Frequency and voltage-modulated electrochemical aflatoxin B1 immunosensor systems prepared on electroactive organic polymer platforms

Philosophiae Doctor - PhD === In the presented work, immunosensors for detection of Aflatoxin B1 based on different immobilization platforms were studied. Synthesis of an electroactive hydrogel was also carried out. Aflatoxins are a group of mycotoxins that have deleterious effects on humans and are...

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Main Author: Owino, Joseph Hasael Odero
Other Authors: Baker, P.G.L.
Language:en
Published: University of the Western Cape 2014
Subjects:
Online Access:http://hdl.handle.net/11394/2777
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spelling ndltd-netd.ac.za-oai-union.ndltd.org-uwc-oai-etd.uwc.ac.za-11394-27772018-08-16T15:59:44Z Frequency and voltage-modulated electrochemical aflatoxin B1 immunosensor systems prepared on electroactive organic polymer platforms Owino, Joseph Hasael Odero Baker, P.G.L. Iwuoha, Emmanuel Dept. of Chemistry Faculty of Science Aflatoxin B1 Anti-aflatoxin B1 antibody Immunosensor Electrochemical impedance spectroscopy Hydrogel composite Poly (2-hydroxyethyl methacrylate) p-(HEMA) Gold nanoparticles Polyaniline Poly thionine Philosophiae Doctor - PhD In the presented work, immunosensors for detection of Aflatoxin B1 based on different immobilization platforms were studied. Synthesis of an electroactive hydrogel was also carried out. Aflatoxins are a group of mycotoxins that have deleterious effects on humans and are produced during fungal infection of plants or plant products. Electrochemical immunosensor for the determination of Aflatoxin B1 (AFB1) was developed with anti-aflatoxin B1 antibody immobilized on Pt electrodes modified with polyaniline (PANi) and polystyrene sulphonic acid (PSSA). Impedimetric analysis shows that the electron transfer resistances of Pt/PANi-PSSA electrode, Pt/PANi-PSSA/AFB1-Ab immunosensor and Pt/PANi-PSSA/AFB1-Ab incubated in BSA were 0.458, 720 and 1066 kΩ, respectively. These results indicate that electrochemical impedance spectroscopy (EIS) is a suitable method for monitoring the change in electron-transfer resistance associated with the immobilization of the antibody. Modelling of EIS data gave equivalent circuits which showed that the electron transfer resistance increased from 0.458 kΩ for Pt/PANi-PSSA electrode to 1066 kΩ for Pt/PANi-PSSA/AFB1-Ab immunosensor, indicating that immobilization of the antibody and incubation in BSA introduced an electron transfer barrier. The AFB1 immunosensor had a detection limit of 0.1 mg/L and a sensitivity of 869.6 kΩL/mg. South Africa 2014-02-07T08:36:55Z 2010/04/30 03:02 2010/04/30 2014-02-07T08:36:55Z 2008 Thesis http://hdl.handle.net/11394/2777 en University of the Western Cape University of the Western Cape
collection NDLTD
language en
sources NDLTD
topic Aflatoxin B1
Anti-aflatoxin B1 antibody
Immunosensor
Electrochemical impedance spectroscopy
Hydrogel composite Poly (2-hydroxyethyl methacrylate) p-(HEMA)
Gold nanoparticles
Polyaniline
Poly thionine
spellingShingle Aflatoxin B1
Anti-aflatoxin B1 antibody
Immunosensor
Electrochemical impedance spectroscopy
Hydrogel composite Poly (2-hydroxyethyl methacrylate) p-(HEMA)
Gold nanoparticles
Polyaniline
Poly thionine
Owino, Joseph Hasael Odero
Frequency and voltage-modulated electrochemical aflatoxin B1 immunosensor systems prepared on electroactive organic polymer platforms
description Philosophiae Doctor - PhD === In the presented work, immunosensors for detection of Aflatoxin B1 based on different immobilization platforms were studied. Synthesis of an electroactive hydrogel was also carried out. Aflatoxins are a group of mycotoxins that have deleterious effects on humans and are produced during fungal infection of plants or plant products. Electrochemical immunosensor for the determination of Aflatoxin B1 (AFB1) was developed with anti-aflatoxin B1 antibody immobilized on Pt electrodes modified with polyaniline (PANi) and polystyrene sulphonic acid (PSSA). Impedimetric analysis shows that the electron transfer resistances of Pt/PANi-PSSA electrode, Pt/PANi-PSSA/AFB1-Ab immunosensor and Pt/PANi-PSSA/AFB1-Ab incubated in BSA were 0.458, 720 and 1066 kΩ, respectively. These results indicate that electrochemical impedance spectroscopy (EIS) is a suitable method for monitoring the change in electron-transfer resistance associated with the immobilization of the antibody. Modelling of EIS data gave equivalent circuits which showed that the electron transfer resistance increased from 0.458 kΩ for Pt/PANi-PSSA electrode to 1066 kΩ for Pt/PANi-PSSA/AFB1-Ab immunosensor, indicating that immobilization of the antibody and incubation in BSA introduced an electron transfer barrier. The AFB1 immunosensor had a detection limit of 0.1 mg/L and a sensitivity of 869.6 kΩL/mg. === South Africa
author2 Baker, P.G.L.
author_facet Baker, P.G.L.
Owino, Joseph Hasael Odero
author Owino, Joseph Hasael Odero
author_sort Owino, Joseph Hasael Odero
title Frequency and voltage-modulated electrochemical aflatoxin B1 immunosensor systems prepared on electroactive organic polymer platforms
title_short Frequency and voltage-modulated electrochemical aflatoxin B1 immunosensor systems prepared on electroactive organic polymer platforms
title_full Frequency and voltage-modulated electrochemical aflatoxin B1 immunosensor systems prepared on electroactive organic polymer platforms
title_fullStr Frequency and voltage-modulated electrochemical aflatoxin B1 immunosensor systems prepared on electroactive organic polymer platforms
title_full_unstemmed Frequency and voltage-modulated electrochemical aflatoxin B1 immunosensor systems prepared on electroactive organic polymer platforms
title_sort frequency and voltage-modulated electrochemical aflatoxin b1 immunosensor systems prepared on electroactive organic polymer platforms
publisher University of the Western Cape
publishDate 2014
url http://hdl.handle.net/11394/2777
work_keys_str_mv AT owinojosephhasaelodero frequencyandvoltagemodulatedelectrochemicalaflatoxinb1immunosensorsystemspreparedonelectroactiveorganicpolymerplatforms
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