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Combined Species Identification, Genotyping, and Drug Resistance Detection of Mycobacterium tuberculosis Cultures by MLPA on a Bead-Based Array

The population structure of Mycobacterium tuberculosis is typically clonal therefore genotypic lineages can be unequivocally identified by characteristic markers such as mutations or genomic deletions. In addition, drug resistance is mainly mediated by mutations. These issues make multiplexed detect...

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Autores principales: Bergval, Indra, Sengstake, Sarah, Brankova, Nadia, Levterova, Viktoria, Abadía, Edgar, Tadumaze, Nino, Bablishvili, Nino, Akhalaia, Maka, Tuin, Kiki, Schuitema, Anja, Panaiotov, Stefan, Bachiyska, Elizabeta, Kantardjiev, Todor, de Zwaan, Rina, Schürch, Anita, van Soolingen, Dick, van ‘t Hoog, Anja, Cobelens, Frank, Aspindzelashvili, Rusudan, Sola, Christophe, Klatser, Paul, Anthony, Richard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3423362/
https://www.ncbi.nlm.nih.gov/pubmed/22916230
http://dx.doi.org/10.1371/journal.pone.0043240
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author Bergval, Indra
Sengstake, Sarah
Brankova, Nadia
Levterova, Viktoria
Abadía, Edgar
Tadumaze, Nino
Bablishvili, Nino
Akhalaia, Maka
Tuin, Kiki
Schuitema, Anja
Panaiotov, Stefan
Bachiyska, Elizabeta
Kantardjiev, Todor
de Zwaan, Rina
Schürch, Anita
van Soolingen, Dick
van ‘t Hoog, Anja
Cobelens, Frank
Aspindzelashvili, Rusudan
Sola, Christophe
Klatser, Paul
Anthony, Richard
author_facet Bergval, Indra
Sengstake, Sarah
Brankova, Nadia
Levterova, Viktoria
Abadía, Edgar
Tadumaze, Nino
Bablishvili, Nino
Akhalaia, Maka
Tuin, Kiki
Schuitema, Anja
Panaiotov, Stefan
Bachiyska, Elizabeta
Kantardjiev, Todor
de Zwaan, Rina
Schürch, Anita
van Soolingen, Dick
van ‘t Hoog, Anja
Cobelens, Frank
Aspindzelashvili, Rusudan
Sola, Christophe
Klatser, Paul
Anthony, Richard
author_sort Bergval, Indra
collection PubMed
description The population structure of Mycobacterium tuberculosis is typically clonal therefore genotypic lineages can be unequivocally identified by characteristic markers such as mutations or genomic deletions. In addition, drug resistance is mainly mediated by mutations. These issues make multiplexed detection of selected mutations potentially a very powerful tool to characterise Mycobacterium tuberculosis. We used Multiplex Ligation-dependent Probe Amplification (MLPA) to screen for dispersed mutations, which can be successfully applied to Mycobacterium tuberculosis as was previously shown. Here we selected 47 discriminative and informative markers and designed MLPA probes accordingly to allow analysis with a liquid bead array and robust reader (Luminex MAGPIX technology). To validate the bead-based MLPA, we screened a panel of 88 selected strains, previously characterised by other methods with the developed multiplex assay using automated positive and negative calling. In total 3059 characteristics were screened and 3034 (99.2%) were consistent with previous molecular characterizations, of which 2056 (67.2%) were directly supported by other molecular methods, and 978 (32.0%) were consistent with but not directly supported by previous molecular characterizations. Results directly conflicting or inconsistent with previous methods, were obtained for 25 (0.8%) of the characteristics tested. Here we report the validation of the bead-based MLPA and demonstrate its potential to simultaneously identify a range of drug resistance markers, discriminate the species within the Mycobacterium tuberculosis complex, determine the genetic lineage and detect and identify the clinically most relevant non-tuberculous mycobacterial species. The detection of multiple genetic markers in clinically derived Mycobacterium tuberculosis strains with a multiplex assay could reduce the number of TB-dedicated screening methods needed for full characterization. Additionally, as a proportion of the markers screened are specific to certain Mycobacterium tuberculosis lineages each profile can be checked for internal consistency. Strain characterization can allow selection of appropriate treatment and thereby improve treatment outcome and patient management.
