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用于高灵敏度快速筛选生物样品中阿托品的分子印迹光子水凝胶。

Molecularly imprinted photonic hydrogels for fast screening of atropine in biological samples with high sensitivity.

机构信息

College of Forensic Science, People's Public Security University of China, Beijing, PR China.

出版信息

Forensic Sci Int. 2013 Sep 10;231(1-3):6-12. doi: 10.1016/j.forsciint.2013.04.008. Epub 2013 May 7.

Abstract

Based on molecularly imprinted photonic hydrogels (MIPHs) that combined the colloidal-crystal with molecular imprinting technique, a novel label-free colorimetric chemosensor for convenient and fast efficient detection of atropine with high sensitivity and specificity was developed. Due to the special inverse opal arrays with a thin polymer wall in which the imprinted nanocavities of atropine moleculars distributed, the proposed MIPHs designed as water-compatible exhibited high sensitive (as low as 1 pg/mL), rapid responsive (less than 30 s) and specific detection of atropine in complex matrix. The unique three-dimensional, highly-ordered photonic hydrogels would be obviously swelling in response to the specific atropine molecular recognition process and the response would be directly transferred into visually perceptible optical signal (change in color) that could be detected by the naked eye through Bragg diffractive shifts of ordered macroporous arrays. With a broad concentration range varying from 1 pg/mL to 1 μg/mL of atropine, the distinct color changes of MIPHs almost covered the whole visible-light wavelength range from blue to red for semi-quantitative analysis. The smart chemosensor was successfully employed to determine the trace level atropine in human urine samples, providing a fast and effective alternative for semi-quantitative detection of atropine for clinical analysis and forensic investigations.

摘要

基于结合胶体晶体与分子印迹技术的分子印迹光子凝胶(MIPH),开发了一种新型的无标记比色化学传感器,可方便、快速、高效地检测莨菪碱,具有高灵敏度和特异性。由于具有特殊的反向蛋白石阵列和薄的聚合物壁,其中分布着莨菪碱分子的印迹纳米腔,所设计的水溶性拟 MIPH 表现出对复杂基质中莨菪碱的高灵敏性(低至 1 pg/mL)、快速响应(少于 30 秒)和特异性检测。独特的三维、高度有序的光子水凝胶在响应特定的莨菪碱分子识别过程时会明显膨胀,并且响应会直接转化为可通过肉眼通过有序大孔阵列的布拉格衍射转移的可视觉感知的光学信号(颜色变化)。对于浓度范围从 1 pg/mL 到 1 μg/mL 的莨菪碱,MIPH 的明显颜色变化几乎涵盖了从蓝色到红色的整个可见光波长范围,可用于半定量分析。该智能化学传感器已成功用于测定人尿样中的痕量莨菪碱,为临床分析和法医学调查中莨菪碱的半定量检测提供了一种快速有效的替代方法。

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