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Novel Cytochrome P450-3A4 Enzymatic Nanobiosensor for Lapatinib (a Breast Cancer Drug) Developed on a Poly(anilino-co-4-aminobenzoic Acid-Green-Synthesised Indium Nanoparticle) Platform

Breast cancer (BC) is one of the most common types of cancer disease worldwide and it accounts for thousands of deaths annually. Lapatinib is among the preferred drugs for the treatment of breast cancer. Possible drug toxicity effects of lapatinib can be controlled by real-time determination of the...

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Autores principales: January, Jaymi Leigh, Tshobeni, Ziyanda Zamaswazi, Ngema, Nokwanda Precious Pearl, Jijana, Abongile Nwabisa, Iwuoha, Emmanuel Iheanyichukwu, Mulaudzi, Takalani, Douman, Samantha Fiona, Ajayi, Rachel Fanelwa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10527071/
https://www.ncbi.nlm.nih.gov/pubmed/37754131
http://dx.doi.org/10.3390/bios13090897
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author January, Jaymi Leigh
Tshobeni, Ziyanda Zamaswazi
Ngema, Nokwanda Precious Pearl
Jijana, Abongile Nwabisa
Iwuoha, Emmanuel Iheanyichukwu
Mulaudzi, Takalani
Douman, Samantha Fiona
Ajayi, Rachel Fanelwa
author_facet January, Jaymi Leigh
Tshobeni, Ziyanda Zamaswazi
Ngema, Nokwanda Precious Pearl
Jijana, Abongile Nwabisa
Iwuoha, Emmanuel Iheanyichukwu
Mulaudzi, Takalani
Douman, Samantha Fiona
Ajayi, Rachel Fanelwa
author_sort January, Jaymi Leigh
collection PubMed
description Breast cancer (BC) is one of the most common types of cancer disease worldwide and it accounts for thousands of deaths annually. Lapatinib is among the preferred drugs for the treatment of breast cancer. Possible drug toxicity effects of lapatinib can be controlled by real-time determination of the appropriate dose for a patient at the point of care. In this study, a novel highly sensitive polymeric nanobiosensor for lapatinib is presented. A composite of poly(anilino-co-4-aminobenzoic acid) co-polymer {poly(ANI-co-4-ABA)} and coffee extract-based green-synthesized indium nanoparticles (InNPs) was used to develop the sensor platform on a screen-printed carbon electrode (SPCE), i.e., SPCE||poly(ANI-co-4-ABA-InNPs). Cytochrome P450-3A4 (CYP3A4) enzyme and polyethylene glycol (PEG) were incorporated on the modified platform to produce the SPCE||poly(ANI-co-4-ABA-InNPs)|CYP3A4|PEG lapatinib nanobiosensor. Experiments for the determination of the electrochemical response characteristics of the nanobiosensor were performed with cyclic voltammetry (CV) and differential pulse voltammetry (DPV). The nanobiosensor calibration for 0–100 ng/mL lapatinib was linear and gave limit of detection (LOD) values of 13.21 ng/mL lapatinib and 18.6 ng/mL lapatinib in physiological buffer and human serum, respectively. The LOD values are much lower than the peak plasma concentration (C(max)) of lapatinib (2.43 µg/mL), which is attained 4 h after the administration of a daily dose of 1250 mg lapatinib. The electrochemical nanobiosensor also exhibited excellent anti-interference performance and stability.
