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Determination of asenapine in presence of its inactive metabolites in human plasma by LC-MS/MS

机译:LC-MS / MS测定人血浆中无活性代谢产物的阿塞那平

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摘要

A highly selective and sensitive liquid chromatography-tandem mass spectrometry (LC-MS/MS) assay has been described for the determination of asenapine (ASE) in presence of its inactive metabolites N-desmethyl asenapine (DMA) and asenapine-N-glucuronide (ASG). ASE, and ASE 13C-d3, used as internal standard (IS), were extracted from 300 µL human plasma by a simple and precise liquid-liquid extraction procedure using methyl tert-butyl ether. Baseline separation of ASE from its inactive metabolites was achieved on Chromolith Performance RP8e (100 mm × 4.6 mm) column using acetonitrile-5.0 mM ammonium acetate-10% formic acid (90:10:0.1, v/v/v) within 4.5 min. Quantitation of ASE was done on a triple quadrupole mass spectrometer equipped with electrospray ionization in the positive mode. The protonated precursor to product ion transitions monitored for ASE and ASE 13C-d3 were m/z 286.1 → 166.0 and m/z 290.0 → 166.1, respectively. The limit of detection (LOD) and limit of quantitation (LOQ) of the method were 0.0025 ng/mL and 0.050 ng/mL respectively in a linear concentration range of 0.050–20.0 ng/mL for ASE. The intra-batch and inter-batch precision (% CV) and mean relative recovery across quality control levels were ≤ 5.8% and 87.3%, respectively. Matrix effect, evaluated as IS-normalized matrix factor, ranged from 1.03 to 1.05. The stability of ASE under different storage conditions was ascertained in presence of the metabolites. The developed method is much simpler, matrix free, rapid and economical compared to the existing methods. The method was successfully used for a bioequivalence study of asenapine in healthy Indian subjects for the first time.
机译:已经描述了一种高度选择性和灵敏的液相色谱-串联质谱(LC-MS / MS)测定法,用于在无活性代谢产物N-去甲基阿塞那平(DMA)和阿塞那平-N-葡萄糖醛酸( ASG)。通过简单,精确的液-液萃取程序,使用甲基叔丁基醚,从300ul µL人体血浆中提取出ASE和用作内标(IS)的ASE 13C-d3。在Chromolith Performance Performance RP8e(100 mm×4.6 mm)色谱柱上,使用乙腈-5.0 mM醋酸铵-10%甲酸(90:10:0.1,v / v / v)在4.5 min内实现了ASE与非活性代谢物的基线分离。 。 ASE的定量在配备正离子模式电喷雾电离的三重四极杆质谱仪上进行。监测到的ASE和ASE 13C-d3的质子化前体向产物离子的跃迁分别为m / z 286.1→166.0和m / z 290.0→166.1。在ASE的线性浓度范围为0.050-20.0ng / mL的情况下,该方法的检测限(LOD)和定量限(LOQ)分别为0.0025 ng / mL和0.050 ng / mL。批内和批间精度(%CV)以及整个质量控制水平的平均相对回收率分别≤5.8%和87.3%。评估为IS归一化矩阵因子的矩阵效应在1.03至1.05的范围内。在存在代谢物的情况下确定了ASE在不同储存条件下的稳定性。与现有方法相比,所开发的方法更加简单,无矩阵,快速且经济。该方法首次成功地用于健康印度受试者中阿塞那平的生物等效性研究。

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