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A Sensitive and Selective Label-Free Electrochemical DNA Biosensor for the Detection of Specific Dengue Virus Serotype 3 Sequences

Dengue fever is the most prevalent vector-borne disease in the world, with nearly 100 million people infected every year. Early diagnosis and identification of the pathogen are crucial steps for the treatment and for prevention of the disease, mainly in areas where the co-circulation of different se...

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Autores principales: Oliveira, Natália, Souza, Elaine, Ferreira, Danielly, Zanforlin, Deborah, Bezerra, Wessulla, Borba, Maria Amélia, Arruda, Mariana, Lopes, Kennya, Nascimento, Gustavo, Martins, Danyelly, Cordeiro, Marli, Lima-Filho, José
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4541844/
https://www.ncbi.nlm.nih.gov/pubmed/26140346
http://dx.doi.org/10.3390/s150715562
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author Oliveira, Natália
Souza, Elaine
Ferreira, Danielly
Zanforlin, Deborah
Bezerra, Wessulla
Borba, Maria Amélia
Arruda, Mariana
Lopes, Kennya
Nascimento, Gustavo
Martins, Danyelly
Cordeiro, Marli
Lima-Filho, José
author_facet Oliveira, Natália
Souza, Elaine
Ferreira, Danielly
Zanforlin, Deborah
Bezerra, Wessulla
Borba, Maria Amélia
Arruda, Mariana
Lopes, Kennya
Nascimento, Gustavo
Martins, Danyelly
Cordeiro, Marli
Lima-Filho, José
author_sort Oliveira, Natália
collection PubMed
description Dengue fever is the most prevalent vector-borne disease in the world, with nearly 100 million people infected every year. Early diagnosis and identification of the pathogen are crucial steps for the treatment and for prevention of the disease, mainly in areas where the co-circulation of different serotypes is common, increasing the outcome of dengue hemorrhagic fever (DHF) and dengue shock syndrome (DSS). Due to the lack of fast and inexpensive methods available for the identification of dengue serotypes, herein we report the development of an electrochemical DNA biosensor for the detection of sequences of dengue virus serotype 3 (DENV-3). DENV-3 probe was designed using bioinformatics software and differential pulse voltammetry (DPV) was used for electrochemical analysis. The results showed that a 22-m sequence was the best DNA probe for the identification of DENV-3. The optimum concentration of the DNA probe immobilized onto the electrode surface is 500 nM and a low detection limit of the system (3.09 nM). Moreover, this system allows selective detection of DENV-3 sequences in buffer and human serum solutions. Therefore, the application of DNA biosensors for diagnostics at the molecular level may contribute to future advances in the implementation of specific, effective and rapid detection methods for the diagnosis dengue viruses.
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spelling pubmed-45418442015-08-26 A Sensitive and Selective Label-Free Electrochemical DNA Biosensor for the Detection of Specific Dengue Virus Serotype 3 Sequences Oliveira, Natália Souza, Elaine Ferreira, Danielly Zanforlin, Deborah Bezerra, Wessulla Borba, Maria Amélia Arruda, Mariana Lopes, Kennya Nascimento, Gustavo Martins, Danyelly Cordeiro, Marli Lima-Filho, José Sensors (Basel) Article Dengue fever is the most prevalent vector-borne disease in the world, with nearly 100 million people infected every year. Early diagnosis and identification of the pathogen are crucial steps for the treatment and for prevention of the disease, mainly in areas where the co-circulation of different serotypes is common, increasing the outcome of dengue hemorrhagic fever (DHF) and dengue shock syndrome (DSS). Due to the lack of fast and inexpensive methods available for the identification of dengue serotypes, herein we report the development of an electrochemical DNA biosensor for the detection of sequences of dengue virus serotype 3 (DENV-3). DENV-3 probe was designed using bioinformatics software and differential pulse voltammetry (DPV) was used for electrochemical analysis. The results showed that a 22-m sequence was the best DNA probe for the identification of DENV-3. The optimum concentration of the DNA probe immobilized onto the electrode surface is 500 nM and a low detection limit of the system (3.09 nM). Moreover, this system allows selective detection of DENV-3 sequences in buffer and human serum solutions. Therefore, the application of DNA biosensors for diagnostics at the molecular level may contribute to future advances in the implementation of specific, effective and rapid detection methods for the diagnosis dengue viruses. MDPI 2015-07-01 /pmc/articles/PMC4541844/ /pubmed/26140346 http://dx.doi.org/10.3390/s150715562 Text en © 2015 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Oliveira, Natália
Souza, Elaine
Ferreira, Danielly
Zanforlin, Deborah
Bezerra, Wessulla
Borba, Maria Amélia
Arruda, Mariana
Lopes, Kennya
Nascimento, Gustavo
Martins, Danyelly
Cordeiro, Marli
Lima-Filho, José
A Sensitive and Selective Label-Free Electrochemical DNA Biosensor for the Detection of Specific Dengue Virus Serotype 3 Sequences
title A Sensitive and Selective Label-Free Electrochemical DNA Biosensor for the Detection of Specific Dengue Virus Serotype 3 Sequences
title_full A Sensitive and Selective Label-Free Electrochemical DNA Biosensor for the Detection of Specific Dengue Virus Serotype 3 Sequences
title_fullStr A Sensitive and Selective Label-Free Electrochemical DNA Biosensor for the Detection of Specific Dengue Virus Serotype 3 Sequences
title_full_unstemmed A Sensitive and Selective Label-Free Electrochemical DNA Biosensor for the Detection of Specific Dengue Virus Serotype 3 Sequences
title_short A Sensitive and Selective Label-Free Electrochemical DNA Biosensor for the Detection of Specific Dengue Virus Serotype 3 Sequences
title_sort sensitive and selective label-free electrochemical dna biosensor for the detection of specific dengue virus serotype 3 sequences
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4541844/
https://www.ncbi.nlm.nih.gov/pubmed/26140346
http://dx.doi.org/10.3390/s150715562
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