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在线流动注射分子印迹固相萃取法用于尿液样品中 1-羟基芘的预浓缩和测定。

On-line flow injection molecularly imprinted solid phase extraction for the preconcentration and determination of 1-hydroxypyrene in urine samples.

机构信息

Department of Analytical Sciences, Faculty of Sciences. National University of Distance Education (UNED), 28040 Madrid, Spain.

Department of Chemical and Energy Technology, Chemical and Environmental Technology, Mechanical Technology and Analytical Chemistry, King Juan Carlos University (URJC), 28933 Móstoles, Spain.

出版信息

Talanta. 2017 May 1;166:375-382. doi: 10.1016/j.talanta.2016.01.048. Epub 2016 Jan 25.

Abstract

New analytical strategies tend to automation of sample pre-treatment and flow analysis techniques provided a number of enhanced analytical methods allowing high throughput. Flow techniques are usually faster, more robust and more flexible than their batch equivalents. In addition, flow methods use less sample and reagent amounts and reduce analytical costs and waste. A flow injection solid-phase extraction pre-concentration system using a molecularly imprinted polymer (MIP) packed micro-column was developed for the determination of 1-hydroxypyrene in human urine with fluorescence detection. The pre-concentration of 1-hydroxypyrene on the MIP was carried out based on the specific retention of analyte by on-line introducing the sample into the micro-column system. Methanol and dichloromethane mixture was used to elute the retained analyte for fluorometric analysis. Important influencing factors were studied in detail, in batch and in flow (MISPE procedure optimisation, sample and eluent volumes, flow rate, dimensions of MIP micro-column and amounts of packing material, etc). To the best of our knowledge, this is the first on-line flow injection molecularly imprinted solid phase extraction for the pre-concentration and determination of hydroxylate PAH metabolite in urine samples. The optimised method was successfully applied to the determination of 1-Hydroxypyrene in spiked urine samples, with recoveries in the range of 74-85% and RSD<4.6%. Under optimum experimental conditions, the linearity concentration range used was 10-400μgL, R>0.996. We obtained limit of detection and quantification of 3.1μgL and 10.5μgL, respectively.

摘要

新的分析策略倾向于自动化样品预处理和流动分析技术,提供了许多增强的分析方法,允许高通量。与批处理等效物相比,流动技术通常更快、更稳健且更灵活。此外,流动方法使用更少的样品和试剂量,并降低了分析成本和浪费。开发了一种使用分子印迹聚合物 (MIP) 填充微柱的流动注射固相萃取预浓缩系统,用于荧光检测测定人尿中的 1-羟基芘。通过在线将样品引入微柱系统,基于分析物的特异性保留,在 MIP 上进行 1-羟基芘的预浓缩。甲醇和二氯甲烷混合物用于洗脱保留的分析物进行荧光分析。详细研究了批次和流动中的重要影响因素(MISPE 程序优化、样品和洗脱液体积、流速、MIP 微柱尺寸和填充材料量等)。据我们所知,这是首次在线流动注射分子印迹固相萃取用于预浓缩和测定尿液样品中羟化 PAH 代谢物。优化后的方法成功应用于加标尿液样品中 1-羟基芘的测定,回收率在 74-85%之间,RSD<4.6%。在最佳实验条件下,使用的线性浓度范围为 10-400μgL,R>0.996。我们分别获得了 3.1μgL 和 10.5μgL 的检测限和定量限。

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