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Highly Permselective Membrane Surface Modification by Cold Plasma-Induced Grafting Polymerization of Molecularly Imprinted Polymer for Recognition of Pyrethroid Insecticides in Fish

机译:分子印迹聚合物的冷等离子体诱导接枝聚合的高选择性膜表面改性,用于识别鱼中的拟除虫菊酯类杀虫剂

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Specific molecularly imprinted membranes (MIMs) for pyrethroid insecticides were developed and characterized for the first time in this study by cold plasma-induced grafting polymerization using methacrylic acid as a functional monomer and cypermethrin (CYP) as a template. The nonimprinted membranes (NIMs) were also synthesized using the same procedure without the template. Meanwhile, AFM, XPS, ATR-FTIR, contact angle, and permselectivity experiments were conducted to elucidate the imprinting and recognition properties of MIMs. Results demonstrated that MIMs exhibited excellent imprinting effect and high permselectivity. A molecularly imprinted-membrane-assisted solvent extraction (MI-MASE) method based on the MIMs was established. The operating conditions were optimized for group-selective extraction of the five pyrethroid insecticides. Compared with NIMs, higher extraction recoveries (83.8% to 100.6%) of the five pyrethroid insecticides by gas chromatography-electron capture detector (GC-ECD) were obtained using MIMs at three spiked levels in fish samples; the RSD values were lower than 8.3%. The limits of detection (LOD) and quantification (LOQ) defined as the concentrations at which the signal-to-noise (S/N) ratio is 3:1 and 10:1, respectively, were in the range of 0.26 to 0.42 ?g/kg and 0.77 to 1.27 mu g/kg, respectively. No matrix effect of the developed MI-MASE was observed by gas chromatography/tandem mass spectrometry (GC/MS/MS). These results demonstrated a highly selective, efficient, and environment-friendly MI-MASE technique for preconcentration and purification of pyrethroid insecticides from seafood, followed by GC-ECD and GC/MS/MS. The excellent applicability and potential of MI-MASE for routine monitoring of pyrethroid pesticides in food samples has also been confirmed.
机译:拟除虫菊酯类杀虫剂的特定分子印迹膜(MIMs)的开发和表征是本研究中的首次,使用甲基丙烯酸作为功能单体,并以氯氰菊酯(CYP)为模板,通过冷等离子体诱导的接枝聚合反应。还使用相同的方法在没有模板的情况下合成了非印迹膜(NIM)。同时,进行了AFM,XPS,ATR-FTIR,接触角和渗透选择性实验,以阐明MIM的印迹和识别特性。结果表明,MIMs表现出优异的印迹效果和高选择性。建立了基于MIMs的分子印迹膜辅助溶剂萃取(MI-MASE)方法。优化了操作条件,以选择性提取五种拟除虫菊酯类杀虫剂。与NIM相比,使用鱼样中三个加标水平的MIM可以通过气相色谱-电子捕获检测器(GC-ECD)获得5种拟除虫菊酯类杀虫剂的较高提取回收率(83.8%至100.6%); RSD值低于8.3%。检出限(LOD)和定量限(LOQ)定义为信噪比(S / N)分别为3:1和10:1时的浓度范围为0.26至0.42?克/千克和0.77至1.27克/千克。通过气相色谱/串联质谱法(GC / MS / MS)未观察到所开发的MI-MASE的基质效应。这些结果证明了一种高度选择性,高效且环境友好的MI-MASE技术,可以从海鲜中进行浓缩和纯化拟除虫菊酯类杀虫剂,然后进行GC-ECD和GC / MS / MS。还证实了MI-MASE在食品样品中拟除虫菊酯农药常规监测中的出色应用性和潜力。

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