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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Validation of an LC-MS/MS method for the quantitative determination of the orexin receptor antagonist almorexant and its four primary metabolites in human plasma
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Validation of an LC-MS/MS method for the quantitative determination of the orexin receptor antagonist almorexant and its four primary metabolites in human plasma

机译:LC-MS / MS方法用于定量测定人血浆中的orexin受体拮抗剂almorexant及其四种主要代谢产物的验证

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摘要

A sensitive and selective LC-MS/MS method has been developed to quantify almorexant and its four primary metabolites M3, M5, M6, and M8 in human plasma samples. The method involved protein precipitation with acetonitrile in the high calibration range and liquid/liquid extraction with ethyl acetate in the low calibration range. Labeled internal standards were available for four analytes. Separation was performed with an Eclipse XDB-C_(18) (2.1 mm × 150 mm, particle size 3.5 μm) and a XBridge C18 column (2.1 mm × 50 mm, particle size 3.5 μm). The mobile phases were mixtures of acetonitrile, methanol, and water containing 1% formic acid; flow rate was 400 μL/min. The triple stage quadrupole mass spectrometer was operated in ESI mode and the methods were linear over a range of 0.400-100 ng/mL (almorexant, M5, M6), 1.00-100 ng/mL (M3, M8), and 50.0-1000 ng/mL (all analytes). The inter-day coefficients of variation were equal to or smaller than 10.5%. The inter-day accuracies were between 92.1% and 105.2%. The validated method was successfully applied to the pharmacokinetic assessment of almorexant and its metabolites in several phase I studies.
机译:已开发出灵敏且选择性的LC-MS / MS方法来定量人血浆样品中的almorexant及其四种主要代谢物M3,M5,M6和M8。该方法包括在高校准范围内用乙腈进行蛋白质沉淀,在低校准范围内用乙酸乙酯进行液/液萃取。标记的内标可用于四种分析物。用Eclipse XDB-C_(18)(2.1 mm×150 mm,粒径3.5μm)和XBridge C18色谱柱(2.1 mm×50 mm,粒径3.5μm)进行分离。流动相是含有1%甲酸的乙腈,甲醇和水的混合物。流速为400μL/ min。三级四极杆质谱仪以ESI模式运行,方法在0.400-100 ng / mL(almorexant,M5,M6),1.00-100 ng / mL(M3,M8)和50.0-1000范围内呈线性ng / mL(所有分析物)。日间变异系数等于或小于10.5%。日间准确性在92.1%至105.2%之间。经过验证的方法已成功地用于I期研究的Almorexant及其代谢物的药代动力学评估。

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