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Temporal sequence of pulmonary and systemic inflammatory responses to graded polymicrobial peritonitis in mice
C Stamme1, D S Bundschuh, T Hartung
1Biochemical Pharmacology, University of Konstanz, University Hospital Hannover, Germany.
Abstract:
The lungs are the remote organ most commonly affected in human peritonitis. The major goals of this study were to define the dose- and time-dependent relationship between graded septic peritonitis and systemic and pulmonary inflammatory responses in mice. BALB/c mice were treated with intraperitoneal polymicrobial inoculi and sacrificed at 3, 12, and 24 h. The treatment protocol resulted in distinct groups of animals with respect to mortality rate, kinetics, and concentrations of a broad spectrum of pro- and anti-inflammatory endogenous mediators, intrapulmonary bacterial accumulation, and static lung compliance. In sublethally infected mice, pulmonary bacterial proliferation was controlled. Levels of monocyte chemoattractant protein-1 (MCP-1), interleukin-10, interleukin-6, granulocyte colony-stimulating factor (G-CSF), and tumor necrosis factor (TNF) in plasma were elevated 3 h after infection exclusively. At 3 h, MCP-1, gamma interferon, and TNF were detected in extracts of pulmonary tissue or in bronchoalveolar lavage (BAL) fluid. Static lung compliance (C(st)) was transiently decreased at 12 h. In contrast, in lethally infected mice pulmonary bacterial proliferation was not contained. Concentrations of MCP-1, G-CSF, and TNF in plasma were maximal at 24 h, as were pulmonary MCP-1 levels. Lung myeloperoxidase activity was increased at 3, 12, and 24 h. C(st) was reduced after 3 h and did not reach control values at 24 h. Pulmonary cyclooxygenase-2 mRNA and eicosanoids in BAL fluid and plasma were elevated at 3 and 24 h. This study shows that polymicrobial peritonitis in mice leads to dose-dependent systemic and pulmonary inflammation accompanied by a decrease in lung compliance.
Insights
Polymicrobial peritonitis in mice causes dose-dependent lung inflammation and reduced lung compliance. This study details the systemic and pulmonary inflammatory responses to varying infection severities.
Area of Science:
- Immunology
- Pulmonary Medicine
- Critical Care Medicine
Background:
- The lungs are frequently affected in human peritonitis.
- Understanding the systemic and pulmonary inflammatory response to peritonitis is crucial.
Purpose of the Study:
- To define the dose- and time-dependent relationship between septic peritonitis and inflammatory responses in mice.
- To investigate the impact of peritonitis on pulmonary bacterial load and lung function.
Main Methods:
- BALB/c mice were subjected to graded intraperitoneal polymicrobial infections.
- Measurements included plasma and lung inflammatory mediators, intrapulmonary bacterial counts, and static lung compliance at 3, 12, and 24 hours.
- Analysis of pulmonary cyclooxygenase-2 mRNA and eicosanoids.
Main Results:
- Sublethal infections controlled pulmonary bacterial growth, with transient elevations in specific plasma and lung inflammatory mediators (MCP-1, TNF, IL-6, G-CSF, IFN-γ).
- Lethal infections led to uncontrolled bacterial proliferation and sustained increases in plasma and lung inflammatory mediators.
- Both sublethal and lethal infections resulted in decreased static lung compliance, with more pronounced and prolonged effects in lethal cases.
- Elevated pulmonary cyclooxygenase-2 mRNA and eicosanoids were observed at 3 and 24 hours post-infection.
Conclusions:
- Polymicrobial peritonitis induces a dose-dependent systemic and pulmonary inflammatory response in mice.
- The severity of peritonitis correlates with the extent of inflammation and impairment of lung function.
- These findings highlight the significant impact of peritonitis on remote organ injury, specifically the lungs.