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spelling pubmed-105270712023-09-28 Novel Cytochrome P450-3A4 Enzymatic Nanobiosensor for Lapatinib (a Breast Cancer Drug) Developed on a Poly(anilino-co-4-aminobenzoic Acid-Green-Synthesised Indium Nanoparticle) Platform January, Jaymi Leigh Tshobeni, Ziyanda Zamaswazi Ngema, Nokwanda Precious Pearl Jijana, Abongile Nwabisa Iwuoha, Emmanuel Iheanyichukwu Mulaudzi, Takalani Douman, Samantha Fiona Ajayi, Rachel Fanelwa Biosensors (Basel) Article Breast cancer (BC) is one of the most common types of cancer disease worldwide and it accounts for thousands of deaths annually. Lapatinib is among the preferred drugs for the treatment of breast cancer. Possible drug toxicity effects of lapatinib can be controlled by real-time determination of the appropriate dose for a patient at the point of care. In this study, a novel highly sensitive polymeric nanobiosensor for lapatinib is presented. A composite of poly(anilino-co-4-aminobenzoic acid) co-polymer {poly(ANI-co-4-ABA)} and coffee extract-based green-synthesized indium nanoparticles (InNPs) was used to develop the sensor platform on a screen-printed carbon electrode (SPCE), i.e., SPCE||poly(ANI-co-4-ABA-InNPs). Cytochrome P450-3A4 (CYP3A4) enzyme and polyethylene glycol (PEG) were incorporated on the modified platform to produce the SPCE||poly(ANI-co-4-ABA-InNPs)|CYP3A4|PEG lapatinib nanobiosensor. Experiments for the determination of the electrochemical response characteristics of the nanobiosensor were performed with cyclic voltammetry (CV) and differential pulse voltammetry (DPV). The nanobiosensor calibration for 0–100 ng/mL lapatinib was linear and gave limit of detection (LOD) values of 13.21 ng/mL lapatinib and 18.6 ng/mL lapatinib in physiological buffer and human serum, respectively. The LOD values are much lower than the peak plasma concentration (C(max)) of lapatinib (2.43 µg/mL), which is attained 4 h after the administration of a daily dose of 1250 mg lapatinib. The electrochemical nanobiosensor also exhibited excellent anti-interference performance and stability. MDPI 2023-09-21 /pmc/articles/PMC10527071/ /pubmed/37754131 http://dx.doi.org/10.3390/bios13090897 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
January, Jaymi Leigh
Tshobeni, Ziyanda Zamaswazi
Ngema, Nokwanda Precious Pearl
Jijana, Abongile Nwabisa
Iwuoha, Emmanuel Iheanyichukwu
Mulaudzi, Takalani
Douman, Samantha Fiona
Ajayi, Rachel Fanelwa
Novel Cytochrome P450-3A4 Enzymatic Nanobiosensor for Lapatinib (a Breast Cancer Drug) Developed on a Poly(anilino-co-4-aminobenzoic Acid-Green-Synthesised Indium Nanoparticle) Platform
title Novel Cytochrome P450-3A4 Enzymatic Nanobiosensor for Lapatinib (a Breast Cancer Drug) Developed on a Poly(anilino-co-4-aminobenzoic Acid-Green-Synthesised Indium Nanoparticle) Platform
title_full Novel Cytochrome P450-3A4 Enzymatic Nanobiosensor for Lapatinib (a Breast Cancer Drug) Developed on a Poly(anilino-co-4-aminobenzoic Acid-Green-Synthesised Indium Nanoparticle) Platform
title_fullStr Novel Cytochrome P450-3A4 Enzymatic Nanobiosensor for Lapatinib (a Breast Cancer Drug) Developed on a Poly(anilino-co-4-aminobenzoic Acid-Green-Synthesised Indium Nanoparticle) Platform
title_full_unstemmed Novel Cytochrome P450-3A4 Enzymatic Nanobiosensor for Lapatinib (a Breast Cancer Drug) Developed on a Poly(anilino-co-4-aminobenzoic Acid-Green-Synthesised Indium Nanoparticle) Platform
title_short Novel Cytochrome P450-3A4 Enzymatic Nanobiosensor for Lapatinib (a Breast Cancer Drug) Developed on a Poly(anilino-co-4-aminobenzoic Acid-Green-Synthesised Indium Nanoparticle) Platform
title_sort novel cytochrome p450-3a4 enzymatic nanobiosensor for lapatinib (a breast cancer drug) developed on a poly(anilino-co-4-aminobenzoic acid-green-synthesised indium nanoparticle) platform
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10527071/
https://www.ncbi.nlm.nih.gov/pubmed/37754131
http://dx.doi.org/10.3390/bios13090897
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