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Sequential inflammatory processes define human progression from M. tuberculosis infection to tuberculosis disease
by
Erasmus, Mzwandile
, Suliman, Sara
, De Groote, Mary Ann
, Shankar, Smitha
, Thompson, Ethan G.
, Zak, Daniel E.
, Amon, Lynn M.
, Mahomed, Hassan
, Scriba, Thomas J.
, Nemes, Elisa
, Whatney, Wendy
, Penn-Nicholson, Adam
, Valvo, Joe
, Hraha, Tom
, Boom, W. Henry
, Hatherill, Mark
, Hanekom, Willem A.
, Sterling, David
, Johnson, John L.
, Darboe, Fatoumatta
, Ochsner, Urs A.
, Aderem, Alan
in
Adolescent
/ Adolescents
/ Aptamers
/ Authorship
/ Bacillus Calmette-Guerin vaccine
/ BCG
/ Bioinformatics
/ Biology and Life Sciences
/ Blood
/ CD4 antigen
/ Child
/ Deoxyribonucleic acid
/ Diagnosis
/ Disease control
/ Disease Progression
/ DNA
/ DNA sequencing
/ Funding
/ Gene expression
/ Gene sequencing
/ Health care
/ Helper cells
/ Humans
/ Immunology
/ Infections
/ Infectious diseases
/ Inflammation
/ Inflammation - complications
/ Inflammation - immunology
/ Inflammation - therapy
/ Interferon
/ Interleukin 17
/ Lung diseases
/ Lymphocytes
/ Lymphocytes T
/ Medicine
/ Medicine and Health Sciences
/ Monocytes
/ Multiplexing
/ Mycobacterium tuberculosis
/ Pathology
/ Proteomes
/ Ribonucleic acid
/ RNA
/ Signaling
/ Supervision
/ T-Lymphocytes - immunology
/ Transcription
/ Tuberculosis
/ Tuberculosis - microbiology
/ Tuberculosis - therapy
/ Vaccination
/ Vaccines - therapeutic use
2017
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Sequential inflammatory processes define human progression from M. tuberculosis infection to tuberculosis disease
by
Erasmus, Mzwandile
, Suliman, Sara
, De Groote, Mary Ann
, Shankar, Smitha
, Thompson, Ethan G.
, Zak, Daniel E.
, Amon, Lynn M.
, Mahomed, Hassan
, Scriba, Thomas J.
, Nemes, Elisa
, Whatney, Wendy
, Penn-Nicholson, Adam
, Valvo, Joe
, Hraha, Tom
, Boom, W. Henry
, Hatherill, Mark
, Hanekom, Willem A.
, Sterling, David
, Johnson, John L.
, Darboe, Fatoumatta
, Ochsner, Urs A.
, Aderem, Alan
in
Adolescent
/ Adolescents
/ Aptamers
/ Authorship
/ Bacillus Calmette-Guerin vaccine
/ BCG
/ Bioinformatics
/ Biology and Life Sciences
/ Blood
/ CD4 antigen
/ Child
/ Deoxyribonucleic acid
/ Diagnosis
/ Disease control
/ Disease Progression
/ DNA
/ DNA sequencing
/ Funding
/ Gene expression
/ Gene sequencing
/ Health care
/ Helper cells
/ Humans
/ Immunology
/ Infections
/ Infectious diseases
/ Inflammation
/ Inflammation - complications
/ Inflammation - immunology
/ Inflammation - therapy
/ Interferon
/ Interleukin 17
/ Lung diseases
/ Lymphocytes
/ Lymphocytes T
/ Medicine
/ Medicine and Health Sciences
/ Monocytes
/ Multiplexing
/ Mycobacterium tuberculosis
/ Pathology
/ Proteomes
/ Ribonucleic acid
/ RNA
/ Signaling
/ Supervision
/ T-Lymphocytes - immunology
/ Transcription
/ Tuberculosis
/ Tuberculosis - microbiology
/ Tuberculosis - therapy
/ Vaccination
/ Vaccines - therapeutic use
2017
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Sequential inflammatory processes define human progression from M. tuberculosis infection to tuberculosis disease
by
Erasmus, Mzwandile
, Suliman, Sara
, De Groote, Mary Ann
, Shankar, Smitha
, Thompson, Ethan G.
