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A Carbon-Based Antifouling Nano-Biosensing Interface for Label-Free POCT of HbA1c

Electrochemical biosensing relies on electron transport on electrode surfaces. However, electrode inactivation and biofouling caused by a complex biological sample severely decrease the efficiency of electron transfer and the specificity of biosensing. Here, we designed a three-dimensional antifouli...

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Detalles Bibliográficos
Autores principales: Li, Zhenhua, Li, Jianyong, Dou, Yanzhi, Wang, Lihua, Song, Shiping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069255/
https://www.ncbi.nlm.nih.gov/pubmed/33921226
http://dx.doi.org/10.3390/bios11040118
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author Li, Zhenhua
Li, Jianyong
Dou, Yanzhi
Wang, Lihua
Song, Shiping
author_facet Li, Zhenhua
Li, Jianyong
Dou, Yanzhi
Wang, Lihua
Song, Shiping
author_sort Li, Zhenhua
collection PubMed
description Electrochemical biosensing relies on electron transport on electrode surfaces. However, electrode inactivation and biofouling caused by a complex biological sample severely decrease the efficiency of electron transfer and the specificity of biosensing. Here, we designed a three-dimensional antifouling nano-biosensing interface to improve the efficiency of electron transfer by a layer of bovine serum albumin (BSA) and multi-walled carbon nanotubes (MWCNTs) cross-linked with glutaraldehyde (GA). The electrochemical properties of the BSA/MWCNTs/GA layer were investigated using both cyclic voltammetry and electrochemical impedance to demonstrate its high-efficiency antifouling nano-biosensing interface. The BSA/MWCNTs/GA layer kept 92% of the original signal in 1% BSA and 88% of that in unprocessed human serum after a 1-month exposure, respectively. Importantly, we functionalized the BSA/MWCNTs/GA layer with HbA1c antibody (anti-HbA1c) and 3-aminophenylboronic acid (APBA) for sensitive detection of glycated hemoglobin A (HbA1c). The label-free direct electrocatalytic oxidation of HbA1c was investigated by cyclic voltammetry (CV). The linear dynamic range of 2 to 15% of blood glycated hemoglobin A (HbA1c) in non-glycated hemoglobin (HbAo) was determined. The detection limit was 0.4%. This high degree of differentiation would facilitate a label-free POCT detection of HbA1c.
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spelling pubmed-80692552021-04-26 A Carbon-Based Antifouling Nano-Biosensing Interface for Label-Free POCT of HbA1c Li, Zhenhua Li, Jianyong Dou, Yanzhi Wang, Lihua Song, Shiping Biosensors (Basel) Article Electrochemical biosensing relies on electron transport on electrode surfaces. However, electrode inactivation and biofouling caused by a complex biological sample severely decrease the efficiency of electron transfer and the specificity of biosensing. Here, we designed a three-dimensional antifouling nano-biosensing interface to improve the efficiency of electron transfer by a layer of bovine serum albumin (BSA) and multi-walled carbon nanotubes (MWCNTs) cross-linked with glutaraldehyde (GA). The electrochemical properties of the BSA/MWCNTs/GA layer were investigated using both cyclic voltammetry and electrochemical impedance to demonstrate its high-efficiency antifouling nano-biosensing interface. The BSA/MWCNTs/GA layer kept 92% of the original signal in 1% BSA and 88% of that in unprocessed human serum after a 1-month exposure, respectively. Importantly, we functionalized the BSA/MWCNTs/GA layer with HbA1c antibody (anti-HbA1c) and 3-aminophenylboronic acid (APBA) for sensitive detection of glycated hemoglobin A (HbA1c). The label-free direct electrocatalytic oxidation of HbA1c was investigated by cyclic voltammetry (CV). The linear dynamic range of 2 to 15% of blood glycated hemoglobin A (HbA1c) in non-glycated hemoglobin (HbAo) was determined. The detection limit was 0.4%. This high degree of differentiation would facilitate a label-free POCT detection of HbA1c. MDPI 2021-04-12 /pmc/articles/PMC8069255/ /pubmed/33921226 http://dx.doi.org/10.3390/bios11040118 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
Li, Zhenhua
Li, Jianyong
Dou, Yanzhi
Wang, Lihua
Song, Shiping
A Carbon-Based Antifouling Nano-Biosensing Interface for Label-Free POCT of HbA1c
title A Carbon-Based Antifouling Nano-Biosensing Interface for Label-Free POCT of HbA1c
title_full A Carbon-Based Antifouling Nano-Biosensing Interface for Label-Free POCT of HbA1c
title_fullStr A Carbon-Based Antifouling Nano-Biosensing Interface for Label-Free POCT of HbA1c
title_full_unstemmed A Carbon-Based Antifouling Nano-Biosensing Interface for Label-Free POCT of HbA1c
title_short A Carbon-Based Antifouling Nano-Biosensing Interface for Label-Free POCT of HbA1c
title_sort carbon-based antifouling nano-biosensing interface for label-free poct of hba1c
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069255/
https://www.ncbi.nlm.nih.gov/pubmed/33921226
http://dx.doi.org/10.3390/bios11040118
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