Neutrophil degranulation mediates severe lung damage triggered by streptococcal M1 protein
Open Access
- 19 March 2008
- journal article
- Published by European Respiratory Society (ERS) in European Respiratory Journal
- Vol. 32 (2) , 405-412
- https://doi.org/10.1183/09031936.00173207
Abstract
Streptococcus pyogenes of the M1 serotype can cause streptococcal toxic shock syndrome commonly associated with acute lung injury. The aim of the present study was to investigate the role of neutrophils and their secretion products in M1 protein-induced lung damage. The degranulation of neutrophils by M1 protein was studied in whole blood using marker analysis for individual granule subsets. In mice, M1 protein was injected intravenously and the lung damage was assessed by histology, electron microscopy, cell count in bronchoalveolar lavage fluid and analysis of lung vascular permeability. Comparisons were made in mice with intact white blood count, neutropenic mice and neutropenic mice injected with the secretion of activated neutrophils. In whole blood, M1 protein forms complexes with fibrinogen that bind to β2-integrins on the neutrophil surface, resulting in degranulation of all four subsets of neutrophil granules. Intravenous injection of M1 protein into mice induced neutrophil accumulation in the lung, increase in vascular permeability and acute lung damage. Depletion of neutrophils from the circulation completely abrogated lung injury and vascular leakage. Interestingly, the lung damage was restored by injecting neutrophil secretion. The present data suggest that neutrophil granule proteins are directly responsible for lung damage induced by the streptococcal M1 protein.Keywords
This publication has 26 references indexed in Scilit:
- M1 protein of Streptococcus pyogenes increases production of the antibacterial CXC chemokine MIG/CXCL9 in pharyngeal epithelial cellsMicrobial Pathogenesis, 2007
- M protein from Streptococcus pyogenes induces tissue factor expression and pro-coagulant activity in human monocytesMicrobiology, 2007
- Severe streptococcal infection is associated with M protein‐induced platelet activation and thrombus formationMolecular Microbiology, 2007
- Streptococcal M Protein: A Multipotent and Powerful Inducer of InflammationThe Journal of Immunology, 2006
- Neutrophil granule contents in the pathogenesis of lung injuryCurrent Opinion in Hematology, 2006
- M Protein, a Classical Bacterial Virulence Determinant, Forms Complexes with Fibrinogen that Induce Vascular LeakageCell, 2004
- Heparin-binding protein (HBP/CAP37): A missing link in neutrophil-evoked alteration of vascular permeabilityNature Medicine, 2001
- Neutrophil activation and acute lung injuryCurrent Opinion in Critical Care, 2001
- Pathogenesis of Group A Streptococcal InfectionsClinical Microbiology Reviews, 2000
- Neutrophils: Molecules, Functions and Pathophysiological AspectsLaboratory Investigation, 2000