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Voltammetric Detection of Damage to DNA by Arsenic Compounds at a DNA Biosensor

DNA biosensor can serve as a powerfull tool for simple in vitro tests of chemical toxicity. In this paper, damage to DNA attached to the surface of screen-printed carbon electrode by arsenic compounds in solution is described. Using the Co(III) complex with 1,10-phenanthroline, [Co(phen)(3)](3+), as...

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Autores principales: Labuda, J., Bubnicova, K., Kovalova, L., Vanickova, M., Mattusch, J., Wennrich, R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Diversity Preservation International (MDPI) 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3933883/
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author Labuda, J.
Bubnicova, K.
Kovalova, L.
Vanickova, M.
Mattusch, J.
Wennrich, R.
author_facet Labuda, J.
Bubnicova, K.
Kovalova, L.
Vanickova, M.
Mattusch, J.
Wennrich, R.
author_sort Labuda, J.
collection PubMed
description DNA biosensor can serve as a powerfull tool for simple in vitro tests of chemical toxicity. In this paper, damage to DNA attached to the surface of screen-printed carbon electrode by arsenic compounds in solution is described. Using the Co(III) complex with 1,10-phenanthroline, [Co(phen)(3)](3+), as an electrochemical DNA marker and the Ru(II) complex with bipyridyne, [Ru(bipy)(3)](2+), as a DNA oxidation catalyst, the portion of original dsDNA which survives an incubation of the biosensor in the cleavage medium was evaluated. The model cleavage mixture was composed of an arsenic compound at 10(-3) mol/L concentration corresponding to real contaminated water, 2×10(-4) mol/L Fe(II) or Cu(II) ions as the redox catalyst, and 1.5×10(-2) mol/L hydrogen peroxide. DNA damage by arsenite, dimethylarsinic acid as the metabolic product of inorganic arsenic and widely used herbicide, as well as phenylarsonic acid and p-arsanilic acid as the representatives of feed additives was found in difference to arsenate.
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spelling pubmed-39338832014-02-25 Voltammetric Detection of Damage to DNA by Arsenic Compounds at a DNA Biosensor Labuda, J. Bubnicova, K. Kovalova, L. Vanickova, M. Mattusch, J. Wennrich, R. Sensors (Basel) Article DNA biosensor can serve as a powerfull tool for simple in vitro tests of chemical toxicity. In this paper, damage to DNA attached to the surface of screen-printed carbon electrode by arsenic compounds in solution is described. Using the Co(III) complex with 1,10-phenanthroline, [Co(phen)(3)](3+), as an electrochemical DNA marker and the Ru(II) complex with bipyridyne, [Ru(bipy)(3)](2+), as a DNA oxidation catalyst, the portion of original dsDNA which survives an incubation of the biosensor in the cleavage medium was evaluated. The model cleavage mixture was composed of an arsenic compound at 10(-3) mol/L concentration corresponding to real contaminated water, 2×10(-4) mol/L Fe(II) or Cu(II) ions as the redox catalyst, and 1.5×10(-2) mol/L hydrogen peroxide. DNA damage by arsenite, dimethylarsinic acid as the metabolic product of inorganic arsenic and widely used herbicide, as well as phenylarsonic acid and p-arsanilic acid as the representatives of feed additives was found in difference to arsenate. Molecular Diversity Preservation International (MDPI) 2005-11-14 /pmc/articles/PMC3933883/ Text en © 2005 by MDPI (http://www.mdpi.org). Reproduction is permitted for noncommercial purposes.
spellingShingle Article
Labuda, J.
Bubnicova, K.
Kovalova, L.
Vanickova, M.
Mattusch, J.
Wennrich, R.
Voltammetric Detection of Damage to DNA by Arsenic Compounds at a DNA Biosensor
title Voltammetric Detection of Damage to DNA by Arsenic Compounds at a DNA Biosensor
title_full Voltammetric Detection of Damage to DNA by Arsenic Compounds at a DNA Biosensor
title_fullStr Voltammetric Detection of Damage to DNA by Arsenic Compounds at a DNA Biosensor
title_full_unstemmed Voltammetric Detection of Damage to DNA by Arsenic Compounds at a DNA Biosensor
title_short Voltammetric Detection of Damage to DNA by Arsenic Compounds at a DNA Biosensor
title_sort voltammetric detection of damage to dna by arsenic compounds at a dna biosensor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3933883/
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