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Laser-scribed Graphene Electrodes Functionalized with Nafion/Fe(3)O(4) Nanohybrids for the Ultrasensitive Detection of Neurotoxin Drug Clioquinol

[Image: see text] The analysis of pharmaceutical active ingredients plays an important role in quality control and clinical trials because they have a significant physiological effect on the human body even at low concentrations. Herein, a flexible three-electrode system using laser-scribed graphene...

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Autores principales: Madhuvilakku, Rajesh, Yen, Yi-Kuang, Yan, Wei-Mon, Huang, Guang-Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9096983/
https://www.ncbi.nlm.nih.gov/pubmed/35571850
http://dx.doi.org/10.1021/acsomega.2c01069
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author Madhuvilakku, Rajesh
Yen, Yi-Kuang
Yan, Wei-Mon
Huang, Guang-Wei
author_facet Madhuvilakku, Rajesh
Yen, Yi-Kuang
Yan, Wei-Mon
Huang, Guang-Wei
author_sort Madhuvilakku, Rajesh
collection PubMed
description [Image: see text] The analysis of pharmaceutical active ingredients plays an important role in quality control and clinical trials because they have a significant physiological effect on the human body even at low concentrations. Herein, a flexible three-electrode system using laser-scribed graphene (LSG) technology, which consists of Nafion/Fe(3)O(4) nanohybrids immobilized on LSG as the working electrode and LSG counter and reference electrodes on a single polyimide film, is presented. A Nafion/Fe(3)O(4)/LSG electrode is constructed by drop coating a solution of Nafion/Fe(3)O(4), which is electrostatically self-assembled between positively charged Fe(3)O(4) and negatively charged Nafion on the LSG electrode and is used for the first time to determine a neurotoxicity drug (clioquinol; CQL) in biological samples. Owing to their porous 3D structure, an enriched surface area at the active edges and polar groups (OH, COOH, and −SO(3)H) in Nafion/Fe(3)O(4)/LSG electrodes resulted in excellent wettability to facilitate electrolyte diffusion, which gave ∼twofold enhancement in electrocatalytic activity over LSG electrodes. The experimental parameters affecting the analytical performance were investigated. The quantification of clioquinol on the Nafion/Fe(3)O(4)/LSG electrode surface was examined using differential pulse voltammetry and chronoamperometry techniques. The fabricated sensor displays preferable sensitivity (17.4 μA μM(–1) cm(–2)), a wide linear range (1 nM to 100 μM), a very low detection limit (0.73 nM), and acceptable selectivity toward quantitative analysis of CQL. Furthermore, the reliability of the sensor was checked by CQL detection in spiked human blood serum and urine samples, and satisfactory recoveries were obtained.
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spelling pubmed-90969832022-05-13 Laser-scribed Graphene Electrodes Functionalized with Nafion/Fe(3)O(4) Nanohybrids for the Ultrasensitive Detection of Neurotoxin Drug Clioquinol Madhuvilakku, Rajesh Yen, Yi-Kuang Yan, Wei-Mon Huang, Guang-Wei ACS Omega [Image: see text] The analysis of pharmaceutical active ingredients plays an important role in quality control and clinical trials because they have a significant physiological effect on the human body even at low concentrations. Herein, a flexible three-electrode system using laser-scribed graphene (LSG) technology, which consists of Nafion/Fe(3)O(4) nanohybrids immobilized on LSG as the working electrode and LSG counter and reference electrodes on a single polyimide film, is presented. A Nafion/Fe(3)O(4)/LSG electrode is constructed by drop coating a solution of Nafion/Fe(3)O(4), which is electrostatically self-assembled between positively charged Fe(3)O(4) and negatively charged Nafion on the LSG electrode and is used for the first time to determine a neurotoxicity drug (clioquinol; CQL) in biological samples. Owing to their porous 3D structure, an enriched surface area at the active edges and polar groups (OH, COOH, and −SO(3)H) in Nafion/Fe(3)O(4)/LSG electrodes resulted in excellent wettability to facilitate electrolyte diffusion, which gave ∼twofold enhancement in electrocatalytic activity over LSG electrodes. The experimental parameters affecting the analytical performance were investigated. The quantification of clioquinol on the Nafion/Fe(3)O(4)/LSG electrode surface was examined using differential pulse voltammetry and chronoamperometry techniques. The fabricated sensor displays preferable sensitivity (17.4 μA μM(–1) cm(–2)), a wide linear range (1 nM to 100 μM), a very low detection limit (0.73 nM), and acceptable selectivity toward quantitative analysis of CQL. Furthermore, the reliability of the sensor was checked by CQL detection in spiked human blood serum and urine samples, and satisfactory recoveries were obtained. American Chemical Society 2022-04-29 /pmc/articles/PMC9096983/ /pubmed/35571850 http://dx.doi.org/10.1021/acsomega.2c01069 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Madhuvilakku, Rajesh
Yen, Yi-Kuang
Yan, Wei-Mon
Huang, Guang-Wei
Laser-scribed Graphene Electrodes Functionalized with Nafion/Fe(3)O(4) Nanohybrids for the Ultrasensitive Detection of Neurotoxin Drug Clioquinol
title Laser-scribed Graphene Electrodes Functionalized with Nafion/Fe(3)O(4) Nanohybrids for the Ultrasensitive Detection of Neurotoxin Drug Clioquinol
title_full Laser-scribed Graphene Electrodes Functionalized with Nafion/Fe(3)O(4) Nanohybrids for the Ultrasensitive Detection of Neurotoxin Drug Clioquinol
title_fullStr Laser-scribed Graphene Electrodes Functionalized with Nafion/Fe(3)O(4) Nanohybrids for the Ultrasensitive Detection of Neurotoxin Drug Clioquinol
title_full_unstemmed Laser-scribed Graphene Electrodes Functionalized with Nafion/Fe(3)O(4) Nanohybrids for the Ultrasensitive Detection of Neurotoxin Drug Clioquinol
title_short Laser-scribed Graphene Electrodes Functionalized with Nafion/Fe(3)O(4) Nanohybrids for the Ultrasensitive Detection of Neurotoxin Drug Clioquinol
title_sort laser-scribed graphene electrodes functionalized with nafion/fe(3)o(4) nanohybrids for the ultrasensitive detection of neurotoxin drug clioquinol
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9096983/
https://www.ncbi.nlm.nih.gov/pubmed/35571850
http://dx.doi.org/10.1021/acsomega.2c01069
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