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Comprehensive automation of the solid phase extraction gas chromatographic mass spectrometric analysis (SPE-GC/MS) of opioids, cocaine, and metabolites from serum and other matrices

机译:血清和其他基质中阿片样物质,可卡因和代谢物的固相萃取气相色谱质谱分析(SPE-GC / MS)的综合自动化

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摘要

The analysis of opioids, cocaine, and metabolites from blood serum is a routine task in forensic laboratories. Commonly, the employed methods include many manual or partly automated steps like protein precipitation, dilution, solid phase extraction, evaporation, and derivatization preceding a gas chromatography (GC)/mass spectrometry (MS) or liquid chromatography (LC)/MS analysis. In this study, a comprehensively automated method was developed from a validated, partly automated routine method. This was possible by replicating method parameters on the automated system. Only marginal optimization of parameters was necessary. The automation relying on an x-y-z robot after manual protein precipitation includes the solid phase extraction, evaporation of the eluate, derivatization (silylation with N-methyl-N-trimethylsilyltrifluoroacetamide, MSTFA), and injection into a GC/MS. A quantitative analysis of almost 170 authentic serum samples and more than 50 authentic samples of other matrices like urine, different tissues, and heart blood on cocaine, benzoylecgonine, methadone, morphine, codeine, 6-monoacetylmorphine, dihydrocodei n e, and 7-aminoflunitrazepam was conducted with both methods proving that the analytical results are equivalent even near the limits of quantification (low ng/ml range). To our best knowledge, this application is the first one reported in the literature employing this sample preparation system.
机译:在法医实验室中,分析血清中的阿片类药物,可卡因和代谢产物是一项常规工作。通常,采用的方法包括许多手动或部分自动化的步骤,例如蛋白质沉淀,稀释,固相萃取,蒸发和气相色谱(GC)/质谱(MS)或液相色谱(LC)/ MS分析之前的衍生化步骤。在这项研究中,从经过验证的部分自动化的常规方法开发了一种全面的自动化方法。这可以通过在自动化系统上复制方法参数来实现。仅需要对参数进行边际优化。手动蛋白质沉淀后,依靠x-y-z机器人进行的自动化包括固相萃取,洗脱液蒸发,衍生化(与N-甲基-N-三甲基甲硅烷基三氟乙酰胺进行甲硅烷基化)和注入GC / MS。对可卡因,苯甲酰芽子碱,美沙酮,吗啡,可待因,6-单乙酰吗啡,二氢可待因和7-氨基氟硝西epa的近170种真实血清样品和50多种其他基质(如尿液,不同组织和心脏血液)的真实样品进行了定量分析。用这两种方法进行的分析都证明了即使在接近定量限(低ng / ml范围)时,分析结果也相当。据我们所知,该应用是文献中使用该样品制备系统的第一个应用。

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