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Selectivity in the sample preparation for the analysis of drug residues in products of animal origin using LC-MS

机译:使用LC-MS分析动物来源产品中药物残留的样品前处理方法的选择性

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摘要

Sample preparation is critical in relation to analysis time, sample throughput and therefore analysis costs. Due to recent advances in liquid chromatography-mass spectrometry (LC-MS) instrumentation, the detection of many compounds within one run became possible, and methods for the simultaneous analysis of different compound groups were developed. To be able to analyze compounds with different physical and chemical properties simultaneously, generic, non-selective sample-preparation procedures are applied.The most frequently reported generic sample-preparation methods are a solvent extraction only, solid-phase extraction and a Quick, Easy, Cheap, Effective, Rugged, and Safe (QuEChERS) approach. These multi-analyte methods - sometimes including more than 150 different compounds - are of much interest for analytical laboratories due to their reduction in costs. A clear drawback of generic sample-preparation procedures is the occurrence of abundant matrix effects, which compromise detection limits, quantitative aspects, method selectivity and maintenance frequency.In contrast to the trend towards non-selective sample preparation, an opposite trend towards more selective sample-preparation methods is expected to be able to confirm the identity of compounds unambiguously (e.g., stereoisomers). This review gives an overview of generic sample-preparation procedures in the analysis of veterinary drug residues in products of animal origin using LC-MS as the detection technique and an outlook towards expected future trends.
机译:样品制备对于分析时间,样品通量以及分析成本至关重要。由于液相色谱-质谱(LC-MS)仪器的最新进展,一次运行中检测多种化合物成为可能,并且开发了同时分析不同化合物组的方法。为了能够同时分析具有不同物理和化学性质的化合物,采用了通用的非选择性样品制备方法,最常报告的通用样品制备方法是仅溶剂萃取,固相萃取和快速,简便,便宜,有效,坚固和安全(QuEChERS)方法。这些多分析物的方法(有时包括150多种不同的化合物)由于降低了成本而引起了分析实验室的极大兴趣。通用样品制备程序的明显缺点是会发生大量基质效应,这会影响检测限,定量方面,方法的选择性和维护频率。与非选择性样品制备的趋势相反,向选择性更高的样品相反的趋势制备方法有望能够明确确认化合物的身份(例如立体异构体)。这篇综述概述了使用LC-MS作为检测技术分析动物来源产品中兽药残留的通用样品制备程序,并对预期的未来趋势进行了展望。

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