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采用液相色谱-串联质谱法对血浆瑞德西韦及其代谢物 GS-441524 进行定量分析。在一名新冠肺炎治疗患者中的应用。

Quantification of plasma remdesivir and its metabolite GS-441524 using liquid chromatography coupled to tandem mass spectrometry. Application to a Covid-19 treated patient.

机构信息

Laboratoire de Pharmacologie-Toxicologie, Université de Versailles Saint-Quentin en Yvelines, Inserm U-1173, Hôpital Raymond Poincaré, AP-HP, 104, Boulevard R. Poincaré, 92380, Garches, France.

Intensive Care Unit, Paris-Saclay University (Versailles Saint-Quentin-en-Yvelines), Inserm U-1173, Raymond Poincaré Hospital, AP-HP, Garches, France.

出版信息

Clin Chem Lab Med. 2020 Jun 22;58(9):1461-1468. doi: 10.1515/cclm-2020-0612. Print 2020 Aug 27.

Abstract

OBJECTIVES

A method based on liquid chromatography coupled to triple quadrupole mass spectrometry detection using 50 µL of plasma was developed and fully validated for quantification of remdesivir and its active metabolites GS-441524.

METHODS

A simple protein precipitation was carried out using 75 µL of methanol containing the internal standard (IS) remdesivir-13C6 and 5 µL ZnSO4 1 M. After separation on Kinetex® 2.6 µm Polar C18 100A LC column (100 × 2.1 mm i.d.), both compounds were detected by a mass spectrometer with electrospray ionization in positive mode. The ion transitions used were m/z 603.3 → m/z 200.0 and m/z 229.0 for remdesivir, m/z 292.2 → m/z 173.1 and m/z 147.1 for GS-441524 and m/z 609.3 → m/z 206.0 for remdesivir-13C6.

RESULTS

Calibration curves were linear in the 1-5000 μg/L range for remdesivir and 5-2500 for GS-441524, with limit of detection set at 0.5 and 2 μg/L and limit of quantification at 1 and 5 μg/L, respectively. Precisions evaluated at 2.5, 400 and 4000 μg/L for remdesivir and 12.5, 125, 2000 μg/L for GS-441524 were lower than 14.7% and accuracy was in the [89.6-110.2%] range. A slight matrix effect was observed, compensated by IS. Higher stability of remdesivir and metabolite was observed on NaF-plasma. After 200 mg IV single administration, remdesivir concentration decrease rapidly with a half-life less than 1 h while GS-441524 appeared rapidly and decreased slowly until H24 with a half-life around 12 h.

CONCLUSIONS

This method would be useful for therapeutic drug monitoring of these compounds in Covid-19 pandemic.

摘要

目的

建立了一种基于液相色谱-串联三重四极杆质谱检测法,使用 50μL 血浆,可定量测定瑞德西韦及其活性代谢物 GS-441524。

方法

采用 75μL 含内标(IS)瑞德西韦-13C6 和 5μL ZnSO4 1M 的甲醇进行简单的蛋白沉淀。在 Kinetex®2.6μm 极性 C18 100A LC 柱(100×2.1mm id)上分离后,采用电喷雾正离子模式的质谱仪同时检测两种化合物。用于检测的离子转换为 m/z 603.3→m/z 200.0 和 m/z 229.0 用于瑞德西韦,m/z 292.2→m/z 173.1 和 m/z 147.1 用于 GS-441524,m/z 609.3→m/z 206.0 用于瑞德西韦-13C6。

结果

瑞德西韦的校准曲线在 1-5000μg/L 范围内呈线性,GS-441524 的校准曲线在 5-2500μg/L 范围内呈线性,检测限分别设定为 0.5 和 2μg/L,定量限分别设定为 1 和 5μg/L。瑞德西韦在 2.5、400 和 4000μg/L 时的精密度低于 14.7%,准确度在[89.6-110.2%]范围内,GS-441524 在 12.5、125、2000μg/L 时的精密度也低于 14.7%,准确度在[89.6-110.2%]范围内。观察到轻微的基质效应,通过 IS 进行了补偿。在 NaF 血浆中,瑞德西韦及其代谢物的稳定性更高。静脉注射 200mg 后,瑞德西韦浓度迅速下降,半衰期小于 1h,而 GS-441524 迅速出现并缓慢下降,直至 H24,半衰期约为 12h。

结论

该方法将有助于监测 COVID-19 大流行期间这些化合物的治疗药物浓度。

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