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一种基于分子信标适体的简单快速的“信号开启”型汞(II)荧光传感器。

A Simple and Rapid "Signal On" Fluorescent Sensor for Detecting Mercury (II) Based on the Molecular Beacon Aptamer.

作者信息

Wang Li, Chi En-Zhong, Zhao Xin-Huai, Zhang Qiang

机构信息

School of Biology and Food Engineering, Guangdong University of Petrochemical Technology, Maoming 525000, China.

Engineering Research Center for Food Safety and Nutritional Evaluation, Maoming 525000, China.

出版信息

Foods. 2022 Jun 23;11(13):1847. doi: 10.3390/foods11131847.

Abstract

Biosensors for mercury (II) (Hg) with high sensitivity are urgently required for food safety, ecosystem protection and disease prevention. In this study, a simple and fast detection method of Hg based on the molecular beacon aptamer was established, according to the principle that Hg could change the structure of the molecular beacon aptamer, resulting in the changed fluorescence intensity. All of the detection conditions were optimized. It was found that an optimal molecular beacon aptamer MB3 showed the optimal response signal in the optimized reaction environment, which was 0.08 μmol/L MB3, 50 mmol/L tris buffer (40 mmol/L NaCl, 10 mmol/L MgCl, pH 8.1), and a 10 min reaction. Under the optimal detection conditions, the molecular beacon aptamer sensor showed a linear response to Hg concentration within a range from 0.4 to 10 μmol/L and with a detection limit of 0.2254 μmol/L and a precision of 4.9%. The recovery rates of Hg in water samples ranged from 95.00% to 99.25%. The method was convenient and rapid, which could realize the rapid detection of mercury ions in water samples.

摘要

为保障食品安全、保护生态系统和预防疾病,迫切需要高灵敏度的汞(II)(Hg)生物传感器。本研究基于分子信标适体建立了一种简单快速的Hg检测方法,其原理是Hg可改变分子信标适体的结构,从而导致荧光强度改变。对所有检测条件进行了优化。结果发现,优化后的反应环境中,最佳分子信标适体MB3显示出最佳响应信号,即0.08 μmol/L的MB3、50 mmol/L的三羟甲基氨基甲烷缓冲液(40 mmol/L NaCl、10 mmol/L MgCl,pH 8.1)以及10分钟的反应时间。在最佳检测条件下,分子信标适体传感器对Hg浓度在0.4至10 μmol/L范围内呈线性响应,检测限为0.2254 μmol/L,精密度为4.9%。水样中Hg的回收率在95.00%至99.25%之间。该方法简便快速,可实现水样中汞离子的快速检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2854/9266287/1d4489c5b0f0/foods-11-01847-g001.jpg

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