Reuschel S A, Percey S E, Liu S, Eades D M, Foltz R L
Northwest Bioanalytical, Division of NWT Inc., Salt Lake City, Utah 84124, USA.
J Anal Toxicol. 1999 Sep;23(5):306-12. doi: 10.1093/jat/23.5.306.
An assay has been developed for quantitative determination of lysergic acid diethylamide (LSD) and a major metabolite of LSD in human urine at concentrations as low as 10 pg/mL. In most LSD-positive urine samples the metabolite, 2-oxo-3-hydroxy-LSD, is present at higher concentrations than LSD and can be detected for a longer time than LSD after ingestion of the drug. Urine samples are extracted using Varian Bond Elut Certify extraction cartridges. Confirmatory identification is accomplished by trimethylsilylation of LSD and 2-oxo-3-hydroxy-LSD, followed by gas chromatography-tandem mass spectrometry analysis using positive ion chemical ionization and selected reaction monitoring. Commercially available lysergic acid methylpropylamide and 2-oxo-3-hydroxy-LAMPA are used as internal standards. With selected reaction monitoring, both compounds gave linear calibration curves from 10 pg/mL to 5000 pg/mL. Forty-nine human urine samples that had previously been shown to contain LSD were reanalyzed by the new method. These samples showed an average LSD concentration of 357 pg/mL and an average 2-oxo-3-hydroxy-LSD concentration of 3470 pg/mL. Additional experiments using clinical samples in which two subjects were dosed with LSD support the conclusion that analysis for 2-oxo-3-hydroxy-LSD can permit identification of LSD users for a longer period following ingestion than analysis for the parent drug.
已开发出一种检测方法,用于定量测定人尿中浓度低至10 pg/mL的麦角酸二乙酰胺(LSD)及其主要代谢物。在大多数LSD阳性尿样中,代谢物2-氧代-3-羟基-LSD的浓度高于LSD,且在摄入药物后,其可被检测到的时间比LSD更长。尿样使用瓦里安Bond Elut Certify萃取柱进行萃取。通过对LSD和2-氧代-3-羟基-LSD进行三甲基硅烷化,然后使用正离子化学电离和选择反应监测进行气相色谱-串联质谱分析来完成确证鉴定。市售的麦角酸甲基丙酰胺和2-氧代-3-羟基-LAMPA用作内标。通过选择反应监测,两种化合物在10 pg/mL至5000 pg/mL范围内均给出线性校准曲线。用新方法重新分析了49份先前已证明含有LSD的人尿样。这些样品的LSD平均浓度为357 pg/mL,2-氧代-3-羟基-LSD平均浓度为3470 pg/mL。使用临床样品进行的额外实验,其中两名受试者服用了LSD,支持了以下结论:对2-氧代-3-羟基-LSD进行分析比分析母体药物能够在摄入后更长时间内鉴定出LSD使用者。