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Chronoamperometry-Based Redox Cycling for Application to Immunoassays
- Source :
- ACS Sensors. 3:106-112
- Publication Year :
- 2018
- Publisher :
- American Chemical Society (ACS), 2018.
-
Abstract
- In this work, the chronoamperometry-based redox cycling of 3,3',5,5'-tetramethylbenzidine (TMB) was performed by using interdigitated electrode (IDE). The signal was obtained from two sequential chronoamperometric profiles: (1) with the generator at the oxidative potential of TMB and the collector at the reductive potential of TMB, and (2) with the generator at the reductive potential of TMB and the collector at the oxidative potential of TMB. The chronoamperometry-based redox cycling (dual mode) showed a sensitivity of 1.49 μA/OD, and the redox cycling efficiency was estimated to be 94% (n = 10). The sensitivities of conventional redox cycling with the same interdigitated electrode and chronoamperometry using a single working electrode (single mode) were estimated to be 0.67 μA/OD and 0.18 μA/OD, respectively. These results showed that the chronoamperometry-based redox cycling (dual mode) could be more effectively used to quantify the oxidized TMB than other amperometric methods. The chronoamperometry-based redox cycling (dual mode) was applied to immunoassays using a commercial ELISA kit for medical diagnosis of the human hepatitis B virus surface antigen (hHBsAg). Finally, the chronoamperometry-based redox cycling (dual mode) provided more than a 10-fold higher sensitivity than conventional chronoamperometry using a single working electrode (single mode) when applied to a commercial ELISA kit for medical diagnosis of hHBsAg.
- Subjects :
- Working electrode
Inorganic chemistry
Bioengineering
02 engineering and technology
Sensitivity and Specificity
01 natural sciences
chemistry.chemical_compound
Elisa kit
Humans
Instrumentation
Immunoassay
Fluid Flow and Transfer Processes
Hepatitis B Surface Antigens
Benzidines
Process Chemistry and Technology
010401 analytical chemistry
Dual mode
3,3',5,5'-Tetramethylbenzidine
Chronoamperometry
021001 nanoscience & nanotechnology
Amperometry
0104 chemical sciences
chemistry
Interdigitated electrode
Reagent Kits, Diagnostic
0210 nano-technology
Microelectrodes
Oxidation-Reduction
Redox cycling
Subjects
Details
- ISSN :
- 23793694
- Volume :
- 3
- Database :
- OpenAIRE
- Journal :
- ACS Sensors
- Accession number :
- edsair.doi.dedup.....dfc88375429e8c5160b97649e92c3275