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一种使用磁性Fe3O4纳米颗粒和杂交链式反应对Hg(2+)进行检测的简便、高灵敏度“开启”荧光方法。

A facile "turn-on" fluorescent method with high sensitivity for Hg(2+) detection using magnetic Fe3O4 nanoparticles and hybridization chain reactions.

作者信息

Lv Xiaoxiao, Wu Wenchen, Niu Chenggang, Huang Dawei, Wang Xiaoyu, Zhang Xuegang

机构信息

College of Environmental Science and Engineering, Key Laboratory of Environmental Biology and Pollution Control, Ministry of Education, Hunan University, Changsha 410082, China.

Department of Orthopaedics, Heji Hospital, Changzhi Medical College, Shanxi 046000, China.

出版信息

Talanta. 2016 May 1;151:62-67. doi: 10.1016/j.talanta.2016.01.025. Epub 2016 Jan 13.

Abstract

In this manuscript, the authors molecularly engineered a hybridization chain reactions (HCRs) based probe on magnetic Fe3O4 nanoparticles for the sensitive detection of Hg(2+). The sensing system comprised three probes: capture probe H1, report probe H2, and report probe H3. The capture probe was modified on the surface of magnetic Fe3O4 nanoparticles. The report probes were labeled with fluorescein isothiocyanate (FITC). Without Hg(2+), the report probes were stable as molecular beacons in solution. In the presence of Hg(2+), the T-rich capture probes and report probes will hybridize into double-helical DNA domains with the aid of T-Hg(2+)-T coordination chemistry. Trigged by this reaction, more molecular beacons open and form a super tandem structure. Herein, the fluorescence signal was magnified by capturing more report probes. Separating the target and captured report probes from reaction solution was benefit to decrease the background signal and interference from other metal ions. The detection limit of this method was about 0.36nM, which is much lower than the regulations of World Health Organization and U.S. Environmental Protection Agency on Hg(2+) in drink water. This proposed sensing strategy also showed favorable selectivity over other common metal ions. In addition, it has good practicability in real water samples.

摘要

在本论文中,作者在磁性Fe3O4纳米颗粒上对基于杂交链式反应(HCRs)的探针进行了分子工程改造,用于灵敏检测Hg(2+)。传感系统包含三种探针:捕获探针H1、报告探针H2和报告探针H3。捕获探针修饰在磁性Fe3O4纳米颗粒表面。报告探针用异硫氰酸荧光素(FITC)标记。在没有Hg(2+)的情况下,报告探针在溶液中作为分子信标是稳定的。在有Hg(2+)存在时,富含T的捕获探针和报告探针将借助T-Hg(2+)-T配位化学杂交形成双螺旋DNA结构域。受此反应触发,更多分子信标打开并形成超串联结构。在此,通过捕获更多报告探针使荧光信号放大。将目标物与捕获的报告探针从反应溶液中分离,有利于降低背景信号以及其他金属离子的干扰。该方法的检测限约为0.36 nM,远低于世界卫生组织和美国环境保护局对饮用水中Hg(2+)的规定。所提出的传感策略对其他常见金属离子也显示出良好的选择性。此外,它在实际水样中具有良好的实用性。

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