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Published on: May 21, 2018
Endotoxin induced peritonitis elicits monocyte immigration into the lung: implications on alveolar space inflammatory
Mirko Steinmüller1, Mrigank Srivastava, William A Kuziel
1Division of Pulmonary and Critical Care Medicine and Infectious Diseases, Department of Internal Medicine, Justus-Liebig-University, Giessen, Germany. mirko.steinmueller@innere.med.uni-giessen.de
Background:
Acute peritonitis developing in response to gram-negative bacterial infection is known to act as a trigger for the development of acute lung injury which is often complicated by the development of nosocomial pneumonia. We hypothesized that endotoxin-induced peritonitis provokes recruitment of monocytes into the lungs, which amplifies lung inflammatory responses to a second hit intra-alveolar challenge with endotoxin.
Methods:
Serum and lavage cytokines as well as bronchoalveolar lavage fluid cells were analyzed at different time points after intraperitoneal or intratracheal application of LPS.
Results:
We observed that mice challenged with intraperitoneal endotoxin developed rapidly increasing serum and bronchoalveolar lavage fluid (BALF) cytokine and chemokine levels (TNFalpha, MIP-2, CCL2) and a nearly two-fold expansion of the alveolar macrophage population by 96 h, but this was not associated with the development of neutrophilic alveolitis. In contrast, expansion of the alveolar macrophage pool was not observed in CCR2-deficient mice and in wild-type mice systemically pretreated with the anti-CD18 antibody GAME-46. An intentional two-fold expansion of alveolar macrophage numbers by intratracheal CCL2 following intraperitoneal endotoxin did not exacerbate the development of acute lung inflammation in response to intratracheal endotoxin compared to mice challenged only with intratracheal endotoxin.
Conclusion:
These data, taken together, show that intraperitoneal endotoxin triggers a CCR2-dependent de novo recruitment of monocytes into the lungs of mice but this does not result in an accentuation of neutrophilic lung inflammation. This finding represents a previously unrecognized novel inflammatory component of lung inflammation that results from endotoxin-induced peritonitis.
Insights
Endotoxin-induced peritonitis recruits monocytes to the lungs via a CCR2-dependent pathway. This monocyte influx does not worsen lung inflammation from a secondary endotoxin challenge, revealing a new aspect of peritonitis-related lung injury.
Area of Science:
- Immunology
- Pulmonary Medicine
- Microbiology
Background:
- Gram-negative bacterial infections causing peritonitis can trigger acute lung injury and nosocomial pneumonia.
- Endotoxin-induced peritonitis may promote monocyte recruitment to the lungs, potentially amplifying inflammatory responses to subsequent lung challenges.
Purpose of the Study:
- To investigate if endotoxin-induced peritonitis leads to monocyte recruitment in the lungs.
- To determine if this monocyte recruitment exacerbates lung inflammation following a secondary endotoxin challenge.
Main Methods:
- Mice were subjected to intraperitoneal or intratracheal lipopolysaccharide (LPS) administration.
- Serum and bronchoalveolar lavage fluid (BALF) cytokines, chemokines, and cells were analyzed.
- CCR2-deficient mice and mice treated with anti-CD18 antibody were used to assess monocyte recruitment pathways.
Main Results:
- Intraperitoneal LPS increased serum and BALF cytokines (TNF-alpha, MIP-2, CCL2) and doubled alveolar macrophage populations within 96 hours.
- This increase in alveolar macrophages was CCR2-dependent and not observed in CCR2-deficient or anti-CD18 treated mice.
- Intratracheal CCL2 administration to increase alveolar macrophages did not worsen lung inflammation from subsequent intratracheal LPS.
Conclusions:
- Intraperitoneal endotoxin induces a CCR2-dependent influx of monocytes into the lungs.
- This monocyte recruitment does not lead to increased neutrophilic lung inflammation.
- This represents a novel inflammatory mechanism in endotoxin-induced peritonitis-related lung inflammation.
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