Kataoka H, Lord H L, Pawliszyn J
Department of Chemistry, University of Waterloo, Ontario, Canada.
J Anal Toxicol. 2000 May-Jun;24(4):257-65. doi: 10.1093/jat/24.4.257.
A simple and rapid method for the determination of amphetamine, methamphetamine, and their 3,4-methylenedioxy derivatives in urine samples was developed using automated in-tube solid-phase microextraction (SPME) coupled with liquid chromatography-electrospray ionization mass spectrometry (LC-ESI-MS). In-tube SPME is an extraction technique for organic compounds in aqueous samples in which analytes are extracted from the sample directly into an open tubular capillary by repeated draw/eject cycles of sample solution. LC-MS analyses of stimulants were initially performed by liquid injection onto an LC column to determine spectra. Five stimulants tested in this study gave very simple ESI mass spectra, and strong signals corresponding to [M+H]+ were observed for all stimulants. The stimulants were well separated with a Supelcosil LC-CN column using acetonitrile/50mM ammonium acetate (15:85) as a mobile phase. In order to optimize the extraction of stimulants, several in-tube SPME parameters were examined. The optimum extraction conditions were 15 draw/eject cycles of 35 microL of sample in 50mM Tris-HCI (pH 8.5) at a flow rate of 100 microL/min using an Omegawax 250 capillary column. The stimulants extracted by the capillary were easily desorbed by mobile phase flow, and carryover of stimulants was not observed. Using in-tube SPME-LC-ESI-MS with selected ion monitoring, the calibration curves of stimulants were linear in the range from 2 to 100 ng/mL with correlation coefficients above 0.9985 (n = 18) and detection limits (S/N = 3) of 0.38-0.82 ng/mL. This method was successfully applied to the analysis of human urine samples without interference peaks. The recoveries of stimulants spiked into urine samples were above 81%.
建立了一种简单快速的方法,用于测定尿液样本中的苯丙胺、甲基苯丙胺及其3,4 - 亚甲基二氧基衍生物,该方法采用自动管内固相微萃取(SPME)结合液相色谱 - 电喷雾电离质谱(LC - ESI - MS)。管内SPME是一种用于水样中有机化合物的萃取技术,其中分析物通过样品溶液的重复吸取/排出循环从样品直接萃取到开口管状毛细管中。兴奋剂的LC - MS分析最初通过液体注入LC柱来确定光谱。本研究中测试的五种兴奋剂给出了非常简单的ESI质谱,并且所有兴奋剂都观察到了对应于[M + H]+的强信号。使用乙腈/50mM醋酸铵(15:85)作为流动相,在Supelcosil LC - CN柱上,兴奋剂得到了很好的分离。为了优化兴奋剂的萃取,研究了几个管内SPME参数。最佳萃取条件是使用Omegawax 250毛细管柱,在50mM Tris - HCl(pH 8.5)中,以100μL/min的流速对35μL样品进行15次吸取/排出循环。毛细管萃取的兴奋剂很容易被流动相洗脱,并且未观察到兴奋剂的残留。使用管内SPME - LC - ESI - MS结合选择离子监测,兴奋剂的校准曲线在2至100 ng/mL范围内呈线性,相关系数高于0.9985(n = 18),检测限(S/N = 3)为0.38 - 0.82 ng/mL。该方法成功应用于人体尿液样本的分析,无干扰峰。添加到尿液样本中的兴奋剂回收率高于81%。