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spelling pubmed-34233622012-08-22 Combined Species Identification, Genotyping, and Drug Resistance Detection of Mycobacterium tuberculosis Cultures by MLPA on a Bead-Based Array Bergval, Indra Sengstake, Sarah Brankova, Nadia Levterova, Viktoria Abadía, Edgar Tadumaze, Nino Bablishvili, Nino Akhalaia, Maka Tuin, Kiki Schuitema, Anja Panaiotov, Stefan Bachiyska, Elizabeta Kantardjiev, Todor de Zwaan, Rina Schürch, Anita van Soolingen, Dick van ‘t Hoog, Anja Cobelens, Frank Aspindzelashvili, Rusudan Sola, Christophe Klatser, Paul Anthony, Richard PLoS One Research Article The population structure of Mycobacterium tuberculosis is typically clonal therefore genotypic lineages can be unequivocally identified by characteristic markers such as mutations or genomic deletions. In addition, drug resistance is mainly mediated by mutations. These issues make multiplexed detection of selected mutations potentially a very powerful tool to characterise Mycobacterium tuberculosis. We used Multiplex Ligation-dependent Probe Amplification (MLPA) to screen for dispersed mutations, which can be successfully applied to Mycobacterium tuberculosis as was previously shown. Here we selected 47 discriminative and informative markers and designed MLPA probes accordingly to allow analysis with a liquid bead array and robust reader (Luminex MAGPIX technology). To validate the bead-based MLPA, we screened a panel of 88 selected strains, previously characterised by other methods with the developed multiplex assay using automated positive and negative calling. In total 3059 characteristics were screened and 3034 (99.2%) were consistent with previous molecular characterizations, of which 2056 (67.2%) were directly supported by other molecular methods, and 978 (32.0%) were consistent with but not directly supported by previous molecular characterizations. Results directly conflicting or inconsistent with previous methods, were obtained for 25 (0.8%) of the characteristics tested. Here we report the validation of the bead-based MLPA and demonstrate its potential to simultaneously identify a range of drug resistance markers, discriminate the species within the Mycobacterium tuberculosis complex, determine the genetic lineage and detect and identify the clinically most relevant non-tuberculous mycobacterial species. The detection of multiple genetic markers in clinically derived Mycobacterium tuberculosis strains with a multiplex assay could reduce the number of TB-dedicated screening methods needed for full characterization. Additionally, as a proportion of the markers screened are specific to certain Mycobacterium tuberculosis lineages each profile can be checked for internal consistency. Strain characterization can allow selection of appropriate treatment and thereby improve treatment outcome and patient management. Public Library of Science 2012-08-20 /pmc/articles/PMC3423362/ /pubmed/22916230 http://dx.doi.org/10.1371/journal.pone.0043240 Text en © 2012 Bergval et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bergval, Indra
Sengstake, Sarah
Brankova, Nadia
Levterova, Viktoria
Abadía, Edgar
Tadumaze, Nino
Bablishvili, Nino
Akhalaia, Maka
Tuin, Kiki
Schuitema, Anja
Panaiotov, Stefan
Bachiyska, Elizabeta
Kantardjiev, Todor
de Zwaan, Rina
Schürch, Anita
van Soolingen, Dick
van ‘t Hoog, Anja
Cobelens, Frank
Aspindzelashvili, Rusudan
Sola, Christophe
Klatser, Paul
Anthony, Richard
Combined Species Identification, Genotyping, and Drug Resistance Detection of Mycobacterium tuberculosis Cultures by MLPA on a Bead-Based Array
title Combined Species Identification, Genotyping, and Drug Resistance Detection of Mycobacterium tuberculosis Cultures by MLPA on a Bead-Based Array
title_full Combined Species Identification, Genotyping, and Drug Resistance Detection of Mycobacterium tuberculosis Cultures by MLPA on a Bead-Based Array
title_fullStr Combined Species Identification, Genotyping, and Drug Resistance Detection of Mycobacterium tuberculosis Cultures by MLPA on a Bead-Based Array
title_full_unstemmed Combined Species Identification, Genotyping, and Drug Resistance Detection of Mycobacterium tuberculosis Cultures by MLPA on a Bead-Based Array
title_short Combined Species Identification, Genotyping, and Drug Resistance Detection of Mycobacterium tuberculosis Cultures by MLPA on a Bead-Based Array
title_sort combined species identification, genotyping, and drug resistance detection of mycobacterium tuberculosis cultures by mlpa on a bead-based array
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3423362/
https://www.ncbi.nlm.nih.gov/pubmed/22916230
http://dx.doi.org/10.1371/journal.pone.0043240
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