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Specificity enhancement by electrospray ionization multistage mass spectrometry - a valuable tool for differentiation and identification of 'V'-type chemical warfare agents

机译:电喷雾电离多级质谱提高特异性-一种区分和鉴定“ V”型化学战剂的宝贵工具

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The use of chemical warfare agents has become an issue of emerging concern. One of the challenges in analytical monitoring of the extremely toxic 'V'-type chemical weapons [O-alkyl S-(2-dialkylamino)ethyl alkylphosphonothiolates] is to distinguish and identify compounds of similar structure. MS analysis of these compounds reveals mostly fragment/product ions representing the amine-containing residue. Hence, isomers or derivatives with the same amine residue exhibit similar mass spectral patterns in both classical EI/MS and electrospray ionization-MS, leading to unavoidable ambiguity in the identification of the phosphonate moiety. A set of five 'V'-type agents, including O-ethyl S-(2-diisopropylamino)ethyl methylphosphonothiolate (VX), O-isobutyl S- (2-diethylamino)ethylmethylphosphonothiolate (RVX) and O-ethyl S-(2-diethylamino)ethyl methylphosphonothiolate (VM) were studied by liquid chromatography/electrospray ionization/MS, utilizing a QTRAP mass detector. MS/MS enhanced product ion scans and multistage MS3 experiments were carried out. Based on the results, possible fragmentation pathways were proposed, and a method for the differentiation and identification of structural isomers and derivatives of 'V'-type chemical warfare agents was obtained. MS/MS enhanced product ion scans at various collision energies provided information-rich spectra, although many of the product ions obtained were at low abundance. Employing MS3 experiments enhanced the selectivity for those low abundance product ions and provided spectra indicative of the different phosphonate groups. Study of the fragmentation pathways, revealing some less expected structures, was carried out and allowed the formulation of mechanistic rules and the determination of sets of ions typical of specific groups, for example, methylphosphonothiolates versus ethylphosphonothiolates. The newgroup-specific ions elucidated in thiswork are also useful for screening unknown 'V'-type agents and related compounds, utilizing precursor ion scan experiments.
机译:化学战剂的使用已经成为新出现的问题。分析毒性极强的“ V”型化学武器[O-烷基S-(2-二烷基氨基)乙基烷基硫代磷酸酯]的挑战之一是区分和鉴定结构相似的化合物。这些化合物的质谱分析表明,大部分碎片/产物离子代表了含胺残基。因此,具有相同胺残基的异构体或衍生物在经典EI / MS和电喷雾电离MS中均表现出相似的质谱图,从而在膦酸酯部分的鉴定中不可避免地产生歧义。一组五个'V'型试剂,包括O-乙基S-(2-二异丙氨基氨基)乙基甲基硫代磷酸酯(VX),O-异丁基S-(2-二乙基氨基)乙基甲基硫代磷酸酯(RVX)和O-乙基S-(2通过液相色谱/电喷雾电离/ MS,使用QTRAP质量检测器研究了-二乙氨基)乙基甲基硫代磷酸酯(VM)。进行了MS / MS增强的产物离子扫描和多级MS3实验。根据这些结果,提出了可能的裂解途径,并获得了一种区分和鉴定“ V”型化学战剂的结构异构体和衍生物的方法。 MS / MS在各种碰撞能量下增强的产物离子扫描提供了信息丰富的光谱,尽管获得的许多产物离子的丰度较低。使用MS3实验提高了对那些低丰度产物离子的选择性,并提供了指示不同膦酸酯基团的光谱。进行了碎裂途径的研究,揭示了一些不太期望的结构,并允许制定了机械规则并确定了特定基团典型的离子组,例如,甲基硫代磷酸硫代膦酸酯与乙基硫代磷酸硫代膦酸酯。在这项工作中阐明的新的组特异性离子还可用于利用前体离子扫描实验筛选未知的“ V”型试剂和相关化合物。

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