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Inkjet-Printing Enzyme Inhibitory Assay Based on Determination of Ejection Volume
- Source :
- Analytical chemistry. 89(3)
- Publication Year :
- 2016
-
Abstract
- An accurate, rapid, and cost-effective methodology for enzyme inhibitor assays is highly needed for large-scale screening to evaluate the efficacy of drugs at the molecular level. For the first time, we have developed an inkjet printing-based enzyme inhibition assay for the assessment of drug activity using a conventional inkjet printer composed of four cartridges. The methodology is based on the determination of the number of moles of the drug on the printed surface. The number of moles was quantified through the volume of substance ejected onto the printed surface. The volume ejected on the reaction spot was determined from the density of reagent ink solution and its weight loss after printing. A xanthine oxidase (XOD) inhibition assay was executed to quantitatively evaluate antioxidant activities of the drug based on the determination of the number of moles of the drug ejected by inkjet printing. The assay components of xanthine, nitro blue tetrazolium (NBT), superoxide dismutase (SOD)/drug, and XOD were printed systematically on A4 paper. A gradient range of the number of moles of SOD/drug printed on A4 paper could be successfully obtained. Because of the effect of enzyme activity inhibition, incrementally reduced NBT formazan colors appeared on the paper in a number-of-moles-dependent manner. The observed inhibitory mole (IM
- Subjects :
- Xanthine Oxidase
Antioxidant
Surface Properties
medicine.medical_treatment
Cost-Benefit Analysis
Color
02 engineering and technology
01 natural sciences
Xanthine
Antioxidants
Analytical Chemistry
Superoxide dismutase
chemistry.chemical_compound
Inhibitory Concentration 50
medicine
Enzyme Inhibitors
Xanthine oxidase
Chromatography
biology
Superoxide Dismutase
Nitroblue Tetrazolium
010401 analytical chemistry
021001 nanoscience & nanotechnology
0104 chemical sciences
Solutions
chemistry
Volume (thermodynamics)
Enzyme inhibitor
Reagent
Nitro
biology.protein
Printing
Ink
0210 nano-technology
Subjects
Details
- ISSN :
- 15206882
- Volume :
- 89
- Issue :
- 3
- Database :
- OpenAIRE
- Journal :
- Analytical chemistry
- Accession number :
- edsair.doi.dedup.....5dc491e8255bd871602c6dbdbda61758