» Articles » PMID: 26000462

Ultrasensitive Detection of Uranyl by Graphene Oxide-based Background Reduction and RCDzyme-based Enzyme Strand Recycling Signal Amplification

Overview
Date 2015 May 23
PMID 26000462
Citations 4
Authors
Affiliations
Soon will be listed here.
Abstract

We proposed a novel strategy which combines graphene oxide-based background reduction with RCDzyme-based enzyme strand recycling amplification for ultrahigh sensitive detection of uranyl. The RCDzyme is designed to contain a guanine (G)-rich sequence that replaces the partial sequence in an uranyl-specific DNAzyme. This multifunctional probe can act as the target recognition element, DNAzyme and the primer of signal amplification. The presence of UO2(2+) can induce the cleavage of the substrate strands in RCDzyme. Then, each released enzyme strand can hybridize with another substrate strands to trigger many cycles of the cleavage by binding uranyl, leading to the formation of more G-quadruplexes by split guanine-rich oligonucleotide fragments. The resulting G-quadruplexes could bind to N-methyl-mesoporphyrin IX (NMM), causing an amplified detection signal for the target uranyl. Next, graphene oxide-based background reduction strategy was further employed for adsorbing free ssDNA and NMM, thereby providing a proximalis zero-background signal. The combination of RCDzyme signal amplification and proximalis zero-background signal remarkably improves the sensitivity of this method, achieving a dynamic range of two orders of magnitude and giving a detection limit down to 86 pM, which is much lower than those of related literature reports. These achievements might be helpful in the design of highly sensitive analytical platform for wide applications in environmental and biomedical fields.

Citing Articles

A Novel Cu Quantitative Detection Nucleic Acid Biosensors Based on DNAzyme and "Blocker" Beacon.

Zhang H, Dong K, Xiang S, Lin Y, Cha X, Shang Y Foods. 2023; 12(7).

PMID: 37048325 PMC: 10094606. DOI: 10.3390/foods12071504.


Single-tube isothermal label-free fluorescent sensor for pathogen detection based on genetic signatures.

Reed M, Gerasimova Y Front Chem. 2022; 10:951279.

PMID: 36118306 PMC: 9475119. DOI: 10.3389/fchem.2022.951279.


Recent Advances on DNAzyme-Based Biosensors for Detection of Uranyl.

Bai Y, Xu L, Chai H, Zhou L, Jiang G, Zhang G Front Chem. 2022; 10:882250.

PMID: 35572119 PMC: 9091443. DOI: 10.3389/fchem.2022.882250.


Three-way DNA junction based platform for ultra-sensitive fluorometric detection of multiple metal ions as exemplified for Cu(II), Mg(II) and Pb(II).

Yun W, Du X, Liao J, Sang G, Chen L, Li N Mikrochim Acta. 2018; 185(6):306.

PMID: 29779060 DOI: 10.1007/s00604-018-2836-0.