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Carbon Inks-Based Screen-Printed Electrodes for Qualitative Analysis of Amino Acids

Due to the great significance of amino acids, a substantial number of research studies has been directed toward the development of effective and reliable platforms for their evaluation, detection, and identification. In order to support these studies, a new electrochemical platform based on PANI/ZnO...

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Autores principales: Enache, Teodor Adrian, Enculescu, Monica, Bunea, Mihaela-Cristina, Zubillaga, Estibaliz Armendariz, Tellechea, Edurne, Aresti, Maite, Lasheras, María, Asensio, Aaron C., Diculescu, Victor C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9864027/
https://www.ncbi.nlm.nih.gov/pubmed/36674641
http://dx.doi.org/10.3390/ijms24021129
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author Enache, Teodor Adrian
Enculescu, Monica
Bunea, Mihaela-Cristina
Zubillaga, Estibaliz Armendariz
Tellechea, Edurne
Aresti, Maite
Lasheras, María
Asensio, Aaron C.
Diculescu, Victor C.
author_facet Enache, Teodor Adrian
Enculescu, Monica
Bunea, Mihaela-Cristina
Zubillaga, Estibaliz Armendariz
Tellechea, Edurne
Aresti, Maite
Lasheras, María
Asensio, Aaron C.
Diculescu, Victor C.
author_sort Enache, Teodor Adrian
collection PubMed
description Due to the great significance of amino acids, a substantial number of research studies has been directed toward the development of effective and reliable platforms for their evaluation, detection, and identification. In order to support these studies, a new electrochemical platform based on PANI/ZnO nanowires’ modified carbon inks screen-printed electrodes was developed for qualitative analysis of electroactive amino acids, with emphasis on tyrosine (Tyr) and tryptophan (Trp). A comparative investigation of the carbon ink before and after modification with the PANI/ZnO was performed by scanning electron microscopy and by Raman spectroscopy, confirming the presence of PANI and ZnO nanowires. Electrochemical investigations by cyclic voltammetry and electrochemical impedance spectroscopy have shown a higher charge-transfer rate constant, which is reflected into lower charge-transfer resistance and higher capacitance values for the PANI/ZnO modified ink when compared to the simple carbon screen-printed electrode. In order to demonstrate the electrochemical performances of the PANI/ZnO nanowires’ modified carbon inks screen-printed electrodes for amino acids analysis, differential pulse voltammograms were obtained in individual and mixed solutions of electroactive amino acids. It has been shown that the PANI/ZnO nanowires’ modified carbon inks screen-printed electrodes allowed for tyrosine and tryptophan a peak separation of more than 100 mV, enabling their screening and identification in mixed solutions, which is essential for the electrochemical analysis of proteins within the proteomics research field.
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spelling pubmed-98640272023-01-22 Carbon Inks-Based Screen-Printed Electrodes for Qualitative Analysis of Amino Acids Enache, Teodor Adrian Enculescu, Monica Bunea, Mihaela-Cristina Zubillaga, Estibaliz Armendariz Tellechea, Edurne Aresti, Maite Lasheras, María Asensio, Aaron C. Diculescu, Victor C. Int J Mol Sci Article Due to the great significance of amino acids, a substantial number of research studies has been directed toward the development of effective and reliable platforms for their evaluation, detection, and identification. In order to support these studies, a new electrochemical platform based on PANI/ZnO nanowires’ modified carbon inks screen-printed electrodes was developed for qualitative analysis of electroactive amino acids, with emphasis on tyrosine (Tyr) and tryptophan (Trp). A comparative investigation of the carbon ink before and after modification with the PANI/ZnO was performed by scanning electron microscopy and by Raman spectroscopy, confirming the presence of PANI and ZnO nanowires. Electrochemical investigations by cyclic voltammetry and electrochemical impedance spectroscopy have shown a higher charge-transfer rate constant, which is reflected into lower charge-transfer resistance and higher capacitance values for the PANI/ZnO modified ink when compared to the simple carbon screen-printed electrode. In order to demonstrate the electrochemical performances of the PANI/ZnO nanowires’ modified carbon inks screen-printed electrodes for amino acids analysis, differential pulse voltammograms were obtained in individual and mixed solutions of electroactive amino acids. It has been shown that the PANI/ZnO nanowires’ modified carbon inks screen-printed electrodes allowed for tyrosine and tryptophan a peak separation of more than 100 mV, enabling their screening and identification in mixed solutions, which is essential for the electrochemical analysis of proteins within the proteomics research field. MDPI 2023-01-06 /pmc/articles/PMC9864027/ /pubmed/36674641 http://dx.doi.org/10.3390/ijms24021129 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 Article
Enache, Teodor Adrian
Enculescu, Monica
Bunea, Mihaela-Cristina
Zubillaga, Estibaliz Armendariz
Tellechea, Edurne
Aresti, Maite
Lasheras, María
Asensio, Aaron C.
Diculescu, Victor C.
Carbon Inks-Based Screen-Printed Electrodes for Qualitative Analysis of Amino Acids
title Carbon Inks-Based Screen-Printed Electrodes for Qualitative Analysis of Amino Acids
title_full Carbon Inks-Based Screen-Printed Electrodes for Qualitative Analysis of Amino Acids
title_fullStr Carbon Inks-Based Screen-Printed Electrodes for Qualitative Analysis of Amino Acids
title_full_unstemmed Carbon Inks-Based Screen-Printed Electrodes for Qualitative Analysis of Amino Acids
title_short Carbon Inks-Based Screen-Printed Electrodes for Qualitative Analysis of Amino Acids
title_sort carbon inks-based screen-printed electrodes for qualitative analysis of amino acids
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9864027/
https://www.ncbi.nlm.nih.gov/pubmed/36674641
http://dx.doi.org/10.3390/ijms24021129
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