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- W2476637870 endingPage "13" @default.
- W2476637870 startingPage "13" @default.
- W2476637870 abstract "Guanine-rich nucleic acids are able to self-assemble into G-quadruplex four-stranded secondary structures, which are found at the level of telomeric regions of chromosomes, oncogene promoter sequences and other biologically-relevant regions of the genome. Due to their extraordinary stiffness and biological role, G-quadruples become relevant in areas ranging from structural biology to medicinal chemistry, supra-molecular chemistry, nanotechnology and biosensor technology. In addition to classical methodologies, such as circular dichroism, nuclear magnetic resonance or crystallography, electrochemical methods have been successfully used for the rapid detection of the conformational changes from single-strand to G-quadruplex. This review presents recent advances on the G-quadruplex electrochemical characterization and on the design and applications of G-quadruplex electrochemical biosensors, with special emphasis on the G-quadruplex aptasensors and hemin/G-quadruplex peroxidase-mimicking DNAzyme biosensors." @default.
- W2476637870 created "2016-08-23" @default.
- W2476637870 creator A5004598317 @default.
- W2476637870 creator A5071394883 @default.
- W2476637870 date "2016-07-30" @default.
- W2476637870 modified "2023-10-17" @default.
- W2476637870 title "Guanine Quadruplex Electrochemical Aptasensors" @default.
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