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Bioassays for bomb-makers: Proof of concept

机译:炸弹制造者的生物测定:概念验证

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摘要

Clandestine bomb-makers are exposed to significant amounts of explosives and allied materials. As with any ingested xenobiotic substance, these compounds are subject to biotransformation. As such, the potential exists that characteristic suites of biomarkers may be produced and deposited in matrices that can be exploited for forensic and investigative purposes. However, before such assays can be developed, foundational data must be gathered regarding the toxicokinetics, fate, and transport of the resulting biomarkers within the body and in matrices such as urine, hair, nails, sweat, feces, and saliva. This report presents an in vitro method for simulation of human metabolic transformations using human liver microsomes and an assay applicable to representative nitro-explosives. Control and metabolized samples of TNT, RDX, HMX, and tetryl were analyzed using high-performance liquid chromatography coupled to tandem mass spectrometry (LC/MS/MS) and biomarkers identified for each. The challenges associated with this method arise from solubility issues and limitations imposed by instrumentation, specifically, modes of ionization.
机译:秘密炸弹制造者接触了大量的炸药和盟军材料。如同摄入的任何异种生物物质一样,这些化合物也会发生生物转化。这样,存在可能产生特征性生物标志物套件并将其放置在可用于法医和研究目的的基质中的可能性。但是,在开发此类测定方法之前,必须收集有关体内和在尿液,头发,指甲,汗液,粪便和唾液等基质中产生的生物标记物的代谢动力学,命运和运输的基础数据。该报告提出了一种使用人类肝脏微粒体模拟人类代谢转化的体外方法,以及适用于代表性硝基炸药的测定方法。使用高效液相色谱-串联质谱(LC / MS / MS)分析TNT,RDX,HMX和tetryl的对照样品和代谢样品,并为每种样品鉴定生物标志物。与该方法相关的挑战来自溶解度问题和仪器(特别是电离模式)带来的限制。

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