Kall Morten A, Fu Irong, Dige Tina, Vallano Patrick, Woolf Eric, Jørgensen Martin
Department of Early Development Pharmacokinetics, Drug Development ADME, H. Lundbeck, A/S Ottiliavej 7-9, DK-2500 Valby-Copenhagen, Denmark.
J Chromatogr B Analyt Technol Biomed Life Sci. 2007 Oct 15;858(1-2):168-76. doi: 10.1016/j.jchromb.2007.08.029. Epub 2007 Aug 30.
A selective and sensitive hydrophilic interaction liquid chromatography tandem mass spectrometric bioanalytical method for the quantitative determination of gaboxadol in human heparinized plasma was developed and validated. Gaboxadol and the stable isotope labeled internal standard were extracted from plasma by mixed mode solid phase extraction and analyzed on an Asahipak NH2P HPLC column with a mobile phase composed of 70% acetonitrile and 30% ammonium acetate (20 mM, pH 4). The analytes were detected by a SCIEX API 4000 triple quadropole instrument using turbo electrospray ionization and multiple reaction monitoring negative mode. The method was validated over the concentration range of 0.5-100 ng/mL. The intra-day precision of the assay, as measured by the coefficient of variation (CV%), was within 4%. The intra-day assay accuracy was found to be within 2.2% of the nominal concentration for all the standards. The average recovery of gaboxadol was about 87% and the ion suppression was approximately 8%. To eliminate late eluters including the glucuronides, a "front cut" column switching procedure was added to the chromatographic system. The effectiveness of the column switching in eliminating the absolute matrix effect caused by late eluters was demonstrated by the low variation (CV<3.5%) in the peak areas of the internal standard during the assessment of the inter-day precision and accuracy and no significant relative matrix effect was observed as illustrated by the excellent intra-day precision (CV<1.5%) from the assessment of standard samples prepared in five different lots of control plasma. The described bioanalytical method has been successfully utilized for the analysis of gaboxadol in post-dose samples (>8000) from various clinical studies. Inter-day precision and accuracy were assessed from the daily mean (n=2) of QC values from 52 runs, i.e. more than 3000 samples. The inter-day precision of the assay, based on the coefficient of variation of QC, ranged from 2.1 to 5.1%. The inter-day assay accuracy was found to be within 4% of the nominal concentration for all QC samples.
建立并验证了一种用于定量测定人肝素化血浆中加波沙朵的选择性灵敏亲水作用液相色谱串联质谱生物分析方法。加波沙朵和稳定同位素标记内标通过混合模式固相萃取从血浆中提取,并在Asahipak NH2P HPLC柱上进行分析,流动相由70%乙腈和30%乙酸铵(20 mM,pH 4)组成。使用涡轮电喷雾电离和多反应监测负模式,通过SCIEX API 4000三重四极杆仪器检测分析物。该方法在0.5 - 100 ng/mL的浓度范围内进行了验证。以变异系数(CV%)衡量,该测定的日内精密度在4%以内。所有标准品的日内测定准确度在标称浓度的2.2%以内。加波沙朵的平均回收率约为87%,离子抑制约为8%。为消除包括葡萄糖醛酸苷在内的晚流出物,在色谱系统中增加了“前切”柱切换程序。在评估日间精密度和准确度期间,内标峰面积的低变异(CV<3.5%)证明了柱切换在消除晚流出物引起的绝对基质效应方面的有效性,并且从在五个不同批次对照血浆中制备的标准样品的评估中可以看出,由于出色的日内精密度(CV<1.5%),未观察到明显的相对基质效应。所描述的生物分析方法已成功用于分析来自各种临床研究的给药后样品(>8000)中的加波沙朵。从52次运行(即超过3000个样品)的QC值的每日平均值(n = 2)评估日间精密度和准确度。基于QC的变异系数,该测定的日间精密度范围为2.1%至5.1%。所有QC样品的日间测定准确度在标称浓度的4%以内。