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Development of a Magnetic Electrochemical Bar Code Array for Point Mutation Detection in the H5N1 Neuraminidase Gene

Since its first official detection in the Guangdong province of China in 1996, the highly pathogenic avian influenza virus of H5N1 subtype (HPAI H5N1) has reportedly been the cause of outbreaks in birds in more than 60 countries, 24 of which were European. The main issue is still to develop effectiv...

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Autores principales: Krejcova, Ludmila, Hynek, David, Kopel, Pavel, Merlos Rodrigo, Miguel Angel, Adam, Vojtech, Hubalek, Jaromir, Babula, Petr, Trnkova, Libuse, Kizek, Rene
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3738958/
https://www.ncbi.nlm.nih.gov/pubmed/23860384
http://dx.doi.org/10.3390/v5071719
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author Krejcova, Ludmila
Hynek, David
Kopel, Pavel
Merlos Rodrigo, Miguel Angel
Adam, Vojtech
Hubalek, Jaromir
Babula, Petr
Trnkova, Libuse
Kizek, Rene
author_facet Krejcova, Ludmila
Hynek, David
Kopel, Pavel
Merlos Rodrigo, Miguel Angel
Adam, Vojtech
Hubalek, Jaromir
Babula, Petr
Trnkova, Libuse
Kizek, Rene
author_sort Krejcova, Ludmila
collection PubMed
description Since its first official detection in the Guangdong province of China in 1996, the highly pathogenic avian influenza virus of H5N1 subtype (HPAI H5N1) has reportedly been the cause of outbreaks in birds in more than 60 countries, 24 of which were European. The main issue is still to develop effective antiviral drugs. In this case, single point mutation in the neuraminidase gene, which causes resistance to antiviral drug and is, therefore, subjected to many studies including ours, was observed. In this study, we developed magnetic electrochemical bar code array for detection of single point mutations (mismatches in up to four nucleotides) in H5N1 neuraminidase gene. Paramagnetic particles Dynabeads® with covalently bound oligo (dT)(25) were used as a tool for isolation of complementary H5N1 chains (H5N1 Zhejin, China and Aichi). For detection of H5N1 chains, oligonucleotide chains of lengths of 12 (+5 adenine) or 28 (+5 adenine) bp labeled with quantum dots (CdS, ZnS and/or PbS) were used. Individual probes hybridized to target molecules specifically with efficiency higher than 60%. The obtained signals identified mutations present in the sequence. Suggested experimental procedure allows obtaining further information from the redox signals of nucleic acids. Moreover, the used biosensor exhibits sequence specificity and low limits of detection of subnanogram quantities of target nucleic acids.
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spelling pubmed-37389582013-08-09 Development of a Magnetic Electrochemical Bar Code Array for Point Mutation Detection in the H5N1 Neuraminidase Gene Krejcova, Ludmila Hynek, David Kopel, Pavel Merlos Rodrigo, Miguel Angel Adam, Vojtech Hubalek, Jaromir Babula, Petr Trnkova, Libuse Kizek, Rene Viruses Article Since its first official detection in the Guangdong province of China in 1996, the highly pathogenic avian influenza virus of H5N1 subtype (HPAI H5N1) has reportedly been the cause of outbreaks in birds in more than 60 countries, 24 of which were European. The main issue is still to develop effective antiviral drugs. In this case, single point mutation in the neuraminidase gene, which causes resistance to antiviral drug and is, therefore, subjected to many studies including ours, was observed. In this study, we developed magnetic electrochemical bar code array for detection of single point mutations (mismatches in up to four nucleotides) in H5N1 neuraminidase gene. Paramagnetic particles Dynabeads® with covalently bound oligo (dT)(25) were used as a tool for isolation of complementary H5N1 chains (H5N1 Zhejin, China and Aichi). For detection of H5N1 chains, oligonucleotide chains of lengths of 12 (+5 adenine) or 28 (+5 adenine) bp labeled with quantum dots (CdS, ZnS and/or PbS) were used. Individual probes hybridized to target molecules specifically with efficiency higher than 60%. The obtained signals identified mutations present in the sequence. Suggested experimental procedure allows obtaining further information from the redox signals of nucleic acids. Moreover, the used biosensor exhibits sequence specificity and low limits of detection of subnanogram quantities of target nucleic acids. MDPI 2013-07-15 /pmc/articles/PMC3738958/ /pubmed/23860384 http://dx.doi.org/10.3390/v5071719 Text en © 2013 by the authors; licensee MDPI, Basel, Switzerland. http://creativecommons.org/licenses/by/3.0/ This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Krejcova, Ludmila
Hynek, David
Kopel, Pavel
Merlos Rodrigo, Miguel Angel
Adam, Vojtech
Hubalek, Jaromir
Babula, Petr
Trnkova, Libuse
Kizek, Rene
Development of a Magnetic Electrochemical Bar Code Array for Point Mutation Detection in the H5N1 Neuraminidase Gene
title Development of a Magnetic Electrochemical Bar Code Array for Point Mutation Detection in the H5N1 Neuraminidase Gene
title_full Development of a Magnetic Electrochemical Bar Code Array for Point Mutation Detection in the H5N1 Neuraminidase Gene
title_fullStr Development of a Magnetic Electrochemical Bar Code Array for Point Mutation Detection in the H5N1 Neuraminidase Gene
title_full_unstemmed Development of a Magnetic Electrochemical Bar Code Array for Point Mutation Detection in the H5N1 Neuraminidase Gene
title_short Development of a Magnetic Electrochemical Bar Code Array for Point Mutation Detection in the H5N1 Neuraminidase Gene
title_sort development of a magnetic electrochemical bar code array for point mutation detection in the h5n1 neuraminidase gene
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3738958/
https://www.ncbi.nlm.nih.gov/pubmed/23860384
http://dx.doi.org/10.3390/v5071719
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