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Multilayered Mesoporous Composite Nanostructures for Highly Sensitive Label-Free Quantification of Cardiac Troponin-I

Cardiac troponin-I (cTnI) is a well-known biomarker for the diagnosis and control of acute myocardial infarction in clinical practice. To improve the accuracy and reliability of cTnI electrochemical immunosensors, we propose a multilayer nanostructure consisting of Fe(3)O(4)-COOH labeled anti-cTnI m...

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Autores principales: Saeidi, Mohsen, Amidian, Mohammad Ali, Sheybanikashani, Sana, Mahdavi, Hossein, Alimohammadi, Homayoon, Syedmoradi, Leila, Mohandes, Fatemeh, Zarrabi, Ali, Tamjid, Elnaz, Omidfar, Kobra, Simchi, Abdolreza
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9138364/
https://www.ncbi.nlm.nih.gov/pubmed/35624638
http://dx.doi.org/10.3390/bios12050337
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author Saeidi, Mohsen
Amidian, Mohammad Ali
Sheybanikashani, Sana
Mahdavi, Hossein
Alimohammadi, Homayoon
Syedmoradi, Leila
Mohandes, Fatemeh
Zarrabi, Ali
Tamjid, Elnaz
Omidfar, Kobra
Simchi, Abdolreza
author_facet Saeidi, Mohsen
Amidian, Mohammad Ali
Sheybanikashani, Sana
Mahdavi, Hossein
Alimohammadi, Homayoon
Syedmoradi, Leila
Mohandes, Fatemeh
Zarrabi, Ali
Tamjid, Elnaz
Omidfar, Kobra
Simchi, Abdolreza
author_sort Saeidi, Mohsen
collection PubMed
description Cardiac troponin-I (cTnI) is a well-known biomarker for the diagnosis and control of acute myocardial infarction in clinical practice. To improve the accuracy and reliability of cTnI electrochemical immunosensors, we propose a multilayer nanostructure consisting of Fe(3)O(4)-COOH labeled anti-cTnI monoclonal antibody (Fe(3)O(4)-COOH-Ab(1)) and anti-cTnI polyclonal antibody (Ab(2)) conjugated on Au-Ag nanoparticles (NPs) decorated on a metal–organic framework (Au-Ag@ZIF-67-Ab(2)). In this design, Fe(3)O(4)-COOH was used for separation of cTnI in specimens and signal amplification, hierarchical porous ZIF-67 extremely enhanced the specific surface area, and Au-Ag NPs synergically promoted the conductivity and sensitivity. They were additionally employed as an immobilization platform to enhance antibody loading. Electron microscopy images indicated that Ag-Au NPs with an average diameter of 1.9 ± 0.5 nm were uniformly decorated on plate-like ZIF-67 particles (with average size of 690 nm) without any agglomeration. Several electrochemical assays were implemented to precisely evaluate the immunosensor performance. The square wave voltammetry technique exhibited the best performance with a sensitivity of 0.98 mA mL cm(−2) ng(−1) and a detection limit of 0.047 pg mL(−1) in the linear range of 0.04 to 8 ng mL(−1).
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spelling pubmed-91383642022-05-28 Multilayered Mesoporous Composite Nanostructures for Highly Sensitive Label-Free Quantification of Cardiac Troponin-I Saeidi, Mohsen Amidian, Mohammad Ali Sheybanikashani, Sana Mahdavi, Hossein Alimohammadi, Homayoon Syedmoradi, Leila Mohandes, Fatemeh Zarrabi, Ali Tamjid, Elnaz Omidfar, Kobra Simchi, Abdolreza Biosensors (Basel) Article Cardiac troponin-I (cTnI) is a well-known biomarker for the diagnosis and control of acute myocardial infarction in clinical practice. To improve the accuracy and reliability of cTnI electrochemical immunosensors, we propose a multilayer nanostructure consisting of Fe(3)O(4)-COOH labeled anti-cTnI monoclonal antibody (Fe(3)O(4)-COOH-Ab(1)) and anti-cTnI polyclonal antibody (Ab(2)) conjugated on Au-Ag nanoparticles (NPs) decorated on a metal–organic framework (Au-Ag@ZIF-67-Ab(2)). In this design, Fe(3)O(4)-COOH was used for separation of cTnI in specimens and signal amplification, hierarchical porous ZIF-67 extremely enhanced the specific surface area, and Au-Ag NPs synergically promoted the conductivity and sensitivity. They were additionally employed as an immobilization platform to enhance antibody loading. Electron microscopy images indicated that Ag-Au NPs with an average diameter of 1.9 ± 0.5 nm were uniformly decorated on plate-like ZIF-67 particles (with average size of 690 nm) without any agglomeration. Several electrochemical assays were implemented to precisely evaluate the immunosensor performance. The square wave voltammetry technique exhibited the best performance with a sensitivity of 0.98 mA mL cm(−2) ng(−1) and a detection limit of 0.047 pg mL(−1) in the linear range of 0.04 to 8 ng mL(−1). MDPI 2022-05-14 /pmc/articles/PMC9138364/ /pubmed/35624638 http://dx.doi.org/10.3390/bios12050337 Text en © 2022 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
Saeidi, Mohsen
Amidian, Mohammad Ali
Sheybanikashani, Sana
Mahdavi, Hossein
Alimohammadi, Homayoon
Syedmoradi, Leila
Mohandes, Fatemeh
Zarrabi, Ali
Tamjid, Elnaz
Omidfar, Kobra
Simchi, Abdolreza
Multilayered Mesoporous Composite Nanostructures for Highly Sensitive Label-Free Quantification of Cardiac Troponin-I
title Multilayered Mesoporous Composite Nanostructures for Highly Sensitive Label-Free Quantification of Cardiac Troponin-I
title_full Multilayered Mesoporous Composite Nanostructures for Highly Sensitive Label-Free Quantification of Cardiac Troponin-I
title_fullStr Multilayered Mesoporous Composite Nanostructures for Highly Sensitive Label-Free Quantification of Cardiac Troponin-I
title_full_unstemmed Multilayered Mesoporous Composite Nanostructures for Highly Sensitive Label-Free Quantification of Cardiac Troponin-I
title_short Multilayered Mesoporous Composite Nanostructures for Highly Sensitive Label-Free Quantification of Cardiac Troponin-I
title_sort multilayered mesoporous composite nanostructures for highly sensitive label-free quantification of cardiac troponin-i
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9138364/
https://www.ncbi.nlm.nih.gov/pubmed/35624638
http://dx.doi.org/10.3390/bios12050337
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