Sample preparation and quantification of polar drug, allopurinol, in human plasma using LCMSMS

IF 1.1 4区 化学 Q4 PHYSICS, ATOMIC, MOLECULAR & CHEMICAL European Journal of Mass Spectrometry Pub Date : 2022-04-01 DOI:10.1177/14690667221105837
Emily Yii Ling Wong, Gabriel Onn Kit Loh, Chen Zhu Goh, Y. Tan, Sharon Shi Min Ng, Kian Boon Law, Kit Yee Cheah, Hani Farhana Mohd, K. Peh
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引用次数: 1

Abstract

A fast, selective and reproducible LC-MS/MS method with simple sample preparation was developed and validated for a polar compound, allopurinol in human plasma, using acyclovir as internal standard (IS). Chromatographic separation was achieved using Agilent Poroshell 120 EC-C18 (100 × 2.1 mmID, 2.7 µm) analytical column. The mobile phase was comprised of 0.1%v/v formic acid-methanol (95:05; v/v), at a flow rate of 0.45 mL/min. The effect of different protein precipitation agents used in sample preparation such as methanol, acetonitrile, a mixture of acetonitrile-methanol and a mixture of acetonitrile-acetone were evaluated to optimize the extraction efficiency of allopurinol and IS. The use of acetone-acetonitrile (50:50, v/v) as protein precipitating agent shortened the sample preparation time and improved the recovery of allopurinol to above 93%. The IS-normalised matrix factors at two concentration levels were 1.0, with CV of 5.1% and 4.2%. Allopurinol in plasma was stable at benchtop for 24 h, in autosampler tray for 48 h, in instrumentation room for 48 h, in freezer after 7 freeze-thaw cycles and in freezer for 140 days. Allopurinol stock standard solutions were stable for 140 days at room temperature and in the chiller. The short sample run time of the validated bioanalytical method allowed high throughput analysis of plasma samples in pharmacokinetic study of an allopurinol formulation. The robustness and reproducibility of the bioanalytical method was reaffirmed through incurred sample reanalysis (ISR).
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用LCMSMS测定人血浆中极性药物别嘌呤醇的制备和定量
以阿昔洛韦为内标,建立了一种快速、选择性、重复性好、样品制备简单的液相色谱-质谱联用(LC-MS/MS)方法,并对其进行了验证。色谱分离采用Agilent Poroshell 120 EC-C18 (100 × 2.1 mmID, 2.7µm)分析柱。流动相为0.1%v/v甲酸-甲醇(95:05;v/v),流速为0.45 mL/min。考察了甲醇、乙腈、乙腈-甲醇混合物和乙腈-丙酮混合物等不同蛋白质沉淀剂对样品制备的影响,以优化别嘌呤醇和IS的提取效率。采用丙酮-乙腈(50:50,v/v)作为蛋白质沉淀剂,缩短了样品制备时间,别嘌呤醇的回收率提高到93%以上。两种浓度水平下is归一化基质因子为1.0,CV分别为5.1%和4.2%。血浆中的别嘌呤醇在实验台上稳定24 h,在自动进样器托盘中稳定48 h,在仪器室中稳定48 h,冻融循环7次后冷冻,冷冻140天。别嘌呤醇原液标准液在室温和冷水机中稳定140天。验证的生物分析方法的样品运行时间短,允许在别嘌呤醇制剂的药代动力学研究中对血浆样品进行高通量分析。通过发生的样品再分析(ISR)验证了生物分析方法的稳健性和重复性。
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来源期刊
CiteScore
2.40
自引率
7.70%
发文量
16
审稿时长
>12 weeks
期刊介绍: JMS - European Journal of Mass Spectrometry, is a peer-reviewed journal, devoted to the publication of innovative research in mass spectrometry. Articles in the journal come from proteomics, metabolomics, petroleomics and other areas developing under the umbrella of the “omic revolution”.
期刊最新文献
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