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A Trypanosoma cruzi Genome Tandem Repetitive Satellite DNA Sequence as a Molecular Marker for a LAMP Assay for Diagnosing Chagas' Disease

Chagas' disease is a neglected tropical disease caused by Trypanosoma cruzi which is endemic throughout Latin America and is spread by worldwide migration. Diagnosis is currently limited to serological and molecular techniques having variations regarding their sensitivity and specificity. This...

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Autores principales: Ordóñez, Diego, Fernández-Soto, Pedro, Fernández-Martín, Ana M., Crego-Vicente, Beatriz, Febrer-Sendra, Begoña, Diego, Juan García-Bernalt, Vicente, Belén, López-Abán, Julio, Belhassen-García, Moncef, Muro, Antonio, Patarroyo, Manuel A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7060435/
https://www.ncbi.nlm.nih.gov/pubmed/32184904
http://dx.doi.org/10.1155/2020/8074314
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author Ordóñez, Diego
Fernández-Soto, Pedro
Fernández-Martín, Ana M.
Crego-Vicente, Beatriz
Febrer-Sendra, Begoña
Diego, Juan García-Bernalt
Vicente, Belén
López-Abán, Julio
Belhassen-García, Moncef
Muro, Antonio
Patarroyo, Manuel A.
author_facet Ordóñez, Diego
Fernández-Soto, Pedro
Fernández-Martín, Ana M.
Crego-Vicente, Beatriz
Febrer-Sendra, Begoña
Diego, Juan García-Bernalt
Vicente, Belén
López-Abán, Julio
Belhassen-García, Moncef
Muro, Antonio
Patarroyo, Manuel A.
author_sort Ordóñez, Diego
collection PubMed
description Chagas' disease is a neglected tropical disease caused by Trypanosoma cruzi which is endemic throughout Latin America and is spread by worldwide migration. Diagnosis is currently limited to serological and molecular techniques having variations regarding their sensitivity and specificity. This work was aimed at developing a new sensitive, applicable, and cost-effective molecular diagnosis technique for loop-mediated isothermal amplification-based detection of T. cruzi (Tc-LAMP). The results led to determining a highly homologous satellite repeat region (231 bp) among parasite strains as a molecular marker for diagnosing the disease. Tc-LAMP was performed correctly for detecting parasite DNA (5 fg for the CL Brener strain and 50 fg for the DM28, TcVI, and TcI strains). Assay results proved negative for DNA from 16 helminth species and 7 protozoa, including Leishmania spp. Tc-LAMP based on the highly repeated T. cruzi satellite region is thus proposed as an important alternative for diagnosing T. cruzi infection, overcoming other methods' limitations such as their analytic capability, speed, and requiring specialized equipment or highly trained personnel. Tc-LAMP could be easily adapted for point-of-care testing in areas having limited resources.
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spelling pubmed-70604352020-03-17 A Trypanosoma cruzi Genome Tandem Repetitive Satellite DNA Sequence as a Molecular Marker for a LAMP Assay for Diagnosing Chagas' Disease Ordóñez, Diego Fernández-Soto, Pedro Fernández-Martín, Ana M. Crego-Vicente, Beatriz Febrer-Sendra, Begoña Diego, Juan García-Bernalt Vicente, Belén López-Abán, Julio Belhassen-García, Moncef Muro, Antonio Patarroyo, Manuel A. Dis Markers Research Article Chagas' disease is a neglected tropical disease caused by Trypanosoma cruzi which is endemic throughout Latin America and is spread by worldwide migration. Diagnosis is currently limited to serological and molecular techniques having variations regarding their sensitivity and specificity. This work was aimed at developing a new sensitive, applicable, and cost-effective molecular diagnosis technique for loop-mediated isothermal amplification-based detection of T. cruzi (Tc-LAMP). The results led to determining a highly homologous satellite repeat region (231 bp) among parasite strains as a molecular marker for diagnosing the disease. Tc-LAMP was performed correctly for detecting parasite DNA (5 fg for the CL Brener strain and 50 fg for the DM28, TcVI, and TcI strains). Assay results proved negative for DNA from 16 helminth species and 7 protozoa, including Leishmania spp. Tc-LAMP based on the highly repeated T. cruzi satellite region is thus proposed as an important alternative for diagnosing T. cruzi infection, overcoming other methods' limitations such as their analytic capability, speed, and requiring specialized equipment or highly trained personnel. Tc-LAMP could be easily adapted for point-of-care testing in areas having limited resources. Hindawi 2020-02-22 /pmc/articles/PMC7060435/ /pubmed/32184904 http://dx.doi.org/10.1155/2020/8074314 Text en Copyright © 2020 Diego Ordóñez et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Ordóñez, Diego
Fernández-Soto, Pedro
Fernández-Martín, Ana M.
Crego-Vicente, Beatriz
Febrer-Sendra, Begoña
Diego, Juan García-Bernalt
Vicente, Belén
López-Abán, Julio
Belhassen-García, Moncef
Muro, Antonio
Patarroyo, Manuel A.
A Trypanosoma cruzi Genome Tandem Repetitive Satellite DNA Sequence as a Molecular Marker for a LAMP Assay for Diagnosing Chagas' Disease
title A Trypanosoma cruzi Genome Tandem Repetitive Satellite DNA Sequence as a Molecular Marker for a LAMP Assay for Diagnosing Chagas' Disease
title_full A Trypanosoma cruzi Genome Tandem Repetitive Satellite DNA Sequence as a Molecular Marker for a LAMP Assay for Diagnosing Chagas' Disease
title_fullStr A Trypanosoma cruzi Genome Tandem Repetitive Satellite DNA Sequence as a Molecular Marker for a LAMP Assay for Diagnosing Chagas' Disease
title_full_unstemmed A Trypanosoma cruzi Genome Tandem Repetitive Satellite DNA Sequence as a Molecular Marker for a LAMP Assay for Diagnosing Chagas' Disease
title_short A Trypanosoma cruzi Genome Tandem Repetitive Satellite DNA Sequence as a Molecular Marker for a LAMP Assay for Diagnosing Chagas' Disease
title_sort trypanosoma cruzi genome tandem repetitive satellite dna sequence as a molecular marker for a lamp assay for diagnosing chagas' disease
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7060435/
https://www.ncbi.nlm.nih.gov/pubmed/32184904
http://dx.doi.org/10.1155/2020/8074314
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