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Molecularly Imprinted Electrochemical Sensor-Based Fe(2)O(3)@MWCNTs for Ivabradine Drug Determination in Pharmaceutical Formulation, Serum, and Urine Samples

Ivabradine hydrochloride (IVR) is a medically important drug because of its ability to lower the heart rate. Techniques reported for IVR determination were expensive, laborious, besides being of poor selectivity. In this study, iron oxide @ carbon nanotube (Fe(2)O(3)@MWCNTs) nanocomposite and molecu...

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Autores principales: Abdel-Haleem, Fatehy M., Gamal, Eman, Rizk, Mahmoud S., Madbouly, Adel, El Nashar, Rasha M., Anis, Badawi, Elnabawy, Hussam M., Khalil, Ahmed S. G., Barhoum, Ahmed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8060449/
https://www.ncbi.nlm.nih.gov/pubmed/33898405
http://dx.doi.org/10.3389/fbioe.2021.648704
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author Abdel-Haleem, Fatehy M.
Gamal, Eman
Rizk, Mahmoud S.
Madbouly, Adel
El Nashar, Rasha M.
Anis, Badawi
Elnabawy, Hussam M.
Khalil, Ahmed S. G.
Barhoum, Ahmed
author_facet Abdel-Haleem, Fatehy M.
Gamal, Eman
Rizk, Mahmoud S.
Madbouly, Adel
El Nashar, Rasha M.
Anis, Badawi
Elnabawy, Hussam M.
Khalil, Ahmed S. G.
Barhoum, Ahmed
author_sort Abdel-Haleem, Fatehy M.
collection PubMed
description Ivabradine hydrochloride (IVR) is a medically important drug because of its ability to lower the heart rate. Techniques reported for IVR determination were expensive, laborious, besides being of poor selectivity. In this study, iron oxide @ carbon nanotube (Fe(2)O(3)@MWCNTs) nanocomposite and molecularly imprinted polymer (MIP) were synthesized and used in the fabrication of carbon paste electrodes (CPEs) for the potentiometric detection of IVR in biological and pharmaceutical samples. CPEs of the best sensor were formulated from graphite (41 wt%) as a carbon source, MIP (3 wt.%) as an ionophore, Fe(2)O(3)@MWCNTs (5 wt%) as a modifier, and nitrophenyl octyl ether (NPOE, 51 wt.%) as a conductive oil so-called plasticizer. The best sensor exhibits a Nernstian slope (response) of 56 mV decade(–1) within the IVR concentration range from 1.0 × 10(–3) M to 9.8 × 10(–8) M with high selectivity against interfering species (ascorbic, maltose, glucose, lactose, dopamine, glycine) over those reported earlier. The use of Fe(2)O(3)@MWCNTs together with MIP in the electrode formulation was found to improve the limit of detection (LOD) from 630 to 98 nM along with high reversibility, a short response time of 30 s, and a good lifetime of more than 2 weeks. The sandwich membrane (SMM) method was used to quantify the H-bonding complexing strength of the MIP binding sites for IVR with Log β(ILn) = 11.33. The constructed sensors were successfully applied for the IVR determination in blood serum, urine, and commercial formulations (Savapran(®)) with high sensitivity.
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spelling pubmed-80604492021-04-23 Molecularly Imprinted Electrochemical Sensor-Based Fe(2)O(3)@MWCNTs for Ivabradine Drug Determination in Pharmaceutical Formulation, Serum, and Urine Samples Abdel-Haleem, Fatehy M. Gamal, Eman Rizk, Mahmoud S. Madbouly, Adel El Nashar, Rasha M. Anis, Badawi Elnabawy, Hussam M. Khalil, Ahmed S. G. Barhoum, Ahmed Front Bioeng Biotechnol Bioengineering and Biotechnology Ivabradine hydrochloride (IVR) is a medically important drug because of its ability to lower the heart rate. Techniques reported for IVR determination were expensive, laborious, besides being of poor selectivity. In this study, iron oxide @ carbon nanotube (Fe(2)O(3)@MWCNTs) nanocomposite and molecularly imprinted polymer (MIP) were synthesized and used in the fabrication of carbon paste electrodes (CPEs) for the potentiometric detection of IVR in biological and pharmaceutical samples. CPEs of the best sensor were formulated from graphite (41 wt%) as a carbon source, MIP (3 wt.%) as an ionophore, Fe(2)O(3)@MWCNTs (5 wt%) as a modifier, and nitrophenyl octyl ether (NPOE, 51 wt.%) as a conductive oil so-called plasticizer. The best sensor exhibits a Nernstian slope (response) of 56 mV decade(–1) within the IVR concentration range from 1.0 × 10(–3) M to 9.8 × 10(–8) M with high selectivity against interfering species (ascorbic, maltose, glucose, lactose, dopamine, glycine) over those reported earlier. The use of Fe(2)O(3)@MWCNTs together with MIP in the electrode formulation was found to improve the limit of detection (LOD) from 630 to 98 nM along with high reversibility, a short response time of 30 s, and a good lifetime of more than 2 weeks. The sandwich membrane (SMM) method was used to quantify the H-bonding complexing strength of the MIP binding sites for IVR with Log β(ILn) = 11.33. The constructed sensors were successfully applied for the IVR determination in blood serum, urine, and commercial formulations (Savapran(®)) with high sensitivity. Frontiers Media S.A. 2021-04-08 /pmc/articles/PMC8060449/ /pubmed/33898405 http://dx.doi.org/10.3389/fbioe.2021.648704 Text en Copyright © 2021 Abdel-Haleem, Gamal, Rizk, Madbouly, El Nashar, Anis, Elnabawy, Khalil and Barhoum. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Bioengineering and Biotechnology
Abdel-Haleem, Fatehy M.
Gamal, Eman
Rizk, Mahmoud S.
Madbouly, Adel
El Nashar, Rasha M.
Anis, Badawi
Elnabawy, Hussam M.
Khalil, Ahmed S. G.
Barhoum, Ahmed
Molecularly Imprinted Electrochemical Sensor-Based Fe(2)O(3)@MWCNTs for Ivabradine Drug Determination in Pharmaceutical Formulation, Serum, and Urine Samples
title Molecularly Imprinted Electrochemical Sensor-Based Fe(2)O(3)@MWCNTs for Ivabradine Drug Determination in Pharmaceutical Formulation, Serum, and Urine Samples
title_full Molecularly Imprinted Electrochemical Sensor-Based Fe(2)O(3)@MWCNTs for Ivabradine Drug Determination in Pharmaceutical Formulation, Serum, and Urine Samples
title_fullStr Molecularly Imprinted Electrochemical Sensor-Based Fe(2)O(3)@MWCNTs for Ivabradine Drug Determination in Pharmaceutical Formulation, Serum, and Urine Samples
title_full_unstemmed Molecularly Imprinted Electrochemical Sensor-Based Fe(2)O(3)@MWCNTs for Ivabradine Drug Determination in Pharmaceutical Formulation, Serum, and Urine Samples
title_short Molecularly Imprinted Electrochemical Sensor-Based Fe(2)O(3)@MWCNTs for Ivabradine Drug Determination in Pharmaceutical Formulation, Serum, and Urine Samples
title_sort molecularly imprinted electrochemical sensor-based fe(2)o(3)@mwcnts for ivabradine drug determination in pharmaceutical formulation, serum, and urine samples
topic Bioengineering and Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8060449/
https://www.ncbi.nlm.nih.gov/pubmed/33898405
http://dx.doi.org/10.3389/fbioe.2021.648704
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