inter-day validations (R = 0.999). The matrix effect was acceptable with CV% < 15 and accuracy% < 15. The hemolytic effect was negligible. Fluoxetine was stable in human plasma for 48 h at room temperature (25 °C), for 12 months frozen at -25 °C, for 48 h in an auto-sampler at 6 °C, and for three freeze/thaw cycles. The validated method was applied in a pharmacokinetic study to determine the concentration of fluoxetine in plasma samples. The study provides a fast and simple bioanalytical method for routine analysis and may be particularly useful for bioequivalence studies. The method was successfully applied to a pharmacokinetic study of fixed-dose fluoxetine in nine healthy volunteers.

摘要

建立了一种快速、简便的人血浆中氟西汀的样品净化方法,采用蛋白沉淀结合 LC-MS-MS。样品在 LC-MS-MS 分析前用甲醇处理。色谱分离在反相柱上进行,采用甲醇和 10 mM 甲酸铵 pH 用甲酸酸化(80:20,/)的等度流动相,流速为 0.2 mL/min。运行时间为 4 分钟。优化质谱参数以监测氟西汀的 / [M + H] 310 > > 148 和氟西汀-d5 作为内标的 / [M + H] 315.1 > > 153 的跃迁。定量下限和动态范围分别为 0.25 和 0.25-50 ng/mL。日内和日间验证的线性良好(R = 0.999)。基质效应可接受,CV% < 15%,准确度% < 15%。溶血效应可忽略不计。氟西汀在室温(25°C)下人血浆中 48 小时稳定,-25°C 冷冻 12 个月稳定,6°C 自动进样器中 48 小时稳定,冻融 3 个循环稳定。该方法已应用于药代动力学研究,以确定血浆样品中氟西汀的浓度。该研究提供了一种快速简便的常规分析生物分析方法,对于生物等效性研究可能特别有用。该方法成功应用于九名健康志愿者中固定剂量氟西汀的药代动力学研究。

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