Literature DB >> 18692385

Highly sensitive sensor for picomolar detection of insulin at physiological pH, using GC electrode modified with guanine and electrodeposited nickel oxide nanoparticles.

Abdollah Salimi1, Abdollah Noorbakhash, Ensieh Sharifi, Abolfazl Semnani.   

Abstract

The electrochemical behavior of insulin at glassy carbon (GC) electrode modified with nickel oxide nanoparticles and guanine was investigated. Cyclic voltammetry technique has been used for electrodeposition of nickel oxide nanoparticles (NiOx) and immobilization of guanine on the surface GC electrode. In comparison to glassy carbon electrode modified with nickel oxide nanoparticles and bare GC electrode modified with adsorbed guanine, the guanine/nickel oxide nanoparticles/modified GC electrode exhibited excellent catalytic activity for the oxidation of insulin in physiological pH solutions at reduced overpotential. The modified electrode was applied for insulin detection using cyclic voltammetry or hydrodynamic amperometry techniques. It was found that the calibration curve was linear up to 4muM with a detection limit of 22pM and sensitivity of 100.9pA/pM under the optimized condition for hydrodynamic amperometry using a rotating disk modified electrode. In comparison to other electrochemical insulin sensors, this sensor shows many advantages such as simple preparation method without using any special electron transfer mediator or specific reagent, high sensitivity, excellent catalytic activity at physiological pH values, short response time, long-term stability and remarkable antifouling property toward insulin and its oxidation product. Additionally, it is promising for the monitoring of insulin in chromatographic effluents.

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Year:  2008        PMID: 18692385     DOI: 10.1016/j.bios.2008.06.046

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


  3 in total

1.  Optical nanosensor architecture for cell-signaling molecules using DNA aptamer-coated carbon nanotubes.

Authors:  Tae-Gon Cha; Benjamin A Baker; M Dane Sauffer; Janette Salgado; David Jaroch; Jenna L Rickus; D Marshall Porterfield; Jong Hyun Choi
Journal:  ACS Nano       Date:  2011-05-06       Impact factor: 15.881

2.  Reduced Graphene Oxide Modified the Interdigitated Chain Electrode for an Insulin Sensor.

Authors:  Ajay Kumar Yagati; Jinsoo Park; Sungbo Cho
Journal:  Sensors (Basel)       Date:  2016-01-15       Impact factor: 3.576

3.  Understanding the decay of proteins: A method to study time dependent response of pM concentration of insulin at microwave frequencies.

Authors:  Ritika Verma; K S Daya
Journal:  MethodsX       Date:  2016-12-15
  3 in total

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