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Determination of uric acid level by polyaniline and poly (allylamine): Based biosensor

The uric acid biosensor has been much developed by immobilizing uricase enzyme into the membrane of conductive polymer and the membrane of polyelectrolyte such as polyaniline (PANI) and poly (allylamine) (PAA) respectively. The purpose of this research was to create a new amperometric uric acid bios...

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Autores principales: Wathoni, Nasrul, Hasanah, Aliya Nur, Gozali, Dolih, Wahyuni, Yeni, Fauziah, Lia Layusa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Medknow Publications & Media Pvt Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3960787/
https://www.ncbi.nlm.nih.gov/pubmed/24696812
http://dx.doi.org/10.4103/2231-4040.126981
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author Wathoni, Nasrul
Hasanah, Aliya Nur
Gozali, Dolih
Wahyuni, Yeni
Fauziah, Lia Layusa
author_facet Wathoni, Nasrul
Hasanah, Aliya Nur
Gozali, Dolih
Wahyuni, Yeni
Fauziah, Lia Layusa
author_sort Wathoni, Nasrul
collection PubMed
description The uric acid biosensor has been much developed by immobilizing uricase enzyme into the membrane of conductive polymer and the membrane of polyelectrolyte such as polyaniline (PANI) and poly (allylamine) (PAA) respectively. The purpose of this research was to create a new amperometric uric acid biosensor by immobilization of uricase in combination between PANI and PAA membranes. The working electrode was Pt plate (0.5 mm). The auxiliary and the reference electrode were Pt wire 0.4 mm and Ag/AgCl respectively. Uricase, uric acid, PAA, pyrrole and glutaraldehyde were supplied from Sigma. All other chemical was obtained from Merck. The biosensor was created by immobilizing of uricase by a glutaraldehyde crosslinking procedure on PANI composite film on the surface of a platinum electrode while the polyelectrolyte layer of PAA were prepared via layer-by-layer assembly on the electrode, functioning as H(2)O(2)-selective film. Standard of deviation, coefficient of variation (CV) and coefficient of correlation (r) analysis were used in this study. The biosensor had a good linearity with a correlation coefficient of 0.993 and it could be used up to 27 times with the CV value of 3.97%. The presence of other compounds such as glucose and ascorbic acid gave 1.3 ± 1.13% and 3.27 ± 2.29% respectively on the interference effect toward the current response of uric acid biosensor. The polymer combination of PANI and PAA can be used as a selective matrix of uric acid biosensor.
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spelling pubmed-39607872014-04-02 Determination of uric acid level by polyaniline and poly (allylamine): Based biosensor Wathoni, Nasrul Hasanah, Aliya Nur Gozali, Dolih Wahyuni, Yeni Fauziah, Lia Layusa J Adv Pharm Technol Res Original Article The uric acid biosensor has been much developed by immobilizing uricase enzyme into the membrane of conductive polymer and the membrane of polyelectrolyte such as polyaniline (PANI) and poly (allylamine) (PAA) respectively. The purpose of this research was to create a new amperometric uric acid biosensor by immobilization of uricase in combination between PANI and PAA membranes. The working electrode was Pt plate (0.5 mm). The auxiliary and the reference electrode were Pt wire 0.4 mm and Ag/AgCl respectively. Uricase, uric acid, PAA, pyrrole and glutaraldehyde were supplied from Sigma. All other chemical was obtained from Merck. The biosensor was created by immobilizing of uricase by a glutaraldehyde crosslinking procedure on PANI composite film on the surface of a platinum electrode while the polyelectrolyte layer of PAA were prepared via layer-by-layer assembly on the electrode, functioning as H(2)O(2)-selective film. Standard of deviation, coefficient of variation (CV) and coefficient of correlation (r) analysis were used in this study. The biosensor had a good linearity with a correlation coefficient of 0.993 and it could be used up to 27 times with the CV value of 3.97%. The presence of other compounds such as glucose and ascorbic acid gave 1.3 ± 1.13% and 3.27 ± 2.29% respectively on the interference effect toward the current response of uric acid biosensor. The polymer combination of PANI and PAA can be used as a selective matrix of uric acid biosensor. Medknow Publications & Media Pvt Ltd 2014 /pmc/articles/PMC3960787/ /pubmed/24696812 http://dx.doi.org/10.4103/2231-4040.126981 Text en Copyright: © Journal of Advanced Pharmaceutical Technology & Research http://creativecommons.org/licenses/by-nc-sa/3.0 This is an open-access article distributed under the terms of the Creative Commons Attribution-Noncommercial-Share Alike 3.0 Unported, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Wathoni, Nasrul
Hasanah, Aliya Nur
Gozali, Dolih
Wahyuni, Yeni
Fauziah, Lia Layusa
Determination of uric acid level by polyaniline and poly (allylamine): Based biosensor
title Determination of uric acid level by polyaniline and poly (allylamine): Based biosensor
title_full Determination of uric acid level by polyaniline and poly (allylamine): Based biosensor
title_fullStr Determination of uric acid level by polyaniline and poly (allylamine): Based biosensor
title_full_unstemmed Determination of uric acid level by polyaniline and poly (allylamine): Based biosensor
title_short Determination of uric acid level by polyaniline and poly (allylamine): Based biosensor
title_sort determination of uric acid level by polyaniline and poly (allylamine): based biosensor
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3960787/
https://www.ncbi.nlm.nih.gov/pubmed/24696812
http://dx.doi.org/10.4103/2231-4040.126981
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