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Highly Sensitive Electrochemical Non-Enzymatic Uric Acid Sensor Based on Cobalt Oxide Puffy Balls-like Nanostructure

Early-stage uric acid (UA) abnormality detection is crucial for a healthy human. With the evolution of nanoscience, metal oxide nanostructure-based sensors have become a potential candidate for health monitoring due to their low-cost, easy-to-handle, and portability. Herein, we demonstrate the synth...

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Autores principales: Nagal, Vandana, Masrat, Sakeena, Khan, Marya, Alam, Shamshad, Ahmad, Akil, Alshammari, Mohammed B., Bhat, Kiesar Sideeq, Novikov, Sergey M., Mishra, Prabhash, Khosla, Ajit, Ahmad, Rafiq
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10046517/
https://www.ncbi.nlm.nih.gov/pubmed/36979587
http://dx.doi.org/10.3390/bios13030375
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author Nagal, Vandana
Masrat, Sakeena
Khan, Marya
Alam, Shamshad
Ahmad, Akil
Alshammari, Mohammed B.
Bhat, Kiesar Sideeq
Novikov, Sergey M.
Mishra, Prabhash
Khosla, Ajit
Ahmad, Rafiq
author_facet Nagal, Vandana
Masrat, Sakeena
Khan, Marya
Alam, Shamshad
Ahmad, Akil
Alshammari, Mohammed B.
Bhat, Kiesar Sideeq
Novikov, Sergey M.
Mishra, Prabhash
Khosla, Ajit
Ahmad, Rafiq
author_sort Nagal, Vandana
collection PubMed
description Early-stage uric acid (UA) abnormality detection is crucial for a healthy human. With the evolution of nanoscience, metal oxide nanostructure-based sensors have become a potential candidate for health monitoring due to their low-cost, easy-to-handle, and portability. Herein, we demonstrate the synthesis of puffy balls-like cobalt oxide nanostructure using a hydrothermal method and utilize them to modify the working electrode for non-enzymatic electrochemical sensor fabrication. The non-enzymatic electrochemical sensor was utilized for UA determination using cyclic voltammetry (CV) and differential pulse voltammetry (DPV). The puffy balls-shaped cobalt oxide nanostructure-modified glassy carbon (GC) electrode exhibited excellent electro-catalytic activity during UA detection. Interestingly, when we compared the sensitivity of non-enzymatic electrochemical UA sensors, the DPV technique resulted in high sensitivity (2158 µA/mM.cm(2)) compared to the CV technique (sensitivity = 307 µA/mM.cm(2)). The developed non-enzymatic electrochemical UA sensor showed good selectivity, stability, reproducibility, and applicability in the human serum. Moreover, this study indicates that the puffy balls-shaped cobalt oxide nanostructure can be utilized as electrode material for designing (bio)sensors to detect a specific analyte.
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spelling pubmed-100465172023-03-29 Highly Sensitive Electrochemical Non-Enzymatic Uric Acid Sensor Based on Cobalt Oxide Puffy Balls-like Nanostructure Nagal, Vandana Masrat, Sakeena Khan, Marya Alam, Shamshad Ahmad, Akil Alshammari, Mohammed B. Bhat, Kiesar Sideeq Novikov, Sergey M. Mishra, Prabhash Khosla, Ajit Ahmad, Rafiq Biosensors (Basel) Communication Early-stage uric acid (UA) abnormality detection is crucial for a healthy human. With the evolution of nanoscience, metal oxide nanostructure-based sensors have become a potential candidate for health monitoring due to their low-cost, easy-to-handle, and portability. Herein, we demonstrate the synthesis of puffy balls-like cobalt oxide nanostructure using a hydrothermal method and utilize them to modify the working electrode for non-enzymatic electrochemical sensor fabrication. The non-enzymatic electrochemical sensor was utilized for UA determination using cyclic voltammetry (CV) and differential pulse voltammetry (DPV). The puffy balls-shaped cobalt oxide nanostructure-modified glassy carbon (GC) electrode exhibited excellent electro-catalytic activity during UA detection. Interestingly, when we compared the sensitivity of non-enzymatic electrochemical UA sensors, the DPV technique resulted in high sensitivity (2158 µA/mM.cm(2)) compared to the CV technique (sensitivity = 307 µA/mM.cm(2)). The developed non-enzymatic electrochemical UA sensor showed good selectivity, stability, reproducibility, and applicability in the human serum. Moreover, this study indicates that the puffy balls-shaped cobalt oxide nanostructure can be utilized as electrode material for designing (bio)sensors to detect a specific analyte. MDPI 2023-03-12 /pmc/articles/PMC10046517/ /pubmed/36979587 http://dx.doi.org/10.3390/bios13030375 Text en © 2023 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 Communication
Nagal, Vandana
Masrat, Sakeena
Khan, Marya
Alam, Shamshad
Ahmad, Akil
Alshammari, Mohammed B.
Bhat, Kiesar Sideeq
Novikov, Sergey M.
Mishra, Prabhash
Khosla, Ajit
Ahmad, Rafiq
Highly Sensitive Electrochemical Non-Enzymatic Uric Acid Sensor Based on Cobalt Oxide Puffy Balls-like Nanostructure
title Highly Sensitive Electrochemical Non-Enzymatic Uric Acid Sensor Based on Cobalt Oxide Puffy Balls-like Nanostructure
title_full Highly Sensitive Electrochemical Non-Enzymatic Uric Acid Sensor Based on Cobalt Oxide Puffy Balls-like Nanostructure
title_fullStr Highly Sensitive Electrochemical Non-Enzymatic Uric Acid Sensor Based on Cobalt Oxide Puffy Balls-like Nanostructure
title_full_unstemmed Highly Sensitive Electrochemical Non-Enzymatic Uric Acid Sensor Based on Cobalt Oxide Puffy Balls-like Nanostructure
title_short Highly Sensitive Electrochemical Non-Enzymatic Uric Acid Sensor Based on Cobalt Oxide Puffy Balls-like Nanostructure
title_sort highly sensitive electrochemical non-enzymatic uric acid sensor based on cobalt oxide puffy balls-like nanostructure
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10046517/
https://www.ncbi.nlm.nih.gov/pubmed/36979587
http://dx.doi.org/10.3390/bios13030375
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