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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Evaluation of 11 ionic liquids as potential extraction solvents for benzodiazepines from whole blood using liquid-liquid microextraction combined with LC-MS/MS
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Evaluation of 11 ionic liquids as potential extraction solvents for benzodiazepines from whole blood using liquid-liquid microextraction combined with LC-MS/MS

机译:使用液 - 液微萃取与LC-MS / MS联合来自全血的全血苯二氮氧基胺的潜在提取溶剂的潜在提取溶剂

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摘要

Ionic liquids (ILs) are becoming a trending topic in sample preparation technology, due to their low volatility, low flammability and tunable physiochemical properties. The latter affords the opportunity for creating task specific solvents. In toxicology, these tailored ILs were not introduced yet; however, they can be significant for drug extraction purposes. This study screens 11 commercially available ILs as potential extraction media for benzodiazepines from blood samples via liquid-liquid microextraction, coupled to liquid chromatography tandem mass spectrometry (LC-MS/MS). Structure-extraction relationships were deducted from recovery and matrix effect results (n = 5), allowing us to devise some of the favorable features in a tailored IL for benzodiazepine extraction. Overall, long alkyl chains are to be avoided, as they may sterically hinder desirable n stacking interactions. For the same reason, aromatic planar cations, as imidazolium and pyridinium, were more effective in comparison with ammonium and pyrrolidinium. Furthermore, viscosity negatively impacted both recoveries and matrix effects. High viscosities limited mass transfer during dispersion and impeded electrospray ionization processes. In conclusion, this study evaluates which physicochemical features an IL should possess to efficiently extract benzodiazepines from whole blood.
机译:离子液体(ILS)是在样品制备技术中成为样品制备技术的趋势主题,因为它们的挥发性低,可燃性低和可调谐的物理化学性质。后者提供了创建任务特定溶剂的机会。毒理学,这些量身定制的ILS尚未介绍;然而,它们对于药物提取目的而言可能很重要。本研究将11个可商购的ILS作为来自液体微萃取的血液样品的苯二氮卓卓的潜在提取介质,偶联至液相色谱串联质谱(LC-MS / MS)。从恢复和基质效应结果中扣除结构 - 提取关系(n = 5),允许我们在为苯二氮卓提取的定制IL中设计一些有利的特征。总的来说,要避免长的烷基链,因为它们可以是空间妨碍所需的N堆叠相互作用。出于同样的原因,与氨基和吡咯烷相比,芳族平面阳离子作为咪唑鎓和吡啶鎓更有效。此外,粘度对回收率和基质效应产生负面影响。高粘度有限的分散过程中的质量传递和电阻电喷雾电离过程。总之,该研究评估了IL的物理化学特征应该有效地从全血中提取苯并二氮杂胺。

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