Kaczyński Piotr, Łozowicka Bożena, Perkowski Maciej, Szabuńko Julia
Institute of Plant Protection - National Research Institute, Chełmońskiego 22, 15-195 Bialystok, Poland.
Institute of Plant Protection - National Research Institute, Chełmońskiego 22, 15-195 Bialystok, Poland.
Ecotoxicol Environ Saf. 2017 Apr;138:179-189. doi: 10.1016/j.ecoenv.2016.12.040. Epub 2017 Jan 4.
The analysis of pesticide residues in fish samples is challenging due to the low concentrations and large number of analytes that need to be monitored and quantified in a complex matrix. This is the first report providing a novel one-step extraction-cleanup strategy for simultaneous analysis of over 340 pesticides in a fatty fish and liver matrix, coupled with liquid-chromatography tandem mass spectrometry. The samples of fish muscle and liver were prepared according to the modified QuEChERS (quick, easy, cheap, effective, rugged and safe) procedure, wherein the extraction and cleanup protocol were integrated into one step. Among the tested cleanup dispersive solid phase extraction sorbents (C18, primary-secondary amine, Z-Sep), chitin yielded the best results. Spike-in experiments were carried out at three different spiking levels in fish and liver to determine the recovery, precision and limits of detection of the method as well as the matrix effect. The method's detection limits ranged from 0.05 to 1.2μgkg, while recoveries of most pesticides were in the range of 70-120% with associated precision - relative standard deviations below 20%. A linear relationship was observed within the range of 0.005-1mgkg, and the correlation coefficient was R>0.997. Expanded measurement uncertainty was estimated to be between 7% and 52%, on average. Matrix effects were evaluated and were not significant for the vast majority of pesticides. The validated method was employed in the analysis of 54 real fish and liver samples in which 10 different pesticides with concentrations ranging from 0.005 to 0.047mgkg were detected.
由于需要在复杂基质中监测和定量的分析物浓度低且数量众多,因此对鱼类样品中的农药残留进行分析具有挑战性。这是第一份报告,提供了一种新颖的一步萃取-净化策略,用于同时分析富含脂肪的鱼类和肝脏基质中的340多种农药,并结合液相色谱串联质谱法。鱼肉和肝脏样品按照改良的QuEChERS(快速、简便、廉价、有效、耐用和安全)程序制备,其中萃取和净化方案整合为一步。在测试的净化分散固相萃取吸附剂(C18、伯仲胺、Z-Sep)中,甲壳素产生了最佳结果。在鱼类和肝脏的三种不同加标水平下进行加标实验,以确定该方法的回收率、精密度、检测限以及基质效应。该方法的检测限为0.05至1.2μg/kg,大多数农药的回收率在70%-120%范围内,相关精密度——相对标准偏差低于20%。在0.005-1mg/kg范围内观察到线性关系,相关系数R>0.997。扩展测量不确定度估计平均在7%至52%之间。评估了基质效应,发现绝大多数农药的基质效应不显著。该验证方法用于分析54份实际鱼类和肝脏样品,检测到10种不同农药,浓度范围为0.005至0.047mg/kg。