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Nanopore Sequencing for Mycobacterium tuberculosis: a Critical Review of the Literature, New Developments, and Future Opportunities

The next-generation, short-read sequencing technologies that generate comprehensive, whole-genome data with single nucleotide resolution have already advanced tuberculosis diagnosis, treatment, surveillance, and source investigation. Their high costs, tedious and lengthy processes, and large equipme...

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Autores principales: Dippenaar, Anzaan, Goossens, Sander N., Grobbelaar, Melanie, Oostvogels, Selien, Cuypers, Bart, Laukens, Kris, Meehan, Conor J., Warren, Robin M., van Rie, Annelies
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8769739/
https://www.ncbi.nlm.nih.gov/pubmed/34133895
http://dx.doi.org/10.1128/JCM.00646-21
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author Dippenaar, Anzaan
Goossens, Sander N.
Grobbelaar, Melanie
Oostvogels, Selien
Cuypers, Bart
Laukens, Kris
Meehan, Conor J.
Warren, Robin M.
van Rie, Annelies
author_facet Dippenaar, Anzaan
Goossens, Sander N.
Grobbelaar, Melanie
Oostvogels, Selien
Cuypers, Bart
Laukens, Kris
Meehan, Conor J.
Warren, Robin M.
van Rie, Annelies
author_sort Dippenaar, Anzaan
collection PubMed
description The next-generation, short-read sequencing technologies that generate comprehensive, whole-genome data with single nucleotide resolution have already advanced tuberculosis diagnosis, treatment, surveillance, and source investigation. Their high costs, tedious and lengthy processes, and large equipment remain major hurdles for research use in high tuberculosis burden countries and implementation into routine care. The portable next-generation sequencing devices developed by Oxford Nanopore Technologies (ONT) are attractive alternatives due to their long-read sequence capability, compact low-cost hardware, and continued improvements in accuracy and throughput. A systematic review of the published literature demonstrated limited uptake of ONT sequencing in tuberculosis research and clinical care. Of the 12 eligible articles presenting ONT sequencing data on at least one Mycobacterium tuberculosis sample, four addressed software development for long-read ONT sequencing data with potential applications for M. tuberculosis. Only eight studies presented results of ONT sequencing of M. tuberculosis, of which five performed whole-genome and three did targeted sequencing. Based on these findings, we summarize the standard processes, reflect on the current limitations of ONT sequencing technology, and the research needed to overcome the main hurdles. The low capital cost, portable nature and continued improvement in the performance of ONT sequencing make it an attractive option for sequencing for research and clinical care, but limited data are available on its application in the tuberculosis field. Important research investment is needed to unleash the full potential of ONT sequencing for tuberculosis research and care.
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spelling pubmed-87697392022-02-09 Nanopore Sequencing for Mycobacterium tuberculosis: a Critical Review of the Literature, New Developments, and Future Opportunities Dippenaar, Anzaan Goossens, Sander N. Grobbelaar, Melanie Oostvogels, Selien Cuypers, Bart Laukens, Kris Meehan, Conor J. Warren, Robin M. van Rie, Annelies J Clin Microbiol Minireview The next-generation, short-read sequencing technologies that generate comprehensive, whole-genome data with single nucleotide resolution have already advanced tuberculosis diagnosis, treatment, surveillance, and source investigation. Their high costs, tedious and lengthy processes, and large equipment remain major hurdles for research use in high tuberculosis burden countries and implementation into routine care. The portable next-generation sequencing devices developed by Oxford Nanopore Technologies (ONT) are attractive alternatives due to their long-read sequence capability, compact low-cost hardware, and continued improvements in accuracy and throughput. A systematic review of the published literature demonstrated limited uptake of ONT sequencing in tuberculosis research and clinical care. Of the 12 eligible articles presenting ONT sequencing data on at least one Mycobacterium tuberculosis sample, four addressed software development for long-read ONT sequencing data with potential applications for M. tuberculosis. Only eight studies presented results of ONT sequencing of M. tuberculosis, of which five performed whole-genome and three did targeted sequencing. Based on these findings, we summarize the standard processes, reflect on the current limitations of ONT sequencing technology, and the research needed to overcome the main hurdles. The low capital cost, portable nature and continued improvement in the performance of ONT sequencing make it an attractive option for sequencing for research and clinical care, but limited data are available on its application in the tuberculosis field. Important research investment is needed to unleash the full potential of ONT sequencing for tuberculosis research and care. American Society for Microbiology 2022-01-19 /pmc/articles/PMC8769739/ /pubmed/34133895 http://dx.doi.org/10.1128/JCM.00646-21 Text en Copyright © 2022 Dippenaar et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Minireview
Dippenaar, Anzaan
Goossens, Sander N.
Grobbelaar, Melanie
Oostvogels, Selien
Cuypers, Bart
Laukens, Kris
Meehan, Conor J.
Warren, Robin M.
van Rie, Annelies
Nanopore Sequencing for Mycobacterium tuberculosis: a Critical Review of the Literature, New Developments, and Future Opportunities
title Nanopore Sequencing for Mycobacterium tuberculosis: a Critical Review of the Literature, New Developments, and Future Opportunities
title_full Nanopore Sequencing for Mycobacterium tuberculosis: a Critical Review of the Literature, New Developments, and Future Opportunities
title_fullStr Nanopore Sequencing for Mycobacterium tuberculosis: a Critical Review of the Literature, New Developments, and Future Opportunities
title_full_unstemmed Nanopore Sequencing for Mycobacterium tuberculosis: a Critical Review of the Literature, New Developments, and Future Opportunities
title_short Nanopore Sequencing for Mycobacterium tuberculosis: a Critical Review of the Literature, New Developments, and Future Opportunities
title_sort nanopore sequencing for mycobacterium tuberculosis: a critical review of the literature, new developments, and future opportunities
topic Minireview
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8769739/
https://www.ncbi.nlm.nih.gov/pubmed/34133895
http://dx.doi.org/10.1128/JCM.00646-21
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