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Hyaluronidase recruits mesenchymal-like cells to the lung and ameliorates fibrosis
by
Bitencourt, Claudia S
, Pereira, Priscilla AT
, Ramos, Simone G
, Sampaio, Suely V
, Aronoff, David M
, Faccioli, Lúcia H
, Arantes, Eliane C
in
Care and treatment
/ Cell Biology
/ Collagen
/ Enzymes
/ Experiments
/ Hydrolases
/ Immunization
/ Internal Medicine
/ Medicine
/ Medicine & Public Health
/ Permeability
/ Physiological aspects
/ Pulmonary Disease
/ Pulmonary fibrosis
/ Stem cells
2011
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Hyaluronidase recruits mesenchymal-like cells to the lung and ameliorates fibrosis
by
Bitencourt, Claudia S
, Pereira, Priscilla AT
, Ramos, Simone G
, Sampaio, Suely V
, Aronoff, David M
, Faccioli, Lúcia H
, Arantes, Eliane C
in
Care and treatment
/ Cell Biology
/ Collagen
/ Enzymes
/ Experiments
/ Hydrolases
/ Immunization
/ Internal Medicine
/ Medicine
/ Medicine & Public Health
/ Permeability
/ Physiological aspects
/ Pulmonary Disease
/ Pulmonary fibrosis
/ Stem cells
2011
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Hyaluronidase recruits mesenchymal-like cells to the lung and ameliorates fibrosis
by
Bitencourt, Claudia S
, Pereira, Priscilla AT
, Ramos, Simone G
, Sampaio, Suely V
, Aronoff, David M
, Faccioli, Lúcia H
, Arantes, Eliane C
in
Care and treatment
/ Cell Biology
/ Collagen
/ Enzymes
/ Experiments
/ Hydrolases
/ Immunization
/ Internal Medicine
/ Medicine
/ Medicine & Public Health
/ Permeability
/ Physiological aspects
/ Pulmonary Disease
/ Pulmonary fibrosis
/ Stem cells
2011
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Hyaluronidase recruits mesenchymal-like cells to the lung and ameliorates fibrosis
Journal Article
Hyaluronidase recruits mesenchymal-like cells to the lung and ameliorates fibrosis
2011
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Overview
Hyaluronidases (HYALs) comprise a group of enzymes that degrade hyaluronic acid (HA). In this report, we reveal that a single intranasal inoculation of HYAL induces an increase in mononuclear cells within the bronchoalveolar space demonstrating a mesenchymal-like phenotype, expressing stem cell antigen-1 (SCA-1), CD44 and CD73 but not CD34, CD45, CD3, CD4, CD8 or CD19. This influx of mesenchymal stem cell (MSC)-like cells was dependent on leukotriene production within the lung parenchyma. These findings prompted experiments demonstrating that HYAL treatment potently blocked bleomycin-induced lung injury and fibrosis while decreasing transforming growth factor (TGF)-β production and collagen deposition. These data suggest that HYAL is a novel and promising tool to use autologous MSC-like cells in the treatment of pulmonary fibrosis.
Publisher
BioMed Central,BioMed Central Ltd
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