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Improved DET communication between cellobiose dehydrogenase and a gold electrode modified with a rigid self-assembled monolayer and green metal nanoparticles: The role of an ordered nanostructuration
- Source :
- Biosensors and Bioelectronics. 88:196-203
- Publication Year :
- 2017
- Publisher :
- Elsevier BV, 2017.
-
Abstract
- Efficient direct electron transfer (DET) between cellobiose dehydrogenase from Corynascus thermophilus (CtCDH) and a novel gold electrode platform, obtained by covalent linking of green AuNPs and AgNPs modified with a dithiol self-assembled monolayer, consisting of biphenyl-4,4'-dithiol (BPDT), was presented. The green AuNPs and AgNPs were synthesized using quercetin as reducing agent at room temperature. TEM experiments showed that the AuNPs and AgNPs were circular in shape with an average diameter of 5 and 8nm, respectively. Cyclic voltammetry of CtCDH immobilized onto the AuNPs/BPDT/AuE and the AgNPs/BPDT/AuE electrode platforms were carried out and compared with naked AuE, BPDT/AuE, AuNPs/AuE, and AgNPs/AuE. A pair of well-defined redox waves in neutral pH solution due to efficient DET of CtCDH was present with both MNPs/BPDT/AuE platforms. No DET communication was found with platforms without MNPs linked to BPDT. The apparent heterogeneous electron transfer rate constants (kS) of CtCDH were calculated to be 21.5±0.8s-1 and 10.3±0.7s-1, for the AuNPs/BPDT/AuE and the AgNPs/BPDT/AuE platforms, respectively. The modified electrodes were successively used to develop an eco-friendly biosensor for lactose detection. The CtCDH/AuNPs/BPDT/AuE based biosensor showed the best analytical performances with an excellent stability, a detection limit of 3µM, a linear range between 5 and 400µM and a sensitivity of 27.5±2.5µAcm-2mM-1. Such performances were favorably compared with other lactose biosensors reported in literature. The biosensor was successively tested to quantify lactose content in real milk and cream samples. No significant interference present in the sample matrices was observed.
- Subjects :
- Models, Molecular
Cellobiose dehydrogenase
Silver
Sordariales
Biomedical Engineering
Biophysics
Metal Nanoparticles
Lactose
Biosensing Techniques
02 engineering and technology
010402 general chemistry
01 natural sciences
Silver nanoparticle
Electron Transport
chemistry.chemical_compound
Limit of Detection
Monolayer
Electrochemistry
Animals
Organic chemistry
Electrodes
biphenyl-4,4′-dithiol
cellobiose dehydrogenase
direct electron transfer
gold nanoparticles
lactose
silver nanoparticles
biotechnology
biophysics
biomedical engineering
electrochemistry
Dithiol
Green Chemistry Technology
Self-assembled monolayer
General Medicine
Enzymes, Immobilized
021001 nanoscience & nanotechnology
0104 chemical sciences
Milk
chemistry
Colloidal gold
Carbohydrate Dehydrogenases
Gold
Cyclic voltammetry
0210 nano-technology
Biosensor
Food Analysis
Biotechnology
Nuclear chemistry
Subjects
Details
- ISSN :
- 09565663
- Volume :
- 88
- Database :
- OpenAIRE
- Journal :
- Biosensors and Bioelectronics
- Accession number :
- edsair.doi.dedup.....036e060ed6f7aa7b2ffad3ca05af48d6
- Full Text :
- https://doi.org/10.1016/j.bios.2016.08.027