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一种基于核糖开关调控转录与CRISPR-Cas13a串联反应的高灵敏度和选择性氟化物传感器。

A highly sensitive and selective fluoride sensor based on a riboswitch-regulated transcription coupled with CRISPR-Cas13a tandem reaction.

作者信息

Ma Yuan, Mou Quanbing, Yan Peng, Yang Zhenglin, Xiong Ying, Yan Deyue, Zhang Chuan, Zhu Xinyuan, Lu Yi

机构信息

Department of Chemistry, University of Illinois at Urbana-Champaign Urbana Illinois 61801 USA

School of Chemistry and Chemical Engineering, Frontiers Science Center for Transformative Molecules, Shanghai Jiao Tong University 800 Dongchuan Road Shanghai 200240 China

出版信息

Chem Sci. 2021 Aug 9;12(35):11740-11747. doi: 10.1039/d1sc03508h. eCollection 2021 Sep 15.

Abstract

Nucleic acid sensors have realized much success in detecting positively charged and neutral molecules, but have rarely been applied for measuring negatively charged molecules, such as fluoride, even though an effective sensor is needed to promote dental health while preventing osteofluorosis and other diseases. To address this issue, we herein report a quantitative fluoride sensor with a portable fluorometer readout based on fluoride riboswitch-regulated transcription coupled with CRISPR-Cas13-based signal amplification. This tandem sensor utilizes the fluoride riboswitch to regulate transcription and generate full-length transcribed RNA that can be recognized by CRISPR-Cas13a, triggering the collateral cleavage of the fluorophore-quencher labeled RNA probe and generating a fluorescence signal output. This tandem sensor can quantitatively detect fluoride at ambient temperature in aqueous solution with high sensitivity (limit of detection (LOD) ≈ 1.7 μM), high selectivity against other common anions, a wide dynamic range (0-800 μM) and a short sample-to-answer time (30 min). This work expands the application of nucleic acid sensors to negatively charged targets and demonstrates their potential for the on-site and real-time detection of fluoride in environmental monitoring and point-of-care diagnostics.

摘要

核酸传感器在检测带正电荷和中性分子方面已取得很大成功,但很少用于测量带负电荷的分子,如氟化物,尽管需要一种有效的传感器来促进牙齿健康,同时预防氟骨症和其他疾病。为了解决这个问题,我们在此报告一种基于氟化物核糖开关调节转录并结合基于CRISPR-Cas13的信号放大的便携式荧光计读数的定量氟化物传感器。这种串联传感器利用氟化物核糖开关来调节转录并生成可被CRISPR-Cas13a识别的全长转录RNA,触发荧光团-淬灭剂标记的RNA探针的旁切并产生荧光信号输出。这种串联传感器可以在水溶液中的环境温度下以高灵敏度(检测限(LOD)≈1.7μM)、对其他常见阴离子的高选择性、宽动态范围(0-800μM)和短的样品到答案时间(30分钟)定量检测氟化物。这项工作将核酸传感器的应用扩展到带负电荷的目标,并证明了它们在环境监测和即时诊断中现场实时检测氟化物的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a30/8442723/82bd4e90323e/d1sc03508h-s1.jpg

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