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A prospective multicentre diagnostic accuracy study for the Truenat tuberculosis assays

BACKGROUND: Bringing reliable and accurate tuberculosis (TB) diagnosis closer to patients is a key priority for global TB control. Molbio Diagnostics have developed the Truenat point-of-care molecular assays for detection of TB and rifampicin (RIF) resistance. METHODS: We conducted a prospective mul...

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Autores principales: Penn-Nicholson, Adam, Gomathi, Sivaramakrishnan N., Ugarte-Gil, Cesar, Meaza, Abyot, Lavu, Evelyn, Patel, Pranav, Choudhury, Bandana, Rodrigues, Camilla, Chadha, Sarabjit, Kazi, Mubin, Macé, Aurélien, Nabeta, Pamela, Boehme, Catharina, Gangakhedkar, Raman R., Sarin, Sanjay, Tesfaye, Ephrem, Gotuzzo, Eduardo, du Cros, Philipp, Tripathy, Srikanth, Ruhwald, Morten, Singh, Manjula, Denkinger, Claudia M., Schumacher, Samuel G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: European Respiratory Society 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8607906/
https://www.ncbi.nlm.nih.gov/pubmed/34049948
http://dx.doi.org/10.1183/13993003.00526-2021
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author Penn-Nicholson, Adam
Gomathi, Sivaramakrishnan N.
Ugarte-Gil, Cesar
Meaza, Abyot
Lavu, Evelyn
Patel, Pranav
Choudhury, Bandana
Rodrigues, Camilla
Chadha, Sarabjit
Kazi, Mubin
Macé, Aurélien
Nabeta, Pamela
Boehme, Catharina
Gangakhedkar, Raman R.
Sarin, Sanjay
Tesfaye, Ephrem
Gotuzzo, Eduardo
du Cros, Philipp
Tripathy, Srikanth
Ruhwald, Morten
Singh, Manjula
Denkinger, Claudia M.
Schumacher, Samuel G.
author_facet Penn-Nicholson, Adam
Gomathi, Sivaramakrishnan N.
Ugarte-Gil, Cesar
Meaza, Abyot
Lavu, Evelyn
Patel, Pranav
Choudhury, Bandana
Rodrigues, Camilla
Chadha, Sarabjit
Kazi, Mubin
Macé, Aurélien
Nabeta, Pamela
Boehme, Catharina
Gangakhedkar, Raman R.
Sarin, Sanjay
Tesfaye, Ephrem
Gotuzzo, Eduardo
du Cros, Philipp
Tripathy, Srikanth
Ruhwald, Morten
Singh, Manjula
Denkinger, Claudia M.
Schumacher, Samuel G.
author_sort Penn-Nicholson, Adam
collection PubMed
description BACKGROUND: Bringing reliable and accurate tuberculosis (TB) diagnosis closer to patients is a key priority for global TB control. Molbio Diagnostics have developed the Truenat point-of-care molecular assays for detection of TB and rifampicin (RIF) resistance. METHODS: We conducted a prospective multicentre diagnostic accuracy study at 19 primary healthcare centres and seven reference laboratories in Peru, India, Ethiopia and Papua New Guinea to estimate the diagnostic accuracy of the point-of-care Truenat MTB, MTB Plus and MTB-RIF Dx assays for pulmonary TB using culture and phenotypic drug susceptibility testing as the reference standard, compared with Xpert MTB/RIF or Ultra. RESULTS: Of 1807 enrolled participants with TB signs/symptoms, 24% were culture-positive for Mycobacterium tuberculosis, of which 15% were RIF-resistant. In microscopy centres, the pooled sensitivity of Truenat MTB and Truenat MTB Plus was 73% (95% CI 67–78%) and 80% (95% CI 75–84%), respectively. Among smear-negative specimens, sensitivities were 36% (95% CI 27–47%) and 47% (95% CI 37–58%), respectively. Sensitivity of Truenat MTB-RIF was 84% (95% CI 62–95%). Truenat assays showed high specificity. Head-to-head comparison in the central reference laboratories suggested that the Truenat assays have similar performance to Xpert MTB/RIF. CONCLUSION: We found the performance of Molbio's Truenat MTB, MTB Plus and MTB-RIF Dx assays to be comparable to that of the Xpert MTB/RIF assay. Performing the Truenat tests in primary healthcare centres with very limited infrastructure was feasible. These data supported the development of a World Health Organization policy recommendation of the Molbio assays.
