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A Multifunctional N-Doped Cu–MOFs (N–Cu–MOF) Nanomaterial-Driven Electrochemical Aptasensor for Sensitive Detection of Deoxynivalenol

Deoxynivalenol (DON) is one of the most common mycotoxins in grains, causing gastrointestinal inflammation, neurotoxicity, hepatotoxicity and embryotoxicity, even at a low quantity. In this study, a facile electrochemical aptasensor was established for the rapid and sensitive determination of DON ba...

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Autores principales: Wen, Xiaoyan, Huang, Qingwen, Nie, Dongxia, Zhao, Xiuying, Cao, Haojie, Wu, Wenhui, Han, Zheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069659/
https://www.ncbi.nlm.nih.gov/pubmed/33924544
http://dx.doi.org/10.3390/molecules26082243
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author Wen, Xiaoyan
Huang, Qingwen
Nie, Dongxia
Zhao, Xiuying
Cao, Haojie
Wu, Wenhui
Han, Zheng
author_facet Wen, Xiaoyan
Huang, Qingwen
Nie, Dongxia
Zhao, Xiuying
Cao, Haojie
Wu, Wenhui
Han, Zheng
author_sort Wen, Xiaoyan
collection PubMed
description Deoxynivalenol (DON) is one of the most common mycotoxins in grains, causing gastrointestinal inflammation, neurotoxicity, hepatotoxicity and embryotoxicity, even at a low quantity. In this study, a facile electrochemical aptasensor was established for the rapid and sensitive determination of DON based on a multifunctional N-doped Cu-metallic organic framework (N–Cu–MOF) nanomaterial. The N–Cu–MOF, with a large specific surface area and good electrical conductivity, served not only as an optimal electrical signal probe but also as an effective supporting substrate for stabilizing aptamers through the interactions of amino (-NH(2)) and copper. Under the optimal conditions, the proposed sensor provided a wide linear concentration range of 0.02–20 ng mL(−1) (R(2) = 0.994), showing high sensitivity, with a lower detection limit of 0.008 ng mL(−1), and good selectivity. The sensor’s effectiveness was also verified in real spiked wheat samples with satisfactory recoveries of 95.6–105.9%. The current work provides a flexible approach for the rapid and sensitive analysis of highly toxic DON in food samples and may also be easily extended to detect other hazardous substances with alternative target-recognition aptamers.
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spelling pubmed-80696592021-04-26 A Multifunctional N-Doped Cu–MOFs (N–Cu–MOF) Nanomaterial-Driven Electrochemical Aptasensor for Sensitive Detection of Deoxynivalenol Wen, Xiaoyan Huang, Qingwen Nie, Dongxia Zhao, Xiuying Cao, Haojie Wu, Wenhui Han, Zheng Molecules Article Deoxynivalenol (DON) is one of the most common mycotoxins in grains, causing gastrointestinal inflammation, neurotoxicity, hepatotoxicity and embryotoxicity, even at a low quantity. In this study, a facile electrochemical aptasensor was established for the rapid and sensitive determination of DON based on a multifunctional N-doped Cu-metallic organic framework (N–Cu–MOF) nanomaterial. The N–Cu–MOF, with a large specific surface area and good electrical conductivity, served not only as an optimal electrical signal probe but also as an effective supporting substrate for stabilizing aptamers through the interactions of amino (-NH(2)) and copper. Under the optimal conditions, the proposed sensor provided a wide linear concentration range of 0.02–20 ng mL(−1) (R(2) = 0.994), showing high sensitivity, with a lower detection limit of 0.008 ng mL(−1), and good selectivity. The sensor’s effectiveness was also verified in real spiked wheat samples with satisfactory recoveries of 95.6–105.9%. The current work provides a flexible approach for the rapid and sensitive analysis of highly toxic DON in food samples and may also be easily extended to detect other hazardous substances with alternative target-recognition aptamers. MDPI 2021-04-13 /pmc/articles/PMC8069659/ /pubmed/33924544 http://dx.doi.org/10.3390/molecules26082243 Text en © 2021 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
Wen, Xiaoyan
Huang, Qingwen
Nie, Dongxia
Zhao, Xiuying
Cao, Haojie
Wu, Wenhui
Han, Zheng
A Multifunctional N-Doped Cu–MOFs (N–Cu–MOF) Nanomaterial-Driven Electrochemical Aptasensor for Sensitive Detection of Deoxynivalenol
title A Multifunctional N-Doped Cu–MOFs (N–Cu–MOF) Nanomaterial-Driven Electrochemical Aptasensor for Sensitive Detection of Deoxynivalenol
title_full A Multifunctional N-Doped Cu–MOFs (N–Cu–MOF) Nanomaterial-Driven Electrochemical Aptasensor for Sensitive Detection of Deoxynivalenol
title_fullStr A Multifunctional N-Doped Cu–MOFs (N–Cu–MOF) Nanomaterial-Driven Electrochemical Aptasensor for Sensitive Detection of Deoxynivalenol
title_full_unstemmed A Multifunctional N-Doped Cu–MOFs (N–Cu–MOF) Nanomaterial-Driven Electrochemical Aptasensor for Sensitive Detection of Deoxynivalenol
title_short A Multifunctional N-Doped Cu–MOFs (N–Cu–MOF) Nanomaterial-Driven Electrochemical Aptasensor for Sensitive Detection of Deoxynivalenol
title_sort multifunctional n-doped cu–mofs (n–cu–mof) nanomaterial-driven electrochemical aptasensor for sensitive detection of deoxynivalenol
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069659/
https://www.ncbi.nlm.nih.gov/pubmed/33924544
http://dx.doi.org/10.3390/molecules26082243
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