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Quantification of femtomolar concentrations of the CYP3A substrate midazolam and its main metabolite 1′-hydroxymidazolam in human plasma using ultra performance liquid chromatography coupled to tandem mass spectrometry

机译:超高效液相色谱-串联质谱法定量测定人血浆中CYP3A底物咪达唑仑及其主要代谢产物1'-羟基咪达唑仑的飞摩尔浓度

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The benzodiazepine midazolam is a probe drug used to phenotype cytochrome P450 3A activity. In this situation, effective sedative concentrations are neither needed nor desired, and in fact the use of very low doses is advantageous. We therefore developed and validated an assay for the femtomolar quantification of midazolam and 1′-hydroxymidazolam in human plasma. Plasma (0.25 mL) and 96-well-based solid-phase extraction were used for sample preparation. Extraction recoveries ranged between 75 and 92% for both analytes. Extracts were chromatographed within 2 min on a Waters BEH C18 1.7 μm UPLC? column with a fast gradient consisting of formic acid, ammonia, and acetonitrile. Midazolam and 1′-hydroxymidazolam were quantified using deuterium- and ~(13)C-labeled internal standards and positive electrospray tandem mass spectrometry in the multiple reaction monitoring mode, which yielded lower limits of quantification of 50 fg/mL (154 fmol/L) and 250 fg/mL (733 fmol/L) and a corresponding precision of <20%. The calibrated concentration ranges were linear for midazolam (0.05-250 pg/mL) and 1′-hydroxymidazolam (0.25-125 pg/mL), with correlation coefficients of >0.99. Within-batch and batch-to-batch precision in the calibrated ranges for both analytes were <14% and <12%. No ion suppression was detectable, and plasma matrix effects were minimized to <15% (<25%) for midazolam (1′-hydroxymidazolam). The assay was successfully applied to assess the kinetics of midazolam in two human volunteers after the administration of single oral microgram doses (1-100 μg). This ultrasensitive assay allowed us to quantify the kinetics of midazolam and 1′-hydroxymidazolam for at least 10 h, even after the administration of only 1 μg of midazolam. [Figure not available: see fulltext.]
机译:苯二氮卓咪达唑仑是用于表型细胞色素P450 3A活性的探针药物。在这种情况下,既不需要也不需要有效的镇静剂浓度,实际上使用非常低的剂量是有利的。因此,我们开发并验证了人血浆中咪达唑仑和1'-羟基咪达唑仑的飞摩尔定量分析方法。血浆(0.25 mL)和基于96孔的固相萃取用于样品制备。两种分析物的萃取回收率在75%到92%之间。将萃取液在2分钟内在Waters BEH C18 1.7μmUPLC?上进行色谱分离。快速色谱柱,由甲酸,氨水和乙腈组成。使用氘和〜(13)C标记的内标以及正电喷雾串联质谱法在多反应监测模式下对咪达唑仑和1'-羟基咪达唑仑进行定量分析,定量下限为50 fg / mL(154 fmol / L )和250 fg / mL(733 fmol / L),相应的精度<20%。咪达唑仑(0.05-250 pg / mL)和1'-羟基咪达唑仑(0.25-125 pg / mL)的校准浓度范围呈线性,相关系数> 0.99。两种分析物在校准范围内的批内精度和批间精度均<14%和<12%。没有检测到离子抑制,对于咪达唑仑(1'-羟基咪达唑仑),血浆基质效应被最小化至<15%(<25%)。在单次口服微克剂量(1-100μg)给药后,该测定法成功地用于评估两名人类志愿者中咪达唑仑的动力学。这种超灵敏的测定方法使我们即使在仅施用1μg咪达唑仑后也能定量测定咪达唑仑和1'-羟基咪达唑仑的动力学至少10小时。 [图不可用:请参见全文。]

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