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Transcriptional Blood Signatures Distinguish Pulmonary Tuberculosis, Pulmonary Sarcoidosis, Pneumonias and Lung Cancers

RATIONALE: New approaches to define factors underlying the immunopathogenesis of pulmonary diseases including sarcoidosis and tuberculosis are needed to develop new treatments and biomarkers. Comparing the blood transcriptional response of tuberculosis to other similar pulmonary diseases will advanc...

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Autores principales: Bloom, Chloe I., Graham, Christine M., Berry, Matthew P. R., Rozakeas, Fotini, Redford, Paul S., Wang, Yuanyuan, Xu, Zhaohui, Wilkinson, Katalin A., Wilkinson, Robert J., Kendrick, Yvonne, Devouassoux, Gilles, Ferry, Tristan, Miyara, Makoto, Bouvry, Diane, Dominique, Valeyre, Gorochov, Guy, Blankenship, Derek, Saadatian, Mitra, Vanhems, Phillip, Beynon, Huw, Vancheeswaran, Rama, Wickremasinghe, Melissa, Chaussabel, Damien, Banchereau, Jacques, Pascual, Virginia, Ho, Ling-pei, Lipman, Marc, O’Garra, Anne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3734176/
https://www.ncbi.nlm.nih.gov/pubmed/23940611
http://dx.doi.org/10.1371/journal.pone.0070630
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author Bloom, Chloe I.
Graham, Christine M.
Berry, Matthew P. R.
Rozakeas, Fotini
Redford, Paul S.
Wang, Yuanyuan
Xu, Zhaohui
Wilkinson, Katalin A.
Wilkinson, Robert J.
Kendrick, Yvonne
Devouassoux, Gilles
Ferry, Tristan
Miyara, Makoto
Bouvry, Diane
Dominique, Valeyre
Gorochov, Guy
Blankenship, Derek
Saadatian, Mitra
Vanhems, Phillip
Beynon, Huw
Vancheeswaran, Rama
Wickremasinghe, Melissa
Chaussabel, Damien
Banchereau, Jacques
Pascual, Virginia
Ho, Ling-pei
Lipman, Marc
O’Garra, Anne
author_facet Bloom, Chloe I.
Graham, Christine M.
Berry, Matthew P. R.
Rozakeas, Fotini
Redford, Paul S.
Wang, Yuanyuan
Xu, Zhaohui
Wilkinson, Katalin A.
Wilkinson, Robert J.
Kendrick, Yvonne
Devouassoux, Gilles
Ferry, Tristan
Miyara, Makoto
Bouvry, Diane
Dominique, Valeyre
Gorochov, Guy
Blankenship, Derek
Saadatian, Mitra
Vanhems, Phillip
Beynon, Huw
Vancheeswaran, Rama
Wickremasinghe, Melissa
Chaussabel, Damien
Banchereau, Jacques
Pascual, Virginia
Ho, Ling-pei
Lipman, Marc
O’Garra, Anne
author_sort Bloom, Chloe I.
collection PubMed
description RATIONALE: New approaches to define factors underlying the immunopathogenesis of pulmonary diseases including sarcoidosis and tuberculosis are needed to develop new treatments and biomarkers. Comparing the blood transcriptional response of tuberculosis to other similar pulmonary diseases will advance knowledge of disease pathways and help distinguish diseases with similar clinical presentations. OBJECTIVES: To determine the factors underlying the immunopathogenesis of the granulomatous diseases, sarcoidosis and tuberculosis, by comparing the blood transcriptional responses in these and other pulmonary diseases. METHODS: We compared whole blood genome-wide transcriptional profiles in pulmonary sarcoidosis, pulmonary tuberculosis, to community acquired pneumonia and primary lung cancer and healthy controls, before and after treatment, and in purified leucocyte populations. MEASUREMENTS AND MAIN RESULTS: An Interferon-inducible neutrophil-driven blood transcriptional signature was present in both sarcoidosis and tuberculosis, with a higher abundance and expression in tuberculosis. Heterogeneity of the sarcoidosis signature correlated significantly with disease activity. Transcriptional profiles in pneumonia and lung cancer revealed an over-abundance of inflammatory transcripts. After successful treatment the transcriptional activity in tuberculosis and pneumonia patients was significantly reduced. However the glucocorticoid-responsive sarcoidosis patients showed a significant increase in transcriptional activity. 144-blood transcripts were able to distinguish tuberculosis from other lung diseases and controls. CONCLUSIONS: Tuberculosis and sarcoidosis revealed similar blood transcriptional profiles, dominated by interferon-inducible transcripts, while pneumonia and lung cancer showed distinct signatures, dominated by inflammatory genes. There were also significant differences between tuberculosis and sarcoidosis in the degree of their transcriptional activity, the heterogeneity of their profiles and their transcriptional response to treatment.
