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Modified Potentiometric Screen-Printed Electrodes Based on Imprinting Character for Sodium Deoxycholate Determination

Potentiometric sensors have a great influence on the determination of most various compounds in their matrices. Therefore, efficient and new sensors were introduced to measure sodium Deoxycholate (NaDC) as a bile acid salt. These sensors are based on NaDC imprinted polymer (MIP) as sensory element....

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Autores principales: H. Kamel, Ayman, Ezzat, Samar, Ahmed, Mona A., Amr, Abd El-Galil E., A. Almehizia, Abdulrahman, Al-Omar, Mohamed A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7072443/
https://www.ncbi.nlm.nih.gov/pubmed/32041305
http://dx.doi.org/10.3390/biom10020251
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author H. Kamel, Ayman
Ezzat, Samar
Ahmed, Mona A.
Amr, Abd El-Galil E.
A. Almehizia, Abdulrahman
Al-Omar, Mohamed A.
author_facet H. Kamel, Ayman
Ezzat, Samar
Ahmed, Mona A.
Amr, Abd El-Galil E.
A. Almehizia, Abdulrahman
Al-Omar, Mohamed A.
author_sort H. Kamel, Ayman
collection PubMed
description Potentiometric sensors have a great influence on the determination of most various compounds in their matrices. Therefore, efficient and new sensors were introduced to measure sodium Deoxycholate (NaDC) as a bile acid salt. These sensors are based on NaDC imprinted polymer (MIP) as sensory element. The MIP beads were synthesized using thermal polymerization pathway, in which acrylamide (AAm), ethylene glycol dimethacrylate (EGDMA), NaDC, and benzoyl peroxide (BPO) were used as the functional monomer, cross-linker, template, and initiator, respectively. The proposed sensors were fabricated using a coated screen-printed platform and the sensing membrane was modified by single-walled carbon nanotubes (SWCNTs) as an ion-to-electron transducer. The sensors exhibited high sensitivity that reached 4.7 × 10(−5) M of near-Nernestian slope (−60.1 ± 0.9 mV/decade, r(2) = 0.999 (n= 5)). In addition, the sensors revealed high selectivity, long lifetime, high potential stability, and conductivity that ensure reproducible and accurate results over a long time. MIP characterization was performed using Fourier Transform-Infrared (FT-IR) and a scanning electron microscope (SEM). Regarding the interaction of NaDC with serum albumin (SA), albumin is determined in human serum samples as human serum albumin (HSA), which was collected from different volunteers of different ages and gender.
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spelling pubmed-70724432020-03-19 Modified Potentiometric Screen-Printed Electrodes Based on Imprinting Character for Sodium Deoxycholate Determination H. Kamel, Ayman Ezzat, Samar Ahmed, Mona A. Amr, Abd El-Galil E. A. Almehizia, Abdulrahman Al-Omar, Mohamed A. Biomolecules Article Potentiometric sensors have a great influence on the determination of most various compounds in their matrices. Therefore, efficient and new sensors were introduced to measure sodium Deoxycholate (NaDC) as a bile acid salt. These sensors are based on NaDC imprinted polymer (MIP) as sensory element. The MIP beads were synthesized using thermal polymerization pathway, in which acrylamide (AAm), ethylene glycol dimethacrylate (EGDMA), NaDC, and benzoyl peroxide (BPO) were used as the functional monomer, cross-linker, template, and initiator, respectively. The proposed sensors were fabricated using a coated screen-printed platform and the sensing membrane was modified by single-walled carbon nanotubes (SWCNTs) as an ion-to-electron transducer. The sensors exhibited high sensitivity that reached 4.7 × 10(−5) M of near-Nernestian slope (−60.1 ± 0.9 mV/decade, r(2) = 0.999 (n= 5)). In addition, the sensors revealed high selectivity, long lifetime, high potential stability, and conductivity that ensure reproducible and accurate results over a long time. MIP characterization was performed using Fourier Transform-Infrared (FT-IR) and a scanning electron microscope (SEM). Regarding the interaction of NaDC with serum albumin (SA), albumin is determined in human serum samples as human serum albumin (HSA), which was collected from different volunteers of different ages and gender. MDPI 2020-02-06 /pmc/articles/PMC7072443/ /pubmed/32041305 http://dx.doi.org/10.3390/biom10020251 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
H. Kamel, Ayman
Ezzat, Samar
Ahmed, Mona A.
Amr, Abd El-Galil E.
A. Almehizia, Abdulrahman
Al-Omar, Mohamed A.
Modified Potentiometric Screen-Printed Electrodes Based on Imprinting Character for Sodium Deoxycholate Determination
title Modified Potentiometric Screen-Printed Electrodes Based on Imprinting Character for Sodium Deoxycholate Determination
title_full Modified Potentiometric Screen-Printed Electrodes Based on Imprinting Character for Sodium Deoxycholate Determination
title_fullStr Modified Potentiometric Screen-Printed Electrodes Based on Imprinting Character for Sodium Deoxycholate Determination
title_full_unstemmed Modified Potentiometric Screen-Printed Electrodes Based on Imprinting Character for Sodium Deoxycholate Determination
title_short Modified Potentiometric Screen-Printed Electrodes Based on Imprinting Character for Sodium Deoxycholate Determination
title_sort modified potentiometric screen-printed electrodes based on imprinting character for sodium deoxycholate determination
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7072443/
https://www.ncbi.nlm.nih.gov/pubmed/32041305
http://dx.doi.org/10.3390/biom10020251
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