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spelling pubmed-86079062021-11-23 A prospective multicentre diagnostic accuracy study for the Truenat tuberculosis assays Penn-Nicholson, Adam Gomathi, Sivaramakrishnan N. Ugarte-Gil, Cesar Meaza, Abyot Lavu, Evelyn Patel, Pranav Choudhury, Bandana Rodrigues, Camilla Chadha, Sarabjit Kazi, Mubin Macé, Aurélien Nabeta, Pamela Boehme, Catharina Gangakhedkar, Raman R. Sarin, Sanjay Tesfaye, Ephrem Gotuzzo, Eduardo du Cros, Philipp Tripathy, Srikanth Ruhwald, Morten Singh, Manjula Denkinger, Claudia M. Schumacher, Samuel G. Eur Respir J Original Research Articles BACKGROUND: Bringing reliable and accurate tuberculosis (TB) diagnosis closer to patients is a key priority for global TB control. Molbio Diagnostics have developed the Truenat point-of-care molecular assays for detection of TB and rifampicin (RIF) resistance. METHODS: We conducted a prospective multicentre diagnostic accuracy study at 19 primary healthcare centres and seven reference laboratories in Peru, India, Ethiopia and Papua New Guinea to estimate the diagnostic accuracy of the point-of-care Truenat MTB, MTB Plus and MTB-RIF Dx assays for pulmonary TB using culture and phenotypic drug susceptibility testing as the reference standard, compared with Xpert MTB/RIF or Ultra. RESULTS: Of 1807 enrolled participants with TB signs/symptoms, 24% were culture-positive for Mycobacterium tuberculosis, of which 15% were RIF-resistant. In microscopy centres, the pooled sensitivity of Truenat MTB and Truenat MTB Plus was 73% (95% CI 67–78%) and 80% (95% CI 75–84%), respectively. Among smear-negative specimens, sensitivities were 36% (95% CI 27–47%) and 47% (95% CI 37–58%), respectively. Sensitivity of Truenat MTB-RIF was 84% (95% CI 62–95%). Truenat assays showed high specificity. Head-to-head comparison in the central reference laboratories suggested that the Truenat assays have similar performance to Xpert MTB/RIF. CONCLUSION: We found the performance of Molbio's Truenat MTB, MTB Plus and MTB-RIF Dx assays to be comparable to that of the Xpert MTB/RIF assay. Performing the Truenat tests in primary healthcare centres with very limited infrastructure was feasible. These data supported the development of a World Health Organization policy recommendation of the Molbio assays. European Respiratory Society 2021-11-04 /pmc/articles/PMC8607906/ /pubmed/34049948 http://dx.doi.org/10.1183/13993003.00526-2021 Text en Copyright ©The authors 2021. https://creativecommons.org/licenses/by/4.0/This version is distributed under the terms of the Creative Commons Attribution Licence 4.0.
spellingShingle Original Research Articles
Penn-Nicholson, Adam
Gomathi, Sivaramakrishnan N.
Ugarte-Gil, Cesar
Meaza, Abyot
Lavu, Evelyn
Patel, Pranav
Choudhury, Bandana
Rodrigues, Camilla
Chadha, Sarabjit
Kazi, Mubin
Macé, Aurélien
Nabeta, Pamela
Boehme, Catharina
Gangakhedkar, Raman R.
Sarin, Sanjay
Tesfaye, Ephrem
Gotuzzo, Eduardo
du Cros, Philipp
Tripathy, Srikanth
Ruhwald, Morten
Singh, Manjula
Denkinger, Claudia M.
Schumacher, Samuel G.
A prospective multicentre diagnostic accuracy study for the Truenat tuberculosis assays
title A prospective multicentre diagnostic accuracy study for the Truenat tuberculosis assays
title_full A prospective multicentre diagnostic accuracy study for the Truenat tuberculosis assays
title_fullStr A prospective multicentre diagnostic accuracy study for the Truenat tuberculosis assays
title_full_unstemmed A prospective multicentre diagnostic accuracy study for the Truenat tuberculosis assays
title_short A prospective multicentre diagnostic accuracy study for the Truenat tuberculosis assays
title_sort prospective multicentre diagnostic accuracy study for the truenat tuberculosis assays
topic Original Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8607906/
https://www.ncbi.nlm.nih.gov/pubmed/34049948
http://dx.doi.org/10.1183/13993003.00526-2021
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