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Electrochemical Detection of ompA Gene of C. sakazakii Based on Glucose-Oxidase-Mimicking Nanotags of Gold-Nanoparticles-Doped Copper Metal-organic Frameworks

The present work developed an electrochemical genosensor for the detection of virulence outer membrane protein A (ompA, tDNA) gene of Cronobacter sakazakii (C. sakazakii) by exploiting the excellent glucose-oxidase-mimicking activity of copper Metal-organic frameworks (Cu-MOF) doped with gold nanopa...

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Autores principales: Zhang, Hongyan, Xu, Guiqing, Chen, Yuming, Li, Xu, Wang, Shaopeng, Jiang, Feihao, Zhan, Pengyang, Lu, Chuanfu, Cao, Xiaodong, Ye, Yongkang, Tao, Yunlai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10181677/
https://www.ncbi.nlm.nih.gov/pubmed/37177600
http://dx.doi.org/10.3390/s23094396
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author Zhang, Hongyan
Xu, Guiqing
Chen, Yuming
Li, Xu
Wang, Shaopeng
Jiang, Feihao
Zhan, Pengyang
Lu, Chuanfu
Cao, Xiaodong
Ye, Yongkang
Tao, Yunlai
author_facet Zhang, Hongyan
Xu, Guiqing
Chen, Yuming
Li, Xu
Wang, Shaopeng
Jiang, Feihao
Zhan, Pengyang
Lu, Chuanfu
Cao, Xiaodong
Ye, Yongkang
Tao, Yunlai
author_sort Zhang, Hongyan
collection PubMed
description The present work developed an electrochemical genosensor for the detection of virulence outer membrane protein A (ompA, tDNA) gene of Cronobacter sakazakii (C. sakazakii) by exploiting the excellent glucose-oxidase-mimicking activity of copper Metal-organic frameworks (Cu-MOF) doped with gold nanoparticle (AuNPs). The signal nanotags of signal probes (sDNA) that biofunctionalized AuNPs@Cu-MOF (sDNA-AuNPs@Cu-MOF) were designed using an Au-S bond. The biosensor was prepared by immobilization capture probes (cDNA) onto an electrodeposited AuNPs-modified glassy carbon electrode (GCE). AuNPs@Cu-MOF was introduced onto the surface of the GCE via a hybridization reaction between cDNA and tDNA, as well as tDNA and sDNA. Due to the enhanced oxidase-mimicking activity of AuNPs@Cu-MOF to glucose, the biosensor gave a linear range of 1.0 × 10(−15) to 1.0 × 10(−9) mol L(−1) to tDNA with a detection limit (LOD) of 0.42 fmol L(−1) under optimized conditions using differential pulse voltammetry measurement (DPV). It can be applied in the direct detection of ompA gene segments in total DNA extracts from C. sakazakii with a broad linear range of 5.4−5.4 × 10(5) CFU mL(−1) and a LOD of 0.35 CFU mL(−1). The biosensor showed good selectivity, fabricating reproducibility and storage stability, and can be used for the detection of ompA gene segments in real samples with recovery between 87.5% and 107.3%.
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spelling pubmed-101816772023-05-13 Electrochemical Detection of ompA Gene of C. sakazakii Based on Glucose-Oxidase-Mimicking Nanotags of Gold-Nanoparticles-Doped Copper Metal-organic Frameworks Zhang, Hongyan Xu, Guiqing Chen, Yuming Li, Xu Wang, Shaopeng Jiang, Feihao Zhan, Pengyang Lu, Chuanfu Cao, Xiaodong Ye, Yongkang Tao, Yunlai Sensors (Basel) Article The present work developed an electrochemical genosensor for the detection of virulence outer membrane protein A (ompA, tDNA) gene of Cronobacter sakazakii (C. sakazakii) by exploiting the excellent glucose-oxidase-mimicking activity of copper Metal-organic frameworks (Cu-MOF) doped with gold nanoparticle (AuNPs). The signal nanotags of signal probes (sDNA) that biofunctionalized AuNPs@Cu-MOF (sDNA-AuNPs@Cu-MOF) were designed using an Au-S bond. The biosensor was prepared by immobilization capture probes (cDNA) onto an electrodeposited AuNPs-modified glassy carbon electrode (GCE). AuNPs@Cu-MOF was introduced onto the surface of the GCE via a hybridization reaction between cDNA and tDNA, as well as tDNA and sDNA. Due to the enhanced oxidase-mimicking activity of AuNPs@Cu-MOF to glucose, the biosensor gave a linear range of 1.0 × 10(−15) to 1.0 × 10(−9) mol L(−1) to tDNA with a detection limit (LOD) of 0.42 fmol L(−1) under optimized conditions using differential pulse voltammetry measurement (DPV). It can be applied in the direct detection of ompA gene segments in total DNA extracts from C. sakazakii with a broad linear range of 5.4−5.4 × 10(5) CFU mL(−1) and a LOD of 0.35 CFU mL(−1). The biosensor showed good selectivity, fabricating reproducibility and storage stability, and can be used for the detection of ompA gene segments in real samples with recovery between 87.5% and 107.3%. MDPI 2023-04-29 /pmc/articles/PMC10181677/ /pubmed/37177600 http://dx.doi.org/10.3390/s23094396 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
Zhang, Hongyan
Xu, Guiqing
Chen, Yuming
Li, Xu
Wang, Shaopeng
Jiang, Feihao
Zhan, Pengyang
Lu, Chuanfu
Cao, Xiaodong
Ye, Yongkang
Tao, Yunlai
Electrochemical Detection of ompA Gene of C. sakazakii Based on Glucose-Oxidase-Mimicking Nanotags of Gold-Nanoparticles-Doped Copper Metal-organic Frameworks
title Electrochemical Detection of ompA Gene of C. sakazakii Based on Glucose-Oxidase-Mimicking Nanotags of Gold-Nanoparticles-Doped Copper Metal-organic Frameworks
title_full Electrochemical Detection of ompA Gene of C. sakazakii Based on Glucose-Oxidase-Mimicking Nanotags of Gold-Nanoparticles-Doped Copper Metal-organic Frameworks
title_fullStr Electrochemical Detection of ompA Gene of C. sakazakii Based on Glucose-Oxidase-Mimicking Nanotags of Gold-Nanoparticles-Doped Copper Metal-organic Frameworks
title_full_unstemmed Electrochemical Detection of ompA Gene of C. sakazakii Based on Glucose-Oxidase-Mimicking Nanotags of Gold-Nanoparticles-Doped Copper Metal-organic Frameworks
title_short Electrochemical Detection of ompA Gene of C. sakazakii Based on Glucose-Oxidase-Mimicking Nanotags of Gold-Nanoparticles-Doped Copper Metal-organic Frameworks
title_sort electrochemical detection of ompa gene of c. sakazakii based on glucose-oxidase-mimicking nanotags of gold-nanoparticles-doped copper metal-organic frameworks
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10181677/
https://www.ncbi.nlm.nih.gov/pubmed/37177600
http://dx.doi.org/10.3390/s23094396
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