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一锅法合成介孔结构比率荧光分子印迹传感器用于高灵敏检测牛奶样品中的三聚氰胺。

One-pot synthesis of mesoporous structured ratiometric fluorescence molecularly imprinted sensor for highly sensitive detection of melamine from milk samples.

机构信息

School of Chemistry and Chemical Engineering, Linyi University, Linyi 276005, China.

School of Chemistry and Chemical Engineering, Linyi University, Linyi 276005, China.

出版信息

Biosens Bioelectron. 2015 Nov 15;73:160-166. doi: 10.1016/j.bios.2015.05.064. Epub 2015 May 30.

Abstract

A facile strategy was developed to prepare mesoporous structured ratiometric fluorescence molecularly imprinted sensor for highly sensitive and selective determination of melamine using CdTe QDs as target sensitive dye and hematoporphyrin as reference dyes. One-pot synthesis method was employed because it could simplify the imprinting process and shorten the experimental period. The as-prepared fluorescence MIPs sensor, which combined ratiometric fluorescence technique with mesoporous silica materials into one system, exhibited excellent selectivity and sensitivity. Under optimum conditions, these mesoporous structured ratiometric fluorescence MIP@QDs sensors showed detection limit as low as 38 nM, which was much lower than those non-mesoporous one. The recycling process was sustainable at least 10 times without obvious efficiency decrease. The feasibility of the developed method in real samples was successfully evaluated through the analysis of melamine in raw milk and milk powder samples with satisfactory recoveries of 92-101%. The developed method proposed in this work proved to be a convenient, rapid, reliable and practical way to prepared high sensitive and selective fluorescence sensors with potentially applicable for trace pollutants analysis in complicated samples.

摘要

一种简便的策略被开发出来,用于制备介孔结构比率荧光分子印迹传感器,以高灵敏度和选择性地测定三聚氰胺。使用 CdTe QDs 作为目标敏感染料和血卟啉作为参比染料,采用一锅合成法,因为它可以简化印迹过程并缩短实验周期。所制备的荧光 MIP 传感器将比率荧光技术与介孔硅材料结合到一个系统中,表现出优异的选择性和灵敏度。在最佳条件下,这些介孔结构比率荧光 MIP@QDs 传感器的检测限低至 38 nM,远低于非介孔结构的传感器。回收过程可持续至少 10 次,而效率没有明显下降。通过对生奶和奶粉样品中三聚氰胺的分析,成功评估了该方法在实际样品中的可行性,回收率为 92-101%。本工作提出的方法被证明是一种方便、快速、可靠和实用的方法,可制备高灵敏度和选择性的荧光传感器,有望应用于复杂样品中痕量污染物的分析。

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