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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >GC-MS and LC-MS analysis of nerve agents in body fluids: Intra-laboratory verification test using spiked plasma and urine samples
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GC-MS and LC-MS analysis of nerve agents in body fluids: Intra-laboratory verification test using spiked plasma and urine samples

机译:体液中神经毒剂的GC-MS和LC-MS分析:使用加标血浆和尿液样本的实验室内验证测试

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The purpose of this study was to check the applicability of different analytical methods for the identification of unknown nerve agents in human body fluids. Plasma and urine samples were spiked with nerve agents (plasma) or with their metabolites (urine) or were left blank. Seven random samples (35% of all samples) were selected for the verification test. Plasma was worked up for unchanged nerve agents and for regenerated nerve agents after fluoride-induced reactivation of nerve agent-inhibited butyrylcholinesterase. Both extracts were analysed by GC-MS. Metabolites were extracted from plasma and urine, respectively, and were analysed by LC-MS. The urinary metabolites and two blank samples could be identified without further measurements, plasma metabolites and blanks were identified in six of seven samples. The analysis of unchanged nerve agent provided five agents/blanks and the sixth agent after further investigation. The determination of the regenerated agents also provided only five clear findings during the first screening because of a rather noisy baseline. Therefore, the sample preparation was extended by a size exclusion step performed before addition of fluoride which visibly reduced baseline noise and thus improved identification of the two missing agents. The test clearly showed that verification should be performed by analysing more than one biomarker to ensure identification of the agent(s).
机译:这项研究的目的是检查不同分析方法对人体液体中未知神经毒剂鉴定的适用性。血浆和尿液样本中掺入了神经毒剂(血浆)或其代谢产物(尿液)或留空。选择了七个随机样本(占所有样本的35%)进行验证测试。在氟化物诱导的神经药抑制丁酰胆碱酯酶激活后,对血浆中未改变的神经药和再生的神经药进行了处理。两种提取物均通过GC-MS分析。分别从血浆和尿液中提取代谢物,并通过LC-MS分析。无需进一步测量即可鉴定尿液代谢物和两个空白样品,在七个样品中的六个样品中鉴定出血浆代谢物和空白。经过进一步调查后,对神经原状不变的分析提供了五种空白,第六种为空白。由于基线噪音较大,在初次筛查过程中对再生剂的测定也仅提供了五个明确的发现。因此,通过在添加氟化物之前执行的尺寸排阻步骤扩展了样品制备过程,从而明显降低了基线噪音,从而改善了对两种缺失试剂的识别。该测试清楚地表明,应通过分析一种以上的生物标志物来进行验证,以确保识别出一种或多种药剂。

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