BackgroundThe one-electron oxidation of guanine nucleobases is of interest for understanding the mechanisms of mutagenesis, probing electron-transfer reactions in DNA, and developing sensing schemes for nucleic acids. The electron-transfer rates for oxidation of guanine by exogenous redox catalysts depend on the base paired to the guanine. An important goal in developing the mismatch sensitivity is to identify a means for monitoring the current resulting from electron transfer at a single base in the presence of native oligonucleotides that contain all four bases.ResultsThe nucleobase 8-oxo-guanine (8G) is selectively oxidized by the redox catalyst Os(bpy)33+/2+ (bpy = 2,2′-bipyridine) in the presence of native guanine. Cyclic voltammograms...
Three aminoalkanethiols that have large electron-transfer rate constants, SH−(CH2)n−NH2 (n = 6, 8, a...
Background: Theoretical and experimental studies have demonstrated that 5′-GG-3′ sequences in DNA ar...
modified indium tin oxide electrode was prepared by simple electrostatic self-assembly technique, an...
BackgroundThe one-electron oxidation of guanine nucleobases is of interest for understanding the mec...
Stacking interactions play a major role in DNA oxidation, because they finely modulate the redox po...
A systematic investigation of the efficiency of oxidative damage at guanine residues through long-ra...
Electrochemical DNA-based sensors that exploit the inherent sensitivity of DNA-mediated charge trans...
Electrochemical oxidation of specifically designed DNA hexamers containing guanine has been studied ...
The effective energy of a positive charge when it is localized at a specific guanine nucleobase in D...
Oxidative DNA damage is a consequence of cellular metabolism, with a propensity for increased levels...
Electrochemical detection of DNA is an important field of research, with strong implications for nex...
Detection of mutations and damaged DNA bases is important for the early diagnosis of genetic disease...
Simultaneous determination of guanine and adenine contents in DNA, RNA and synthetic oligonucleotide...
Understanding the oxidation of the purines adenine and guanine is primary to improving electrochemic...
The integrity of DNA purine bases was herein used to evaluate the antioxidant capacity. Unlike other...
Three aminoalkanethiols that have large electron-transfer rate constants, SH−(CH2)n−NH2 (n = 6, 8, a...
Background: Theoretical and experimental studies have demonstrated that 5′-GG-3′ sequences in DNA ar...
modified indium tin oxide electrode was prepared by simple electrostatic self-assembly technique, an...
BackgroundThe one-electron oxidation of guanine nucleobases is of interest for understanding the mec...
Stacking interactions play a major role in DNA oxidation, because they finely modulate the redox po...
A systematic investigation of the efficiency of oxidative damage at guanine residues through long-ra...
Electrochemical DNA-based sensors that exploit the inherent sensitivity of DNA-mediated charge trans...
Electrochemical oxidation of specifically designed DNA hexamers containing guanine has been studied ...
The effective energy of a positive charge when it is localized at a specific guanine nucleobase in D...
Oxidative DNA damage is a consequence of cellular metabolism, with a propensity for increased levels...
Electrochemical detection of DNA is an important field of research, with strong implications for nex...
Detection of mutations and damaged DNA bases is important for the early diagnosis of genetic disease...
Simultaneous determination of guanine and adenine contents in DNA, RNA and synthetic oligonucleotide...
Understanding the oxidation of the purines adenine and guanine is primary to improving electrochemic...
The integrity of DNA purine bases was herein used to evaluate the antioxidant capacity. Unlike other...
Three aminoalkanethiols that have large electron-transfer rate constants, SH−(CH2)n−NH2 (n = 6, 8, a...
Background: Theoretical and experimental studies have demonstrated that 5′-GG-3′ sequences in DNA ar...
modified indium tin oxide electrode was prepared by simple electrostatic self-assembly technique, an...