Uclés Moreno Ana, Herrera López Sonia, Reichert Barbara, Lozano Fernández Ana, Hernando Guil María Dolores, Fernández-Alba Amadeo Rodríguez
Agrifood Campus of International Excellence (ceiA3), European Union Reference Laboratory for Pesticide Residues in Fruit & Vegetables, University of Almeria , Ctra. Sacramento, s/n, 04120 La Cañada de San Urbano, Almerı́a, Spain.
Anal Chem. 2015 Jan 20;87(2):1018-25. doi: 10.1021/ac5035852. Epub 2014 Dec 24.
This manuscript reports a new pesticide residue analysis method employing a microflow-liquid chromatography system coupled to a triple quadrupole mass spectrometer (microflow-LC-ESI-QqQ-MS). This uses an electrospray ionization source with a narrow tip emitter to generate smaller droplets. A validation study was undertaken to establish performance characteristics for this new approach on 90 pesticide residues, including their degradation products, in three commodities (tomato, pepper, and orange). The significant benefits of the microflow-LC-MS/MS-based method were a high sensitivity gain and a notable reduction in matrix effects delivered by a dilution of the sample (up to 30-fold); this is as a result of competition reduction between the matrix compounds and analytes for charge during ionization. Overall robustness and a capability to withstand long analytical runs using the microflow-LC-MS system have been demonstrated (for 100 consecutive injections without any maintenance being required). Quality controls based on the results of internal standards added at the samples' extraction, dilution, and injection steps were also satisfactory. The LOQ values were mostly 5 μg kg(-1) for almost all pesticide residues. Other benefits were a substantial reduction in solvent usage and waste disposal as well as a decrease in the run-time. The method was successfully applied in the routine analysis of 50 fruit and vegetable samples labeled as organically produced.
本手稿报道了一种新的农药残留分析方法,该方法采用微流液相色谱系统与三重四极杆质谱仪联用(微流-LC-ESI-QqQ-MS)。此方法使用带有窄尖端发射器的电喷雾电离源来产生更小的液滴。开展了一项验证研究,以确定这种新方法对三种商品(番茄、辣椒和橙子)中90种农药残留(包括其降解产物)的性能特征。基于微流-LC-MS/MS的方法的显著优点是灵敏度大幅提高,以及通过样品稀释(高达30倍)显著降低基质效应;这是由于在电离过程中基质化合物和分析物之间对电荷的竞争减少所致。已证明使用微流-LC-MS系统具有总体稳健性以及能够承受长时间分析运行(连续进样100次,无需任何维护)。基于在样品提取、稀释和进样步骤中添加内标物的结果进行的质量控制也令人满意。几乎所有农药残留的定量限(LOQ)值大多为5 μg kg⁻¹。其他优点包括溶剂使用量和废物处理量大幅减少以及运行时间缩短。该方法已成功应用于50个标注为有机生产的水果和蔬菜样品的常规分析。