液相色谱-串联质谱同时测定人血浆中吖伐他汀和伪麻黄碱的方法的建立与验证及其药动学研究。

Arzneimittel-Forschung-Drug Research Pub Date : 2012-10-01 Epub Date: 2012-08-30 DOI:10.1055/s-0032-1314877
J-C He, E-F Feng, M Liu, H-L Li, M Tian, Q Zhang, L-C Dong, G-L Xu
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引用次数: 3

摘要

建立了一种高效、灵敏、准确的液相色谱-串联质谱(LC-MS/MS)同时测定人血浆样品中吖伐他汀和伪麻黄碱的方法。血浆样品在Phenomenex Luna 3 μ CN 100A色谱柱(150 mm×2.0 mm)上进行处理和分析,流动相为甲醇和含有0.1%甲酸(45:55,v/v)的0.01 mol/L醋酸铵水溶液,流速为0.2 mL/min。采用正离子电喷雾电离多反应监测模式对分析物进行检测。测定吖伐他汀、伪麻黄碱和苯海拉明(IS)的m/z 349→278、m/z 166→148和m/z 256→167的变化。方法特异性强,灵敏度高,测定下限为1.52 ng/mL,假麻黄碱测定下限为8.13 ng/mL。方法在1.52~606.0 ng/mL、8.13~813.12 ng/mL范围内线性良好(r≥0.996)。平均回收率为91.82% ~ 98.46%,伪麻黄碱为90.77% ~ 92.05%。验证结果,如准确度、精密度和可重复性均在要求范围内。该方法成功地应用于盐酸假麻黄碱复合胶囊的人体内药动学研究。
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Development and validation of a liquid chromatography-tandem mass spectrometry method for the simultaneous determination of acrivastine and pseudoephedrine in human plasma and its application in pharmacokinetics.

A specific, sensitive and accurate liquid chromatography-tandem mass spectrometry (LC-MS/MS) method has been developed for the simultaneous determination of acrivastine and pseudoephedrine in human plasma samples. Plasma samples were processed and analyzed on a Phenomenex Luna 3 μ CN 100A column (150 mm×2.0 mm) eluted with the mobile phase consisting of methanol and 0.01 mol/L ammonium acetate water solution containing 0.1% formic acid (45:55, v/v) at a flow rate of 0.2 mL/min. The analytes were detected by positive ion electrospray ionization in multiple reaction monitoring mode. The transitions of m/z 349→278, m/z 166→148 and m/z 256→167 were monitored for acrivastine, pseudoephedrine and diphenhydramine (IS), respectively. The method was specific and sensitive with a lower limit of quantitation (LLOQ) of 1.52 ng/mL for acrivastine and 8.13 ng/mL for pseudoephedrine. The method showed good linearity in the range of 1.52~606.0 0 ng/mL for acrivastine and 8.13~813.12 ng/mL for pseudoephedrine (r≥0.996). The mean recovery were ranged 91.82% ~ 98.46% for acrivastine and 90.77% ~ 92.05% for pseudoephedrine. Validation results, such as accuracy, precision and repeatability were within the required limits. The method was successfully applied in a pharmacokinetic study of the acrivastine and pseudoephedrine hydrochloride compound capsule in humans.

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