A Highly Sensitive Enzyme-Amplified Immunosensor Based on a Nanoporous Niobium Oxide (Nb2O5) Electrode

We report on the development of an enzyme-amplified sandwich-type immunosensor based on a thin gold film sputtered on an anodic nanoporous niobium oxide (Au@Nb2O5) electrode. The electrocatalytic activity of enzymatically amplified electroactive species and a stable electrode consisting of Au@Nb2O5...

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Main Authors: Chang-Soo Lee, Dohyoung Kwon, Jeng Eun Yoo, Byung Gun Lee, Jinsub Choi, Bong Hyun Chung
Format: Article
Language:English
Published: MDPI AG 2010-05-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/10/5/5160/
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spelling doaj-e731a0f197e64dbd9f82e12ac4575edb2020-11-25T00:16:50ZengMDPI AGSensors1424-82202010-05-011055160517010.3390/s100505160A Highly Sensitive Enzyme-Amplified Immunosensor Based on a Nanoporous Niobium Oxide (Nb2O5) ElectrodeChang-Soo LeeDohyoung KwonJeng Eun YooByung Gun LeeJinsub ChoiBong Hyun ChungWe report on the development of an enzyme-amplified sandwich-type immunosensor based on a thin gold film sputtered on an anodic nanoporous niobium oxide (Au@Nb2O5) electrode. The electrocatalytic activity of enzymatically amplified electroactive species and a stable electrode consisting of Au@Nb2O5 were used to obtain a powerful signal amplification of the electrochemical immunobiosensor. The method using this electrochemical biosensor based on an Au@Nb2O5 electrode provides a much better performance than those based on conventional bulk gold or niobium oxide electrodes. Our novel approach does not require any time-consuming cleaning steps to yield reproducible electrochemical signals. In addition, the strong adhesion of gold films on the niobium oxide electrodes offers a very stable substrate during electrochemical biosensing. Cyclic voltammetry measurements indicate that non-specific binding of proteins to the modified Au@Nb2O5 surface is sufficiently low to be ignored in the case of our novel system. Finally, we demonstrated the ability of the biosensor based on an Au@Nb2O5 offering the enhanced performance with a high resolution and sensitivity. Therefore, it is expected that the biosensor based on an Au@Nb2O5 has great potential for highly efficient biological devices. http://www.mdpi.com/1424-8220/10/5/5160/electrochemical biosensorniobium oxideenzymeimmunosensor
collection DOAJ
language English
format Article
sources DOAJ
author Chang-Soo Lee
Dohyoung Kwon
Jeng Eun Yoo
Byung Gun Lee
Jinsub Choi
Bong Hyun Chung
spellingShingle Chang-Soo Lee
Dohyoung Kwon
Jeng Eun Yoo
Byung Gun Lee
Jinsub Choi
Bong Hyun Chung
A Highly Sensitive Enzyme-Amplified Immunosensor Based on a Nanoporous Niobium Oxide (Nb2O5) Electrode
Sensors
electrochemical biosensor
niobium oxide
enzyme
immunosensor
author_facet Chang-Soo Lee
Dohyoung Kwon
Jeng Eun Yoo
Byung Gun Lee
Jinsub Choi
Bong Hyun Chung
author_sort Chang-Soo Lee
title A Highly Sensitive Enzyme-Amplified Immunosensor Based on a Nanoporous Niobium Oxide (Nb2O5) Electrode
title_short A Highly Sensitive Enzyme-Amplified Immunosensor Based on a Nanoporous Niobium Oxide (Nb2O5) Electrode
title_full A Highly Sensitive Enzyme-Amplified Immunosensor Based on a Nanoporous Niobium Oxide (Nb2O5) Electrode
title_fullStr A Highly Sensitive Enzyme-Amplified Immunosensor Based on a Nanoporous Niobium Oxide (Nb2O5) Electrode
title_full_unstemmed A Highly Sensitive Enzyme-Amplified Immunosensor Based on a Nanoporous Niobium Oxide (Nb2O5) Electrode
title_sort highly sensitive enzyme-amplified immunosensor based on a nanoporous niobium oxide (nb2o5) electrode
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2010-05-01
description We report on the development of an enzyme-amplified sandwich-type immunosensor based on a thin gold film sputtered on an anodic nanoporous niobium oxide (Au@Nb2O5) electrode. The electrocatalytic activity of enzymatically amplified electroactive species and a stable electrode consisting of Au@Nb2O5 were used to obtain a powerful signal amplification of the electrochemical immunobiosensor. The method using this electrochemical biosensor based on an Au@Nb2O5 electrode provides a much better performance than those based on conventional bulk gold or niobium oxide electrodes. Our novel approach does not require any time-consuming cleaning steps to yield reproducible electrochemical signals. In addition, the strong adhesion of gold films on the niobium oxide electrodes offers a very stable substrate during electrochemical biosensing. Cyclic voltammetry measurements indicate that non-specific binding of proteins to the modified Au@Nb2O5 surface is sufficiently low to be ignored in the case of our novel system. Finally, we demonstrated the ability of the biosensor based on an Au@Nb2O5 offering the enhanced performance with a high resolution and sensitivity. Therefore, it is expected that the biosensor based on an Au@Nb2O5 has great potential for highly efficient biological devices.
topic electrochemical biosensor
niobium oxide
enzyme
immunosensor
url http://www.mdpi.com/1424-8220/10/5/5160/
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