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Electrospun Nanofibers including Organic/Inorganic Nanohybrids: Polystyrene- and Clay-Based Architectures in Immunosensor Preparation for Serum Amyloid A

Diagnostic techniques based on biomolecules have application potential that can be realized in many fields, such as disease diagnosis, bioprocess imaging, food/beverage industries, and environmental pollutant imaging. Successful surface immobilization of biomolecules is critical to increasing the st...

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Autores principales: Evren, Gizem, Er, Eray, Yalcinkaya, Esra Evrim, Horzum, Nesrin, Odaci, Dilek
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10377714/
https://www.ncbi.nlm.nih.gov/pubmed/37504072
http://dx.doi.org/10.3390/bios13070673
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author Evren, Gizem
Er, Eray
Yalcinkaya, Esra Evrim
Horzum, Nesrin
Odaci, Dilek
author_facet Evren, Gizem
Er, Eray
Yalcinkaya, Esra Evrim
Horzum, Nesrin
Odaci, Dilek
author_sort Evren, Gizem
collection PubMed
description Diagnostic techniques based on biomolecules have application potential that can be realized in many fields, such as disease diagnosis, bioprocess imaging, food/beverage industries, and environmental pollutant imaging. Successful surface immobilization of biomolecules is critical to increasing the stabilization, sensitivity, and selectivity of biomolecules used in bioassay systems. Nanofibers are good candidates for the immobilization of biomolecules owing to many advantages such as morphology and pore size. In this study, montmorillonite (MMT) clay is modified with poly(amidoamine) (PAMAM) generation 3 (PAMAM(G3)) and added to polystyrene (PS) solutions, following which PS/MMT-PAMAM(G3) nanofibers are obtained using the electrospinning method. The nanofibers are obtained by testing PS% (wt%) and MMT-PAMAM(G3)% (wt%) ratios and characterized with scanning electron microscopy. Antiserum amyloid A antibody (Anti-SAA) is then conjugated to the nanofibers on the electrode surface via covalent bonds using a zero-length cross linker. Finally, the obtained selective surface is used for electrochemical determination of serum amyloid A (SAA) levels. The linear range of PS/MMT-PAMAM/Anti-SAA is between 1 and 200 ng/mL SAA, and the detection limit is 0.57 ng/mL SAA. The applicability of PS/MMT-PAMAM(G3)/Anti-SAA is investigated by taking measurements in synthetic saliva and serum both containing SAA.
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spelling pubmed-103777142023-07-29 Electrospun Nanofibers including Organic/Inorganic Nanohybrids: Polystyrene- and Clay-Based Architectures in Immunosensor Preparation for Serum Amyloid A Evren, Gizem Er, Eray Yalcinkaya, Esra Evrim Horzum, Nesrin Odaci, Dilek Biosensors (Basel) Article Diagnostic techniques based on biomolecules have application potential that can be realized in many fields, such as disease diagnosis, bioprocess imaging, food/beverage industries, and environmental pollutant imaging. Successful surface immobilization of biomolecules is critical to increasing the stabilization, sensitivity, and selectivity of biomolecules used in bioassay systems. Nanofibers are good candidates for the immobilization of biomolecules owing to many advantages such as morphology and pore size. In this study, montmorillonite (MMT) clay is modified with poly(amidoamine) (PAMAM) generation 3 (PAMAM(G3)) and added to polystyrene (PS) solutions, following which PS/MMT-PAMAM(G3) nanofibers are obtained using the electrospinning method. The nanofibers are obtained by testing PS% (wt%) and MMT-PAMAM(G3)% (wt%) ratios and characterized with scanning electron microscopy. Antiserum amyloid A antibody (Anti-SAA) is then conjugated to the nanofibers on the electrode surface via covalent bonds using a zero-length cross linker. Finally, the obtained selective surface is used for electrochemical determination of serum amyloid A (SAA) levels. The linear range of PS/MMT-PAMAM/Anti-SAA is between 1 and 200 ng/mL SAA, and the detection limit is 0.57 ng/mL SAA. The applicability of PS/MMT-PAMAM(G3)/Anti-SAA is investigated by taking measurements in synthetic saliva and serum both containing SAA. MDPI 2023-06-23 /pmc/articles/PMC10377714/ /pubmed/37504072 http://dx.doi.org/10.3390/bios13070673 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
Evren, Gizem
Er, Eray
Yalcinkaya, Esra Evrim
Horzum, Nesrin
Odaci, Dilek
Electrospun Nanofibers including Organic/Inorganic Nanohybrids: Polystyrene- and Clay-Based Architectures in Immunosensor Preparation for Serum Amyloid A
title Electrospun Nanofibers including Organic/Inorganic Nanohybrids: Polystyrene- and Clay-Based Architectures in Immunosensor Preparation for Serum Amyloid A
title_full Electrospun Nanofibers including Organic/Inorganic Nanohybrids: Polystyrene- and Clay-Based Architectures in Immunosensor Preparation for Serum Amyloid A
title_fullStr Electrospun Nanofibers including Organic/Inorganic Nanohybrids: Polystyrene- and Clay-Based Architectures in Immunosensor Preparation for Serum Amyloid A
title_full_unstemmed Electrospun Nanofibers including Organic/Inorganic Nanohybrids: Polystyrene- and Clay-Based Architectures in Immunosensor Preparation for Serum Amyloid A
title_short Electrospun Nanofibers including Organic/Inorganic Nanohybrids: Polystyrene- and Clay-Based Architectures in Immunosensor Preparation for Serum Amyloid A
title_sort electrospun nanofibers including organic/inorganic nanohybrids: polystyrene- and clay-based architectures in immunosensor preparation for serum amyloid a
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10377714/
https://www.ncbi.nlm.nih.gov/pubmed/37504072
http://dx.doi.org/10.3390/bios13070673
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