| Literature DB >> 25263248 |
Fatima Haddache1, Alan Le Goff, Bertrand Reuillard, Karine Gorgy, Chantal Gondran, Nicolas Spinelli, Eric Defrancq, Serge Cosnier.
Abstract
The design of photoactive functionalized electrodes for the sensitive transduction of double-stranded DNA hybridization is reported. Multifunctional complex [Ru(bpy-pyrrole)2 (dppn)](2+) (bpy-pyrrole=4-methyl-4'-butylpyrrole-2,2'-bipyridine, dppn=benzo[i]dipyrido[3,2-a:2',3'-c]phenazine) exhibiting photosensitive, DNA-intercalating, and electropolymerizable properties was synthesized and characterized. The pyrrole groups undergo oxidative electropolymerization on planar electrodes forming a metallopolymer layer on the electrode. Thanks to the photoelectrochemical and intercalating properties of the immobilized Ru(II) complex, the binding of a double-stranded HIV DNA target was photoelectrochemically detected on planar electrodes. Photocurrent generation through visible irradiation was correlated to the interaction between double-stranded DNA and the metallointercalator polymer. These interactions were well fitted by using a Langmuir isotherm, which allowed a dissociation constant of 2×10(6) L mol(-1) to be estimated. The low detection limit of 1 fmol L(-1) and sensitivity of 0.01 units per decade demonstrate excellent suitability of these modified electrodes for detection of duplex DNA.Entities:
Keywords: DNA; biosensors; electropolymerization; intercalation; ruthenium
Mesh:
Substances:
Year: 2014 PMID: 25263248 DOI: 10.1002/chem.201404335
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236