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Application of Polydopamine Functionalized Zinc Oxide for Glucose Biosensor Design

Zinc oxide (ZnO) nanostructures are widely used in optical sensors and biosensors. Functionalization of these nanostructures with polymers enables optical properties of ZnO to be tailored. Polydopamine (PDA) is a highly biocompatible polymer, which can be used as a versatile coating suitable for app...

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Autores principales: Fedorenko, Viktoriia, Damberga, Daina, Grundsteins, Karlis, Ramanavicius, Arunas, Ramanavicius, Simonas, Coy, Emerson, Iatsunskyi, Igor, Viter, Roman
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8433701/
https://www.ncbi.nlm.nih.gov/pubmed/34502958
http://dx.doi.org/10.3390/polym13172918
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author Fedorenko, Viktoriia
Damberga, Daina
Grundsteins, Karlis
Ramanavicius, Arunas
Ramanavicius, Simonas
Coy, Emerson
Iatsunskyi, Igor
Viter, Roman
author_facet Fedorenko, Viktoriia
Damberga, Daina
Grundsteins, Karlis
Ramanavicius, Arunas
Ramanavicius, Simonas
Coy, Emerson
Iatsunskyi, Igor
Viter, Roman
author_sort Fedorenko, Viktoriia
collection PubMed
description Zinc oxide (ZnO) nanostructures are widely used in optical sensors and biosensors. Functionalization of these nanostructures with polymers enables optical properties of ZnO to be tailored. Polydopamine (PDA) is a highly biocompatible polymer, which can be used as a versatile coating suitable for application in sensor and biosensor design. In this research, we have grown ZnO-based nanorods on the surface of ITO-modified glass-plated optically transparent electrodes (glass/ITO). Then the deposition of the PDA polymer layer on the surface of ZnO nanorods was performed from an aqueous PDA solution in such a way glass/ITO/ZnO-PDA structure was formed. The ZnO-PDA composite was characterized by SEM, TEM, and FTIR spectroscopy. Then glucose oxidase (GOx) was immobilized using crosslinking by glutaraldehyde on the surface of the ZnO-PDA composite, and glass/ITO/ZnO-PDA/GOx-based biosensing structure was designed. This structure was applied for the photo-electrochemical determination of glucose (Glc) in aqueous solutions. Photo-electrochemical determination of glucose by cyclic voltammetry and amperometry has been performed by glass/ITO/ZnO-PDA/GOx-based biosensor. Here reported modification/functionalization of ZnO nanorods with PDA enhances the photo-electrochemical performance of ZnO nanorods, which is well suited for the design of photo-electrochemical sensors and biosensors.
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spelling pubmed-84337012021-09-12 Application of Polydopamine Functionalized Zinc Oxide for Glucose Biosensor Design Fedorenko, Viktoriia Damberga, Daina Grundsteins, Karlis Ramanavicius, Arunas Ramanavicius, Simonas Coy, Emerson Iatsunskyi, Igor Viter, Roman Polymers (Basel) Article Zinc oxide (ZnO) nanostructures are widely used in optical sensors and biosensors. Functionalization of these nanostructures with polymers enables optical properties of ZnO to be tailored. Polydopamine (PDA) is a highly biocompatible polymer, which can be used as a versatile coating suitable for application in sensor and biosensor design. In this research, we have grown ZnO-based nanorods on the surface of ITO-modified glass-plated optically transparent electrodes (glass/ITO). Then the deposition of the PDA polymer layer on the surface of ZnO nanorods was performed from an aqueous PDA solution in such a way glass/ITO/ZnO-PDA structure was formed. The ZnO-PDA composite was characterized by SEM, TEM, and FTIR spectroscopy. Then glucose oxidase (GOx) was immobilized using crosslinking by glutaraldehyde on the surface of the ZnO-PDA composite, and glass/ITO/ZnO-PDA/GOx-based biosensing structure was designed. This structure was applied for the photo-electrochemical determination of glucose (Glc) in aqueous solutions. Photo-electrochemical determination of glucose by cyclic voltammetry and amperometry has been performed by glass/ITO/ZnO-PDA/GOx-based biosensor. Here reported modification/functionalization of ZnO nanorods with PDA enhances the photo-electrochemical performance of ZnO nanorods, which is well suited for the design of photo-electrochemical sensors and biosensors. MDPI 2021-08-30 /pmc/articles/PMC8433701/ /pubmed/34502958 http://dx.doi.org/10.3390/polym13172918 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Fedorenko, Viktoriia
Damberga, Daina
Grundsteins, Karlis
Ramanavicius, Arunas
Ramanavicius, Simonas
Coy, Emerson
Iatsunskyi, Igor
Viter, Roman
Application of Polydopamine Functionalized Zinc Oxide for Glucose Biosensor Design
title Application of Polydopamine Functionalized Zinc Oxide for Glucose Biosensor Design
title_full Application of Polydopamine Functionalized Zinc Oxide for Glucose Biosensor Design
title_fullStr Application of Polydopamine Functionalized Zinc Oxide for Glucose Biosensor Design
title_full_unstemmed Application of Polydopamine Functionalized Zinc Oxide for Glucose Biosensor Design
title_short Application of Polydopamine Functionalized Zinc Oxide for Glucose Biosensor Design
title_sort application of polydopamine functionalized zinc oxide for glucose biosensor design
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8433701/
https://www.ncbi.nlm.nih.gov/pubmed/34502958
http://dx.doi.org/10.3390/polym13172918
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