Literature DB >> 15530799

Sensors for toxicity of chemicals and oxidative stress based on electrochemical catalytic DNA oxidation.

James F Rusling1.   

Abstract

Films of DNA, enzymes, polyions, and catalytic redox polyions of nanometer thickness on electrodes can provide active elements for sensors for screening the toxicity of chemicals and their metabolites, and for oxidative stress. The unifying feature of this approach involves layer-by-layer electrostatic assembly of films designed to detect DNA damage. Films containing DNA and enzymes enable detection of structural damage to DNA as a basis for toxicity screening. These films bioactivate chemicals to their metabolites, which can then react with DNA, mimicking toxicity pathways in the human liver. Metallopolyions that catalyze DNA oxidation can be incorporated into DNA/enzyme films leading to "reagentless" sensors. These sensors are suitable for detecting relative DNA damage rates in <5 min of the enzyme reactions. Films of the osmium polymer [Os(bpy)(2)(PVP)(10)Cl](+) [poly(vinylpyridine), PVP] can be used to monitor DNA oxidation selectively. Such films may be applicable to determination of oxidized DNA as a clinical biomarker for oxidative stress. Inclusion of the analogous ruthenium metallopolymer in the sensor provides a monitor for oxidation of other nucleobases.

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Year:  2004        PMID: 15530799     DOI: 10.1016/j.bios.2004.06.033

Source DB:  PubMed          Journal:  Biosens Bioelectron        ISSN: 0956-5663            Impact factor:   10.618


  18 in total

1.  Protecting peroxidase activity of multilayer enzyme-polyion films using outer catalase layers.

Authors:  Haiyun Lu; James F Rusling; Naifei Hu
Journal:  J Phys Chem B       Date:  2007-12-05       Impact factor: 2.991

Review 2.  Biochemical applications of ultrathin films of enzymes, polyions and DNA.

Authors:  James F Rusling; Eli G Hvastkovs; Dominic O Hull; John B Schenkman
Journal:  Chem Commun (Camb)       Date:  2007-08-30       Impact factor: 6.222

3.  Electrochemiluminescent/voltammetric toxicity screening sensor using enzyme-generated DNA damage.

Authors:  Minjeong So; Eli G Hvastkovs; John B Schenkman; James F Rusling
Journal:  Biosens Bioelectron       Date:  2007-07-28       Impact factor: 10.618

4.  Electrochemical biosensor featuring a two-enzyme pathway and DNA for screening toxic reactive metabolites of arylamines.

Authors:  Minjeong So; John B Schenkman; James F Rusling
Journal:  Chem Commun (Camb)       Date:  2008-07-18       Impact factor: 6.222

5.  Electrochemiluminescence Arrays for Studies of Metabolite-related Toxicity.

Authors:  Kiran Bano; James F Rusling
Journal:  Electroanalysis       Date:  2016-06-01       Impact factor: 3.223

6.  High-throughput metabolic genotoxicity screening with a fluidic microwell chip and electrochemiluminescence.

Authors:  Dhanuka P Wasalathanthri; Spundana Malla; Itti Bist; Chi K Tang; Ronaldo C Faria; James F Rusling
Journal:  Lab Chip       Date:  2013-12-07       Impact factor: 6.799

7.  Electrocatalytic Oxidation of Alcohols, Tripropylamine, and DNA with Ligand-Free Gold Nanoclusters on Nitrided Carbon.

Authors:  Huiqin Yao; Ben Liu; Islam M Mosa; Itti Bist; Jie He; James F Rusling
Journal:  ChemElectroChem       Date:  2016-07-20       Impact factor: 4.590

8.  Microfluidic electrochemical array for detection of reactive metabolites formed by cytochrome P450 enzymes.

Authors:  Dhanuka P Wasalathanthri; Vigneshwaran Mani; Chi K Tang; James F Rusling
Journal:  Anal Chem       Date:  2011-11-15       Impact factor: 6.986

9.  Screening reactive metabolites bioactivated by multiple enzyme pathways using a multiplexed microfluidic system.

Authors:  Dhanuka P Wasalathanthri; Ronaldo C Faria; Spundana Malla; Amit A Joshi; John B Schenkman; James F Rusling
Journal:  Analyst       Date:  2012-10-25       Impact factor: 4.616

10.  Characterizing metabolic inhibition using electrochemical enzyme/DNA biosensors.

Authors:  Dominic O Hull; Besnik Bajrami; Ingela Jansson; John B Schenkman; James F Rusling
Journal:  Anal Chem       Date:  2009-01-15       Impact factor: 6.986

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