Key Laboratory of Modern Precision Agriculture System Integration Research, Ministry of Education and Key Laboratory of Agricultural Information Acquisition Technology, Ministry of Agriculture , China Agricultural University , Beijing 100083 , P.R. China.
Xi'an Jiaotong University , School of Electronic and Information Engineering , Xi'an 710049 , P.R. China.
ACS Sens. 2018 Mar 23;3(3):624-631. doi: 10.1021/acssensors.7b00892. Epub 2018 Mar 6.
Mercury (Hg) and its compounds, originating from a variety of natural and anthropogenic sources, are ubiquitous in the natural environment, and cause severe environmental contamination and pose irreversible harm to human health. A fast and accurate sensing approach is of significant importance for mercury detection. Here, a label-free biosensor using Hg(II)-induced cleavage of phosphorothioate (PS) modified RNA was exploited. We designed a specific single-stranded DNA embedded with four PS-modified RNA (Hg-DPR) to improve the cleavage reaction yield, and then Hg-DPR was covalently linked with single-walled carbon nanotube field effect transistor (SWNTs/FET) via a peptide bond. The Hg-DPR can be efficiently cleaved after exposure to Hg(II), which further causes the conductivity of the SWNTs to change. Using the relative resistance change, the Hg-DPR/SWNTs/FET successfully detected Hg(II) levels as low as 10 pM, and the calibration curves were linear in the range of 50 pM to 100 nM and 100 nM to 10 μM. Additionally, Hg-DPR/SWNTs/FET exhibited excellent sensitivity, portability, and low-cost for Hg(II) detection.
汞(Hg)及其化合物来自各种自然和人为来源,在自然环境中无处不在,造成严重的环境污染,并对人类健康造成不可逆转的危害。快速准确的传感方法对于汞检测至关重要。在这里,我们利用 Hg(II)诱导的硫代磷酸酯 (PS) 修饰 RNA 切割开发了一种无标记的生物传感器。我们设计了一种带有四个 PS 修饰 RNA(Hg-DPR)的特定单链 DNA,以提高切割反应产率,然后通过肽键将 Hg-DPR 与单壁碳纳米管场效应晶体管 (SWNTs/FET) 共价连接。暴露于 Hg(II)后,Hg-DPR 可以被有效切割,这进一步导致 SWNTs 的电导率发生变化。使用相对电阻变化,Hg-DPR/SWNTs/FET 成功检测到低至 10 pM 的 Hg(II)水平,校准曲线在 50 pM 至 100 nM 和 100 nM 至 10 μM 的范围内呈线性。此外,Hg-DPR/SWNTs/FET 表现出优异的灵敏度、便携性和低成本的 Hg(II)检测。