Department of Forensic Medicine, Kytösuontie 11,University of Helsinki, Finland.
J Anal Toxicol. 2010 Apr;34(3):113-21. doi: 10.1093/jat/34.3.113.
A novel headspace in-tube extraction gas chromatography-mass spectrometry (ITEX-GC-MS) approach was developed for broad-scale analysis of low molecular weight organic compounds in blood and/or urine. One sample was analyzed following in-vial derivatization with dimethyl sulfate for ethylene glycol (EG), glycolic acid (GA), formic acid (FA), other hydroxylic compounds, and another sample for underivatized volatile organic compounds. Tenax adsorbent resin was used in the microtrap, and a porous layer, open tubular GC capillary column was used for separation. MS was operated in the full-scan mode, identification was based on the Automated Mass Spectral Deconvolution and Identification System, and quantification was based on extracted ions. The limits of quantification for EG, GA, and FA in blood were 10, 50, and 30 mg/L, respectively, and the expanded uncertainties of measurement were 20%, 16%, and 14%, respectively. The procedure allowed for the first time the inclusion of EG and GA as their methyl derivatives within a quantitative HS analysis. The ITEX method described here was more sensitive for analysis of volatile organic compounds than the corresponding static headspace analysis as demonstrated for 11 representative compounds.
一种新型的顶空在线萃取气相色谱-质谱联用(ITEX-GC-MS)方法被开发出来,用于广泛分析血液和/或尿液中的低分子量有机化合物。一个样品在进行衍生化后,用硫酸二甲酯衍生化,用于分析乙二醇(EG)、乙醇酸(GA)、甲酸(FA)和其他羟基化合物;另一个样品则用于分析未衍生的挥发性有机化合物。微捕集器中使用 Tenax 吸附剂树脂,多孔层开管 GC 毛细管柱用于分离。MS 以全扫描模式操作,基于自动质谱解卷积和识别系统进行鉴定,基于提取离子进行定量。血液中 EG、GA 和 FA 的定量限分别为 10、50 和 30mg/L,测量的扩展不确定度分别为 20%、16%和 14%。该方法首次允许将 EG 和 GA 作为其甲基衍生物包含在定量 HS 分析中。与相应的静态顶空分析相比,所描述的 ITEX 方法对挥发性有机化合物的分析更为敏感,这在 11 种代表性化合物的分析中得到了证明。