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温度稳健型 DNA 酶生物传感器实现超低背景检测。

Temperature-Robust DNAzyme Biosensors Confirming Ultralow Background Detection.

机构信息

College of Light Industry, Textile and Food Engineering, Healthy Food Evaluation Research Center and Key Laboratory of Food Science and Technology of Ministry of Education of Sichuan Province , Sichuan University , Chengdu 610065 , China.

Department of Chemistry, Key Laboratory of Bioorganic Phosphorus Chemistry & Chemical Biology , Tsinghua University , Beijing 100084 , China.

出版信息

ACS Sens. 2018 Dec 28;3(12):2660-2666. doi: 10.1021/acssensors.8b01122. Epub 2018 Dec 3.

Abstract

Catalytic DNA/RNA, such as DNAzyme, has been widely adopted to construct biosensors, especially for metal ion analysis. However, traditional DNAzyme biosensors still suffer from fluctuating and relatively high background. Herein, we proposed a temperature-robust DNAzyme, conferring ultralow background in various temperatures, thus leading to highly sensitive and robust detection of metal ions. Instead of labeling substrate to directly output fluorescence signal, our proposed DNAzyme biosensor utilized a sequential detection process with a couple of proximity fluorescent probes, confirming very low background regardless of the conditions of cleavage reaction. This sequential DNAzyme biosensor conferred a signal to background ratio over 20 when the temperature of the catalytic reaction ranged from 20 to 41 °C. Benefitting from its ultralow background, it could confer a detection limit of 0.22 nM, which ranked as one of the highest sensitivity levels among DNAzyme-based fluorescent biosensors. This DNAzyme biosensor was over 6000 times more selective for Pb against the most active interfering metal ions, Zn. Further, it has been successfully applied for analyzing lead pollution in tap water and eggs, with total recoveries ranging from 87% to 114%. This facile, simple, and effective design strategy would significantly improve the detection performance of DNAzyme biosensors, thus facilitating its practical applications for both food safety analysis and environment monitoring.

摘要

催化型 DNA/RNA(如 DNA zyme)已被广泛应用于构建生物传感器,尤其是用于金属离子分析。然而,传统的 DNAzyme 生物传感器仍然存在背景波动较大和相对较高的问题。在此,我们提出了一种温度稳健的 DNAzyme,在各种温度下均具有超低背景,从而实现了对金属离子的高灵敏和稳健检测。与直接标记底物输出荧光信号的传统方法不同,我们提出的 DNAzyme 生物传感器采用了一系列带有邻近荧光探针的检测过程,无论切割反应条件如何,都能确保非常低的背景。当催化反应温度在 20 到 41°C 范围内时,该顺序 DNAzyme 生物传感器的信号与背景比超过 20。得益于超低的背景,该传感器对 Pb 的检测限低至 0.22 nM,在基于 DNAzyme 的荧光生物传感器中属于最高灵敏度水平之一。与最活跃的干扰金属离子 Zn 相比,该 DNAzyme 生物传感器对 Pb 的选择性高 6000 多倍。此外,它已成功应用于自来水和鸡蛋中铅污染的分析,总回收率在 87%到 114%之间。这种简便、简单、有效的设计策略将显著提高 DNAzyme 生物传感器的检测性能,从而促进其在食品安全分析和环境监测中的实际应用。

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