Williams Marta G, Palandra Joe, Shobe Eric M
Pharmacokinetics and Bioanalytical Research, Global Metabolism and Investigative Sciences, Pharmacia Corporation, Kalamazoo, MI 49001, USA.
Biomed Chromatogr. 2003 Jun;17(4):215-8. doi: 10.1002/bmc.210.
A rapid, accurate and precise HPLC-ESI-MS method for the determination of rat plasma uridine concentrations was developed and is described here. Sample preparation involves methanol precipitation of plasma proteins in a 96-well Captiva protein precipitation filter plate. A clear extract is drawn through the filter plate with vacuum, followed by evaporation of the extract and subsequent reconstitution prior to chromatography on a reversed-phase column with an aqueous mobile phase [0.1% (v/v) glacial acetic acid]. Detection was accomplished by positive-ion electrospray ionization mass spectrometry. A calibration curve ranging in concentration from 0.78 to 25 microM was constructed by best-fit, 1/x weighting linear regression analysis of the calibration standard concentrations vs peak height ratios of analyte with internal standard. The correlation coefficient was >0.995. The overall assay accuracy as shown by the back-calculated concentrations of the calibration curve ranged from 96.6 to 103% with RSD ranging from 4.5 to 20%. While this assay method was developed for the determination of uridine in rat plasma, it could be readily adapted for determination of uridine in plasma from other species, such as human.
本文建立并描述了一种快速、准确且精密的HPLC-ESI-MS方法,用于测定大鼠血浆中尿苷的浓度。样品制备包括在96孔Captiva蛋白沉淀滤板中用甲醇沉淀血浆蛋白。通过真空抽吸使清澈的提取物通过滤板,然后将提取物蒸发,随后在反相柱上用含水流动相[0.1%(v/v)冰醋酸]进行色谱分析之前进行复溶。通过正离子电喷雾电离质谱法进行检测。通过对校准标准浓度与分析物与内标物的峰高比进行最佳拟合、1/x加权线性回归分析,构建了浓度范围为0.78至25 microM的校准曲线。相关系数>0.995。校准曲线反算浓度显示的总体分析准确度范围为96.6%至103%,相对标准偏差范围为4.5%至20%。虽然该分析方法是为测定大鼠血浆中的尿苷而开发的,但它可以很容易地适用于测定其他物种(如人类)血浆中的尿苷。