The extracellular matrix regulates granuloma necrosis in tuberculosis
Author(s)
Type
Journal Article
Abstract
A central tenet of tuberculosis pathogenesis is that caseous necrosis leads to extracellular matrix destruction and bacterial transmission. We reconsider the underlying mechanism of tuberculosis pathology and demonstrate that collagen destruction may be a critical initial event, causing caseous necrosis as opposed to resulting from it. In human tuberculosis granulomas, regions of extracellular matrix destruction map to areas of caseous necrosis. In mice, transgenic expression of human matrix metalloproteinase 1 causes caseous necrosis, the pathological hallmark of human tuberculosis. Collagen destruction is the principal pathological difference between humanised mice and wild-type mice with tuberculosis, whereas the release of proinflammatory cytokines does not differ, demonstrating that collagen breakdown may lead to cell death and caseation. To investigate this hypothesis, we developed a 3-dimensional cell culture model of tuberculosis granuloma formation, using bioelectrospray technology. Collagen improved survival of Mycobacterium tuberculosis–infected cells analyzed on the basis of a lactate dehydrogenase release assay, propidium iodide staining, and measurement of the total number of viable cells. Taken together, these findings suggest that collagen destruction is an initial event in tuberculosis immunopathology, leading to caseous necrosis and compromising the immune response, revealing a previously unappreciated role for the extracellular matrix in regulating the host-pathogen interaction.
Date Issued
2015-08-01
Date Acceptance
2015-01-29
Citation
Journal of Infectious Diseases, 2015, 212 (3), pp.463-473
ISSN
1537-6613
Publisher
Oxford University Press
Start Page
463
End Page
473
Journal / Book Title
Journal of Infectious Diseases
Volume
212
Issue
3
Identifier
https://academic.oup.com/jid/article/212/3/463/854384
Subjects
Science & Technology
Life Sciences & Biomedicine
Immunology
Infectious Diseases
Microbiology
tuberculosis
extracellular matrix
matrix metalloprotease
immunopathology
MYCOBACTERIUM-TUBERCULOSIS
INNATE IMMUNITY
METALLOPROTEINASE-1
ACTIVATION
EXPRESSION
PROTECTION
INDUCTION
CANCER
MMP-1
DEATH
extracellular matrix
immunopathology
matrix metalloprotease
tuberculosis
Animals
Collagen
Extracellular Matrix
Granuloma
Host-Pathogen Interactions
Humans
Lung
Lung Neoplasms
Matrix Metalloproteinase 1
Mice
Mice, Inbred C57BL
Mice, Transgenic
Models, Biological
Necrosis
Tuberculosis
Lung
Extracellular Matrix
Animals
Mice, Inbred C57BL
Mice, Transgenic
Humans
Mice
Tuberculosis
Lung Neoplasms
Granuloma
Necrosis
Collagen
Models, Biological
Matrix Metalloproteinase 1
Host-Pathogen Interactions
06 Biological Sciences
11 Medical and Health Sciences
Microbiology
Publication Status
Published
Date Publish Online
2015-02-12