Botitsi Helen V, Garbis Spiros D, Economou Anastasios, Tsipi Despina F
General Chemical State Laboratory, Pesticide Residues Laboratory, 16 An. Tsocha Street, Athens 115 21, Greece.
Mass Spectrom Rev. 2011 Sep-Oct;30(5):907-39. doi: 10.1002/mas.20307. Epub 2010 Dec 17.
Analysis of pesticides and their metabolites in food and water matrices continues to be an active research area closely related to food safety and environmental issues. This review discusses the most widely applied mass spectrometric (MS) approaches to pesticide residues analysis over the last few years. The main techniques for sample preparation remain solvent extraction and solid-phase extraction. The QuEChERS (Quick, Easy, Cheap, Effective, Rugged, Safe) approach is being increasingly used for the development of multi-class pesticide residues methods in various sample matrices. MS detectors-triple quadrupole (QqQ), ion-trap (IT), quadrupole linear ion trap (QqLIT), time-of-flight (TOF), and quadrupole time-of-flight (QqTOF)-have been established as powerful analytical tools sharing a primary role in the detection/quantification and/or identification/confirmation of pesticides and their metabolites. Recent developments in analytical instrumentation have enabled coupling of ultra-performance liquid chromatography (UPLC) and fast gas chromatography (GC) with MS detectors, and faster analysis for a greater number of pesticides. The newly developed "ambient-ionization" MS techniques (e.g., desorption electrospray ionization, DESI, and direct analysis in real time, DART) hyphenated with high-resolution MS platforms without liquid chromatography separation, and sometimes with minimum pre-treatment, have shown potential for pesticide residue screening. The recently introduced Orbitrap mass spectrometers can provide high resolving power and mass accuracy, to tackle complex analytical problems involved in pesticide residue analysis.
食品和水基质中农药及其代谢物的分析仍然是一个与食品安全和环境问题密切相关的活跃研究领域。本综述讨论了过去几年中应用最广泛的农药残留分析质谱(MS)方法。样品制备的主要技术仍然是溶剂萃取和固相萃取。QuEChERS(快速、简便、廉价、有效、耐用、安全)方法越来越多地用于开发各种样品基质中的多类农药残留分析方法。质谱检测器——三重四极杆(QqQ)、离子阱(IT)、四极杆线性离子阱(QqLIT)、飞行时间(TOF)和四极杆飞行时间(QqTOF)——已成为强大的分析工具,在农药及其代谢物的检测/定量和/或鉴定/确证中发挥着主要作用。分析仪器的最新发展使得超高效液相色谱(UPLC)和快速气相色谱(GC)能够与质谱检测器联用,从而对更多农药进行更快的分析。新开发的“常压电离”质谱技术(如解吸电喷雾电离、DESI和实时直接分析、DART)与高分辨率质谱平台联用,无需液相色谱分离,有时只需最少的预处理,已显示出农药残留筛查的潜力。最近推出的轨道阱质谱仪可以提供高分辨率和质量精度,以解决农药残留分析中涉及的复杂分析问题。