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spelling pubmed-37341762013-08-12 Transcriptional Blood Signatures Distinguish Pulmonary Tuberculosis, Pulmonary Sarcoidosis, Pneumonias and Lung Cancers Bloom, Chloe I. Graham, Christine M. Berry, Matthew P. R. Rozakeas, Fotini Redford, Paul S. Wang, Yuanyuan Xu, Zhaohui Wilkinson, Katalin A. Wilkinson, Robert J. Kendrick, Yvonne Devouassoux, Gilles Ferry, Tristan Miyara, Makoto Bouvry, Diane Dominique, Valeyre Gorochov, Guy Blankenship, Derek Saadatian, Mitra Vanhems, Phillip Beynon, Huw Vancheeswaran, Rama Wickremasinghe, Melissa Chaussabel, Damien Banchereau, Jacques Pascual, Virginia Ho, Ling-pei Lipman, Marc O’Garra, Anne PLoS One Research Article RATIONALE: New approaches to define factors underlying the immunopathogenesis of pulmonary diseases including sarcoidosis and tuberculosis are needed to develop new treatments and biomarkers. Comparing the blood transcriptional response of tuberculosis to other similar pulmonary diseases will advance knowledge of disease pathways and help distinguish diseases with similar clinical presentations. OBJECTIVES: To determine the factors underlying the immunopathogenesis of the granulomatous diseases, sarcoidosis and tuberculosis, by comparing the blood transcriptional responses in these and other pulmonary diseases. METHODS: We compared whole blood genome-wide transcriptional profiles in pulmonary sarcoidosis, pulmonary tuberculosis, to community acquired pneumonia and primary lung cancer and healthy controls, before and after treatment, and in purified leucocyte populations. MEASUREMENTS AND MAIN RESULTS: An Interferon-inducible neutrophil-driven blood transcriptional signature was present in both sarcoidosis and tuberculosis, with a higher abundance and expression in tuberculosis. Heterogeneity of the sarcoidosis signature correlated significantly with disease activity. Transcriptional profiles in pneumonia and lung cancer revealed an over-abundance of inflammatory transcripts. After successful treatment the transcriptional activity in tuberculosis and pneumonia patients was significantly reduced. However the glucocorticoid-responsive sarcoidosis patients showed a significant increase in transcriptional activity. 144-blood transcripts were able to distinguish tuberculosis from other lung diseases and controls. CONCLUSIONS: Tuberculosis and sarcoidosis revealed similar blood transcriptional profiles, dominated by interferon-inducible transcripts, while pneumonia and lung cancer showed distinct signatures, dominated by inflammatory genes. There were also significant differences between tuberculosis and sarcoidosis in the degree of their transcriptional activity, the heterogeneity of their profiles and their transcriptional response to treatment. Public Library of Science 2013-08-05 /pmc/articles/PMC3734176/ /pubmed/23940611 http://dx.doi.org/10.1371/journal.pone.0070630 Text en © 2013 Bloom 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
Bloom, Chloe I.
Graham, Christine M.
Berry, Matthew P. R.
Rozakeas, Fotini
Redford, Paul S.
Wang, Yuanyuan
Xu, Zhaohui
Wilkinson, Katalin A.
Wilkinson, Robert J.
Kendrick, Yvonne
Devouassoux, Gilles
Ferry, Tristan
Miyara, Makoto
Bouvry, Diane
Dominique, Valeyre
Gorochov, Guy
Blankenship, Derek
Saadatian, Mitra
Vanhems, Phillip
Beynon, Huw
Vancheeswaran, Rama
Wickremasinghe, Melissa
Chaussabel, Damien
Banchereau, Jacques
Pascual, Virginia
Ho, Ling-pei
Lipman, Marc
O’Garra, Anne
Transcriptional Blood Signatures Distinguish Pulmonary Tuberculosis, Pulmonary Sarcoidosis, Pneumonias and Lung Cancers
title Transcriptional Blood Signatures Distinguish Pulmonary Tuberculosis, Pulmonary Sarcoidosis, Pneumonias and Lung Cancers
title_full Transcriptional Blood Signatures Distinguish Pulmonary Tuberculosis, Pulmonary Sarcoidosis, Pneumonias and Lung Cancers
title_fullStr Transcriptional Blood Signatures Distinguish Pulmonary Tuberculosis, Pulmonary Sarcoidosis, Pneumonias and Lung Cancers
title_full_unstemmed Transcriptional Blood Signatures Distinguish Pulmonary Tuberculosis, Pulmonary Sarcoidosis, Pneumonias and Lung Cancers
title_short Transcriptional Blood Signatures Distinguish Pulmonary Tuberculosis, Pulmonary Sarcoidosis, Pneumonias and Lung Cancers
title_sort transcriptional blood signatures distinguish pulmonary tuberculosis, pulmonary sarcoidosis, pneumonias and lung cancers
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3734176/
https://www.ncbi.nlm.nih.gov/pubmed/23940611
http://dx.doi.org/10.1371/journal.pone.0070630
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