Catalytic hairpin assembly-based electrochemical biosensor with tandem signal amplification for sensitive microRNA assay. 2020

Lin Cui, and Jinghua Zhou, and Xiao-Yun Yang, and Jing Dong, and Xiaolei Wang, and Chun-Yang Zhang
College of Chemistry, Chemical Engineering and Materials Science, Collaborative Innovation Center of Functionalized Probes for Chemical Imaging in Universities of Shandong, Key Laboratory of Molecular and Nano Probes, Ministry of Education, Shandong Provincial Key Laboratory of Clean Production of Fine Chemicals, Shandong Normal University, Jinan 250014, China. cyzhang@sdnu.edu.cn wangxl@sdnu.edu.cn.

We demonstrate for the first time the construction of a low background electrochemical biosensor with tandem signal amplification for sensitive microRNA assay based on target-activated catalytic hairpin assembly (CHA) of heteroduplex-templated copper nanoparticles. This electrochemical biosensor exhibits high sensitivity, good specificity, single-base mismatch discrimination capability, excellent stability and reproducibility, and it can sensitively detect microRNA in cancer cells.

UI MeSH Term Description Entries
D004563 Electrochemistry The study of chemical changes resulting from electrical action and electrical activity resulting from chemical changes. Electrochemistries
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D015374 Biosensing Techniques Any of a variety of procedures which use biomolecular probes to measure the presence or concentration of biological molecules, biological structures, microorganisms, etc., by translating a biochemical interaction at the probe surface into a quantifiable physical signal. Bioprobes,Biosensors,Electrodes, Enzyme,Biosensing Technics,Bioprobe,Biosensing Technic,Biosensing Technique,Biosensor,Electrode, Enzyme,Enzyme Electrode,Enzyme Electrodes,Technic, Biosensing,Technics, Biosensing,Technique, Biosensing,Techniques, Biosensing
D045744 Cell Line, Tumor A cell line derived from cultured tumor cells. Tumor Cell Line,Cell Lines, Tumor,Line, Tumor Cell,Lines, Tumor Cell,Tumor Cell Lines
D055029 Inverted Repeat Sequences Copies of nucleic acid sequence that are arranged in opposing orientation. They may lie adjacent to each other (tandem) or be separated by some sequence that is not part of the repeat (hyphenated). They may be true palindromic repeats, i.e. read the same backwards as forward, or complementary which reads as the base complement in the opposite orientation. Complementary inverted repeats have the potential to form hairpin loop or stem-loop structures which results in cruciform structures (such as CRUCIFORM DNA) when the complementary inverted repeats occur in double stranded regions. Hairpin Loop Sequence,Inverted Repeat Sequence,Inverted Tandem Repeats,Palindromic Repeat Sequences,Sequence Palindromes,Stem-Loop Sequence,Hairpin Loop Sequences,Inverted Tandem Repeat,Palindrome, Sequence,Palindromes, Sequence,Palindromic Repeat Sequence,Repeat Sequence, Inverted,Repeat Sequence, Palindromic,Repeat Sequences, Inverted,Repeat Sequences, Palindromic,Repeat, Inverted Tandem,Repeats, Inverted Tandem,Sequence Palindrome,Sequence, Hairpin Loop,Sequence, Inverted Repeat,Sequence, Palindromic Repeat,Sequence, Stem-Loop,Sequences, Hairpin Loop,Sequences, Inverted Repeat,Sequences, Palindromic Repeat,Sequences, Stem-Loop,Stem Loop Sequence,Stem-Loop Sequences,Tandem Repeat, Inverted,Tandem Repeats, Inverted
D055162 Biocatalysis The facilitation of biochemical reactions with the aid of naturally occurring catalysts such as ENZYMES.
D057230 Limit of Detection Concentration or quantity that is derived from the smallest measure that can be detected with reasonable certainty for a given analytical procedure. Limits of Detection,Detection Limit,Detection Limits
D020137 Base Pair Mismatch The presence of an uncomplimentary base in double-stranded DNA caused by spontaneous deamination of cytosine or adenine, mismatching during homologous recombination, or errors in DNA replication. Multiple, sequential base pair mismatches lead to formation of heteroduplex DNA; (NUCLEIC ACID HETERODUPLEXES). Base Pair Mismatches,Mismatch, Base Pair,Mismatches, Base Pair
D035683 MicroRNAs Small double-stranded, non-protein coding RNAs, 21-25 nucleotides in length generated from single-stranded microRNA gene transcripts by the same RIBONUCLEASE III, Dicer, that produces small interfering RNAs (RNA, SMALL INTERFERING). They become part of the RNA-INDUCED SILENCING COMPLEX and repress the translation (TRANSLATION, GENETIC) of target RNA by binding to homologous 3'UTR region as an imperfect match. The small temporal RNAs (stRNAs), let-7 and lin-4, from C. elegans, are the first 2 miRNAs discovered, and are from a class of miRNAs involved in developmental timing. RNA, Small Temporal,Small Temporal RNA,miRNA,stRNA,Micro RNA,MicroRNA,Primary MicroRNA,Primary miRNA,miRNAs,pre-miRNA,pri-miRNA,MicroRNA, Primary,RNA, Micro,Temporal RNA, Small,miRNA, Primary,pre miRNA,pri miRNA

Related Publications

Lin Cui, and Jinghua Zhou, and Xiao-Yun Yang, and Jing Dong, and Xiaolei Wang, and Chun-Yang Zhang
January 2017, The Analyst,
Lin Cui, and Jinghua Zhou, and Xiao-Yun Yang, and Jing Dong, and Xiaolei Wang, and Chun-Yang Zhang
May 2018, The Analyst,
Lin Cui, and Jinghua Zhou, and Xiao-Yun Yang, and Jing Dong, and Xiaolei Wang, and Chun-Yang Zhang
June 2015, Biosensors & bioelectronics,
Lin Cui, and Jinghua Zhou, and Xiao-Yun Yang, and Jing Dong, and Xiaolei Wang, and Chun-Yang Zhang
July 2021, Biosensors & bioelectronics,
Lin Cui, and Jinghua Zhou, and Xiao-Yun Yang, and Jing Dong, and Xiaolei Wang, and Chun-Yang Zhang
December 2021, Talanta,
Lin Cui, and Jinghua Zhou, and Xiao-Yun Yang, and Jing Dong, and Xiaolei Wang, and Chun-Yang Zhang
August 2017, Biosensors & bioelectronics,
Lin Cui, and Jinghua Zhou, and Xiao-Yun Yang, and Jing Dong, and Xiaolei Wang, and Chun-Yang Zhang
March 2021, Talanta,
Lin Cui, and Jinghua Zhou, and Xiao-Yun Yang, and Jing Dong, and Xiaolei Wang, and Chun-Yang Zhang
April 2018, Analytica chimica acta,
Lin Cui, and Jinghua Zhou, and Xiao-Yun Yang, and Jing Dong, and Xiaolei Wang, and Chun-Yang Zhang
January 2018, Theranostics,
Lin Cui, and Jinghua Zhou, and Xiao-Yun Yang, and Jing Dong, and Xiaolei Wang, and Chun-Yang Zhang
May 2021, Analytica chimica acta,
Copied contents to your clipboard!