首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Planar solid phase extraction clean-up and microliter-flow injection analysis-time-of-flight mass spectrometry for multi-residue screening of pesticides in food
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Planar solid phase extraction clean-up and microliter-flow injection analysis-time-of-flight mass spectrometry for multi-residue screening of pesticides in food

机译:平面固相萃取净化和微升流动进样-飞行时间质谱分析法对食品中的农药进行多残留筛选

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摘要

For multi-residue analysis of pesticides in food, a sufficient clean-up is essential for avoiding matrix effects in liquid and gas chromatography (LC and GC) analysis coupled to mass spectrometry (MS). In the last two years, high-throughput planar solid phase extraction (HTpSPE) was established as a new clean-up concept for pesticide residue analysis in fruits and vegetables (C. Oellig, W. Schwack, 2011) and tea (C. Oellig, W. Schwack, 2012). HTpSPE results in matrix-free extracts almost free of interferences and matrix effects. In this study, a time-of-flight mass spectrometer (TOFMS) was applied to directly analyze HTpSPE extracts for pesticide residues. This HTpSPE-microliter-flow injection analysis (μL-FIA)-TOFMS approach detects all pesticides at once in a single mass spectrum, without a liquid chromatographic separation step. Complete sample information was obtained after the injection of the cleaned extract within a single peak. Recovery studies for seven representative pesticides in four different matrices (apples, red grapes, cucumbers, tomatoes) provided mean recoveries of 86-116% with relative standard deviations of 1.3-10% (n = 5) using the mass signal intensities under the entire sample peak. Comparing the mass spectra of sample peaks from spiked extracts and solvent standards indicated the efficiency of HTpSPE clean-up. A pesticide database search detected all spiked pesticides with a low incidence of false-positives. HTpSPE of one sample required a few minutes, and numerous samples could be cleaned in parallel at minimal cost with low sample and solvent consumption. The μL-FIA-TOFMS screening then needed an additional 6 min per sample. The novel screening approach was successfully applied to QuEChERS extracts of several real samples, and the pesticides identified by HTpSPE-μL-FIA-TOFMS were identical to the pesticides detected by common target LC-MS/MS analyses. The high degree of concord antly identified pesticides by the new developed HTpSPE-μL-FIA-TOFMS approach and target LC-MS/MS demonstrates the applicability as a routine screening method.
机译:对于食品中农药的多残留分析,必须进行充分的净化,以避免液相色谱和气相色谱(LC和GC)分析以及质谱(MS)中基质效应的影响。在过去的两年中,高通量平面固相萃取(HTpSPE)被建立为一种新的净化概念,用于分析水果和蔬菜(C. Oellig,W。Schwack,2011)和茶(C. Oellig)中的农药残留,W。Schwack,2012年)。 HTpSPE产生的无基质提取物几乎没有干扰和基质效应。在这项研究中,飞行时间质谱仪(TOFMS)用于直接分析HTpSPE提取物中的农药残留。这种HTpSPE-微升流动注射分析(μL-FIA)-TOFMS方法可在单个质谱中一次检测所有农药,而无需液相色谱分离步骤。在单峰内注入清洗后的提取物后,可获得完整的样品信息。对四种不同基质(苹果,红葡萄,黄瓜,西红柿)中的七种代表性农药的回收率研究使用了整个系统中的质量信号强度,得出平均回收率为86-116%,相对标准偏差为1.3-10%(n = 5)。样品峰。比较加标提取物和溶剂标准液中样品峰的质谱图,表明了HTpSPE净化的效率。农药数据库搜索检测到所有加标农药,假阳性率低。一个样品的HTpSPE需要几分钟,并且可以以最低的成本,低的样品和溶剂消耗并行清洗大量样品。然后,每个样品的μL-FIA-TOFMS筛选需要额外的6分钟。这种新颖的筛选方法已成功应用于几种真实样品的QuEChERS提取物中,并且HTpSPE-μL-FIA-TOFMS鉴定出的农药与常规目标LC-MS / MS分析所检测出的农药相同。通过新开发的HTpSPE-μL-FIA-TOFMS方法和目标LC-MS / MS高度一致地鉴定出农药,证明了其作为常规筛查方法的适用性。

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