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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Dual-layer solid-phase extraction based on molecular imprinting technology: Seeking a route to enhance selectivity for trace analysis of pesticide residues in olive oil
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Dual-layer solid-phase extraction based on molecular imprinting technology: Seeking a route to enhance selectivity for trace analysis of pesticide residues in olive oil

机译:基于分子印迹技术的双层固相萃取:寻求增加选择性的方法,以分析橄榄油中的农药残留

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摘要

Aiming to introduce a multiresidue analysis for the trace detection of pesticide residues belonging to organophosphorus and triazine classes from olive oil samples, a new sample preparation methodology comprising the use of a dual layer of "tailor-made" molecularly imprinted polymers (MIPs) SPE for the simultaneous extraction of both pesticides in a single procedure has been attempted. This work has focused on the implementation of a dual MIP-layer SPE procedure (DL-MISPE) encompassing the use of two MIP layers as specific sorbents. In order to achieve higher recovery rates, the amount of MIP layers has been optimized as well as the influence of MIP packaging order. The optimized DL-MISPE approach has been used in the preconcentration of spiked organic olive oil samples with concentrations of dimethoate and terbuthylazine similar to the maximum residue limits and further quantification by HPLC. High recovery rates for dimethoate (95%) and terbuthylazine (94%) have been achieved with good accuracy and precision. Overall, this work constitutes the first attempt on the development of a dual pesticide residue methodology for the trace analysis of pesticide residues based on molecular imprinting technology. Thus, DL-MISPE constitutes a reliable, robust, and sensitive sample preparation methodology that enables preconcentration of the target pesticides in complex olive oil samples, even at levels similar to the maximum residue limits enforced by the legislation.
机译:为了引入多残留分析以从橄榄油样品中痕量检测属于有机磷和三嗪类的农药残留,一种新的样品制备方法包括使用双层“定制”分子印迹聚合物(MIP)SPE试图在单一步骤中同时提取两种农药。这项工作的重点是实现双重MIP层SPE程序(DL-MISPE),其中包括将两个MIP层用作特定吸附剂。为了获得更高的回收率,已对MIP层的数量以及MIP封装顺序的影响进行了优化。优化的DL-MISPE方法已用于加标有机橄榄油样品中的乐果和丁丁嗪的浓度与最大残留限量相近,并通过HPLC进行了进一步定量。乐果(95%)和丁噻嗪(94%)的回收率高,准确度和精密度高。总的来说,这项工作是对基于分子印迹技术对农药残留进行痕量分析的双重农药残留方法开发的首次尝试。因此,DL-MISPE构成了可靠,可靠且灵敏的样品前处理方法,即使在类似于法律规定的最大残留限量的水平下,也可以对复杂橄榄油样品中的目标农药进行预浓缩。

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