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Development of a Novel H-Shaped Electrochemical Aptasensor for Detection of Hg(2+) Based on Graphene Aerogels–Au Nanoparticles Composite

Hg(2+), a highly toxic heavy metal, poses significant environmental and health risks, necessitating rapid detection methods. In this study, we employed an electrochemical aptasensor for rapid and sensitive detection of Hg(2+) based on DNA strands (H2 and H3) immobilized graphene aerogels-Au nanopart...

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Detalles Bibliográficos
Autores principales: Peng, Gang, Guo, Mengxue, Liu, Yuting, Yang, Han, Wen, Zuorui, Chen, Xiaojun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10605725/
https://www.ncbi.nlm.nih.gov/pubmed/37887125
http://dx.doi.org/10.3390/bios13100932
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author Peng, Gang
Guo, Mengxue
Liu, Yuting
Yang, Han
Wen, Zuorui
Chen, Xiaojun
author_facet Peng, Gang
Guo, Mengxue
Liu, Yuting
Yang, Han
Wen, Zuorui
Chen, Xiaojun
author_sort Peng, Gang
collection PubMed
description Hg(2+), a highly toxic heavy metal, poses significant environmental and health risks, necessitating rapid detection methods. In this study, we employed an electrochemical aptasensor for rapid and sensitive detection of Hg(2+) based on DNA strands (H2 and H3) immobilized graphene aerogels-Au nanoparticles (GAs-AuNPs) hybrid recognition interface and exonuclease III (Exo III)-mediated cyclic amplification. Firstly, Gas-AuNPs were modified on the surface of the ITO electrode to form a sensing interface to increase DNA loading and accelerate electron transfer. Then, DNA helper was generated with the addition of Hg(2+) via Exo III-mediated cycling. Finally, the hairpin structures of H2 and H3 were opened with the DNA helper, and then the methylene blue (MB) functionalized DNA (A1 and A2) combined with the H2 and H3 to form an H-shaped structure. The current response of MB as an electrochemical probe was proportional to the concentration of Hg(2+). Under optimal conditions, the aptasensor showed excellent performance for Hg(2+), achieving a linear range from 1 fM to 10 nM and a detection limit of 0.16 fM. Furthermore, the aptasensor was used to detect Hg(2+) in spiked milk samples, achieving a high recovery rate and demonstrating promising application prospects.
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spelling pubmed-106057252023-10-28 Development of a Novel H-Shaped Electrochemical Aptasensor for Detection of Hg(2+) Based on Graphene Aerogels–Au Nanoparticles Composite Peng, Gang Guo, Mengxue Liu, Yuting Yang, Han Wen, Zuorui Chen, Xiaojun Biosensors (Basel) Article Hg(2+), a highly toxic heavy metal, poses significant environmental and health risks, necessitating rapid detection methods. In this study, we employed an electrochemical aptasensor for rapid and sensitive detection of Hg(2+) based on DNA strands (H2 and H3) immobilized graphene aerogels-Au nanoparticles (GAs-AuNPs) hybrid recognition interface and exonuclease III (Exo III)-mediated cyclic amplification. Firstly, Gas-AuNPs were modified on the surface of the ITO electrode to form a sensing interface to increase DNA loading and accelerate electron transfer. Then, DNA helper was generated with the addition of Hg(2+) via Exo III-mediated cycling. Finally, the hairpin structures of H2 and H3 were opened with the DNA helper, and then the methylene blue (MB) functionalized DNA (A1 and A2) combined with the H2 and H3 to form an H-shaped structure. The current response of MB as an electrochemical probe was proportional to the concentration of Hg(2+). Under optimal conditions, the aptasensor showed excellent performance for Hg(2+), achieving a linear range from 1 fM to 10 nM and a detection limit of 0.16 fM. Furthermore, the aptasensor was used to detect Hg(2+) in spiked milk samples, achieving a high recovery rate and demonstrating promising application prospects. MDPI 2023-10-18 /pmc/articles/PMC10605725/ /pubmed/37887125 http://dx.doi.org/10.3390/bios13100932 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
Peng, Gang
Guo, Mengxue
Liu, Yuting
Yang, Han
Wen, Zuorui
Chen, Xiaojun
Development of a Novel H-Shaped Electrochemical Aptasensor for Detection of Hg(2+) Based on Graphene Aerogels–Au Nanoparticles Composite
title Development of a Novel H-Shaped Electrochemical Aptasensor for Detection of Hg(2+) Based on Graphene Aerogels–Au Nanoparticles Composite
title_full Development of a Novel H-Shaped Electrochemical Aptasensor for Detection of Hg(2+) Based on Graphene Aerogels–Au Nanoparticles Composite
title_fullStr Development of a Novel H-Shaped Electrochemical Aptasensor for Detection of Hg(2+) Based on Graphene Aerogels–Au Nanoparticles Composite
title_full_unstemmed Development of a Novel H-Shaped Electrochemical Aptasensor for Detection of Hg(2+) Based on Graphene Aerogels–Au Nanoparticles Composite
title_short Development of a Novel H-Shaped Electrochemical Aptasensor for Detection of Hg(2+) Based on Graphene Aerogels–Au Nanoparticles Composite
title_sort development of a novel h-shaped electrochemical aptasensor for detection of hg(2+) based on graphene aerogels–au nanoparticles composite
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10605725/
https://www.ncbi.nlm.nih.gov/pubmed/37887125
http://dx.doi.org/10.3390/bios13100932
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