首页> 外文期刊>Journal of Agricultural and Food Chemistry >Fast Extraction and Dilution Flow Injection Mass Spectrometry Method for Quantitative Chemical Residue Screening in Food
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Fast Extraction and Dilution Flow Injection Mass Spectrometry Method for Quantitative Chemical Residue Screening in Food

机译:食品中化学残留定量的快速萃取稀释流动注射质谱法

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A prototype multiresidue method based on fast extraction and dilution of samples followed by flow injection mass spectrometry analysis is proposed here for high-throughput chemical screening in complex matrices. The method was tested for sulfonylurea herbicides (triflusulfuron methyl, azimsulfuron, chlorimuron ethyl, sulfometuron methyl, chlorsulfuron, and flupyrsulfuron methyl), carbamate insecticides (oxamyl and methomyl), pyrimidine carboxylic acid herbicides (aminocyclopyrachlor and aminocyclopyrachlor methyl), and anthranilic diamide insecticides (chlorantraniliprole and cyantraniliprole). Lemon and pecan were used as representative high-water and low-water content matrices, respectively, and a sample extraction procedure was designed for each commodity type. Matrix-matched external standards were used for calibration, yielding linear responses with correlation coefficients (r) consistently >0.99. The limits of detection (LOD) were estimated to be between 0.01 and 0.03 mg/kg for all analytes, allowing execution of recovery tests with samples fortified at ≥0.05 mg/kg. Average analyte recoveries obtained during method validation for lemon and pecan ranged from 75 to 118% with standard deviations between 3 and 21%. Representative food processed fractions were also tested, that is, soybean oil and corn meal, yielding individual analyte average recoveries ranging from 62 to 114% with standard deviations between 4 and 18%. An intralaboratory blind test was also performed; the method excelled with 0 false positives and 0 false negatives in 240 residue measurements (20 samples x 12 analytes). The daily throughput of the fast extraction and dilution (FED) procedure is estimated at 72 samples/chemist, whereas the flow injection mass spectrometry (FI-MS) throughput could be as high as 4.3 sample injections/min, making very efficient use of mass spectrometers with negligible instrumental analysis time compared to the sample homogenization, preparation, and data processing steps.
机译:本文提出了一种基于样品的快速提取和稀释然后进行流动注射质谱分析的原型多残留方法,用于复杂基质中的高通量化学筛选。测试了该方法的磺酰脲类除草剂(三氟磺隆甲基,阿齐磺隆,氯嘧磺隆,磺甲基磺隆甲基,氯磺隆和氟吡磺隆甲基),氨基甲酸酯类杀虫剂(草氨酰和甲)基),嘧啶羧酸类除草剂(氨基环草酰氯,氨基和二甲基环嘧啶)氯antlaniliprole和cyantraniliprole)。柠檬和山核桃分别用作代表性的高含水量和低含​​水量基质,并且针对每种商品类型设计了样品提取程序。使用与基质匹配的外标进行校准,产生线性响应,且相关系数(r)始终> 0.99。所有分析物的检出限(LOD)估计在0.01和0.03 mg / kg之间,从而可以对浓度≥0.05 mg / kg的样品进行回收率测试。在方法验证期间,柠檬和山核桃的平均分析物回收率介于75%至118%之间,标准偏差介于3%至21%之间。还测试了具有代表性的食品加工馏分,即豆油和玉米粉,得到的单个分析物平均回收率在62%至114%之间,标准偏差在4%至18%之间。还进行了实验室内盲测。该方法在240个残留物测量(20个样品x 12种分析物)中具有0个假阳性和0个假阴性的优势。快速提取和稀释(FED)程序的每日通量估计为72个样品/化学家,而流动注射质谱(FI-MS)的通量可能高达4.3个样品注射/分钟,从而非常有效地利用了质量与样品均质化,制备和数据处理步骤相比,仪器分析时间可忽略的光谱仪。

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