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用于痕量己烯雌酚检测的印迹结晶胶体阵列化学传感材料。

An imprinted crystalline colloidal array chemical-sensing material for detection of trace diethylstilbestrol.

机构信息

Department of Nutrition and Food Hygiene, School of Public Health, Tianjin Medical University, Tianjin 300070, PR China.

出版信息

Analyst. 2013 May 7;138(9):2720-8. doi: 10.1039/c3an36829g.

Abstract

Based on a combination of the molecular imprinting technique and polymerized crystalline colloidal array, we have developed an imprinted crystalline colloidal array (ICCA) chemical-sensing material for the real-time and label-free detection of diethylstilbestrol (DES) in aqueous solution. This novel sensing material was prepared by a noncovalent and self-assembly approach using liquid monodispersed DES-imprinted colloidal spheres and was characterized by a three-dimensional (3D) ordered opal structure in which numerous nanocavities were derived from DES imprinting. Thus, the inherent high affinity of the nanocavities allowed ICCA to recognize DES with high specificity, and changes of the ordered periodic structure enabled ICCA to transfer the recognition events into readable optical signals (label-free). Owing to the special opal structure and without interference from the bulk hydrogel film, the ICCA enabled the rapid and sensitive detection of the target analyte. The understanding of the recognizing response has also been advanced by using molecular modeling software to compute rational interaction between the template molecules and the function monomers. After careful optimization of the assay conditions, the ICCA could decrease its diffraction intensity within just 7 min according to the DES concentration from 2 ng mL(-1) to 8.192 μg mL(-1), whereas there were no obvious diffraction intensity changes for the DES analogues. The adsorption results showed that the homogenous structure and large surface area of ICCA could improve its adsorption capacity. Therefore, such a sensing material with high selectivity, high sensitivity, high stability, and easy operation might offer an attractive alternative for establishing optical sensors for the rapid real-time monitoring of different residues in food and the environment.

摘要

基于分子印迹技术和聚合胶体晶体阵列,我们开发了一种印迹胶体晶体阵列(ICCA)化学传感材料,用于实时、无标记检测水溶液中的己烯雌酚(DES)。这种新型传感材料是通过使用液体单分散 DES 印迹胶体球的非共价和自组装方法制备的,具有三维(3D)有序蛋白石结构,其中许多纳米腔源自 DES 印迹。因此,纳米腔的固有高亲和力允许 ICCA 对 DES 具有高特异性的识别,并且有序周期性结构的变化使 ICCA 能够将识别事件转化为可读的光学信号(无标记)。由于特殊的蛋白石结构和没有来自体凝胶膜的干扰,ICCA 能够实现对目标分析物的快速和敏感检测。通过使用分子建模软件计算模板分子和功能单体之间的合理相互作用,也对识别响应进行了深入了解。在仔细优化了测定条件后,ICCA 可以在 7 分钟内根据 DES 浓度从 2ng/mL 到 8.192μg/mL 降低其衍射强度,而对于 DES 类似物则没有明显的衍射强度变化。吸附结果表明,ICCA 的均匀结构和大表面积可以提高其吸附能力。因此,这种具有高选择性、高灵敏度、高稳定性和易于操作的传感材料可能为建立光学传感器提供有吸引力的替代方案,用于快速实时监测食品和环境中的不同残留。

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