, Zak, Daniel E.
, Amon, Lynn M.
, Mahomed, Hassan
, Scriba, Thomas J.
, Nemes, Elisa
, Whatney, Wendy
, Penn-Nicholson, Adam
, Valvo, Joe
, Hraha, Tom
, Boom, W. Henry
, Hatherill, Mark
, Hanekom, Willem A.
, Sterling, David
, Johnson, John L.
, Darboe, Fatoumatta
, Ochsner, Urs A.
, Aderem, Alan
in
Adolescent
/ Adolescents
/ Aptamers
/ Authorship
/ Bacillus Calmette-Guerin vaccine
/ BCG
/ Bioinformatics
/ Biology and Life Sciences
/ Blood
/ CD4 antigen
/ Child
/ Deoxyribonucleic acid
/ Diagnosis
/ Disease control
/ Disease Progression
/ DNA
/ DNA sequencing
/ Funding
/ Gene expression
/ Gene sequencing
/ Health care
/ Helper cells
/ Humans
/ Immunology
/ Infections
/ Infectious diseases
/ Inflammation
/ Inflammation - complications
/ Inflammation - immunology
/ Inflammation - therapy
/ Interferon
/ Interleukin 17
/ Lung diseases
/ Lymphocytes
/ Lymphocytes T
/ Medicine
/ Medicine and Health Sciences
/ Monocytes
/ Multiplexing
/ Mycobacterium tuberculosis
/ Pathology
/ Proteomes
/ Ribonucleic acid
/ RNA
/ Signaling
/ Supervision
/ T-Lymphocytes - immunology
/ Transcription
/ Tuberculosis
/ Tuberculosis - microbiology
/ Tuberculosis - therapy
/ Vaccination
/ Vaccines - therapeutic use
2017
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Sequential inflammatory processes define human progression from M. tuberculosis infection to tuberculosis disease
Journal Article
Sequential inflammatory processes define human progression from M. tuberculosis infection to tuberculosis disease
2017
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Overview
Our understanding of mechanisms underlying progression from Mycobacterium tuberculosis infection to pulmonary tuberculosis disease in humans remains limited. To define such mechanisms, we followed M. tuberculosis-infected adolescents longitudinally. Blood samples from forty-four adolescents who ultimately developed tuberculosis disease (“progressors”) were compared with those from 106 matched controls, who remained healthy during two years of follow up. We performed longitudinal whole blood transcriptomic analyses by RNA sequencing and plasma proteome analyses using multiplexed slow off-rate modified DNA aptamers. Tuberculosis progression was associated with sequential modulation of immunological processes. Type I/II interferon signalling and complement cascade were elevated 18 months before tuberculosis disease diagnosis, while changes in myeloid inflammation, lymphoid, monocyte and neutrophil gene modules occurred more proximally to tuberculosis disease. Analysis of gene expression in purified T cells also revealed early suppression of Th17 responses in progressors, relative to M. tuberculosis-infected controls. This was confirmed in an independent adult cohort who received BCG re-vaccination; transcript expression of interferon response genes in blood prior to BCG administration was associated with suppression of IL-17 expression by BCG-specific CD4 T cells 3 weeks post-vaccination. Our findings provide a timeline to the different immunological stages of disease progression which comprise sequential inflammatory dynamics and immune alterations that precede disease manifestations and diagnosis of tuberculosis disease. These findings have important implications for developing diagnostics, vaccination and host-directed therapies for tuberculosis.
Clincialtrials.gov, NCT01119521.
Publisher
Public Library of Science,Public Library of Science (PLoS)
Subject
/ Aptamers
/ Bacillus Calmette-Guerin vaccine
/ BCG
/ Blood
/ Child
/ DNA
/ Funding
/ Humans
/ Inflammation - complications
/ Medicine
/ Medicine and Health Sciences
/ RNA
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