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CD18 adhesion receptors, tumor necrosis factor, and neutropenia during septic lung injury
C J Walsh1, S K Leeper-Woodford, P D Carey
1Department of Surgery, Medical College of Virginia, Virginia Commonwealth University, Richmond 23298-0519.
Abstract:
Sequestration of neutrophils (PMNs) in the pulmonary microvasculature and associated neutropenia are characteristic features of experimental models of septic lung injury. The etiology of altered PMN kinetics during septic lung injury is uncertain, but may be partially due to increased adhesiveness of activated PMNs to pulmonary endothelium. This study examines the relationship between the expression of PMN CD18 adhesion receptors, the evolving neutropenia, and plasma tumor necrosis factor (TNF) activity in a porcine model of septic lung injury. Acute lung injury was induced by infusion of live Pseudomonas aeruginosa (5 x 10(8) CFU/ml at 0.3 ml/20 kg/min) for 60 min (Group Ps, n = 6). Control animals (Group C, n = 3) received a 60-min infusion of sterile 0.9% saline. CD18 expression of circulating PMNs was measured by quantitative immunofluorescent flow cytometry. Plasma TNF activity was measured by L929 fibroblast cytolytic assay. Group Ps developed a significant neutropenia by 30 min (14.9 +/- 2.5 vs 23.4 +/- 3.3 x 10(3) cells/microliter at baseline, P less than 0.05, ANOVA) with circulating neutrophils exhibiting significantly increased CD18 expression by 60 min (6.34 +/- 0.72 vs 5.01 +/- 0.52 equivalent soluble fluorescence molecules (ESFM) x 10(3) at baseline, P less than 0.05, ANOVA). Group Ps demonstrated a significant increase in plasma TNF activity by 30 min (2.5 +/- 0.9 vs 0.7 +/- 0.3 U/ml at baseline). There was no significant change in PMN count, PMN CD18 expression, or plasma TNF activity in Group C. In complimentary in vitro studies, porcine PMNs stimulated with recombinant human TNF-alpha (n = 5) demonstrated a time- and dose-dependent increase in CD18 expression.(ABSTRACT TRUNCATED AT 250 WORDS)
Insights
Neutrophil sequestration and neutropenia in septic lung injury are linked to increased CD18 adhesion receptor expression. Tumor necrosis factor (TNF) activity rises, contributing to neutrophil activation and altered kinetics during sepsis.
Area of Science:
- Pulmonary Medicine
- Immunology
- Critical Care
Background:
- Neutrophil sequestration in pulmonary microvasculature and neutropenia are hallmarks of septic lung injury.
- The exact cause of altered neutrophil kinetics during sepsis remains unclear but may involve increased neutrophil adhesion to endothelium.
Purpose of the Study:
- To investigate the relationship between CD18 adhesion receptor expression on neutrophils, neutropenia, and plasma tumor necrosis factor (TNF) activity in a porcine model of septic lung injury.
Main Methods:
- Acute lung injury was induced in pigs via Pseudomonas aeruginosa infusion.
- Neutrophil CD18 expression was quantified using immunofluorescent flow cytometry.
- Plasma TNF activity was assessed using a fibroblast cytolytic assay.
Main Results:
- Septic pigs developed significant neutropenia and increased circulating neutrophil CD18 expression.
- Plasma TNF activity significantly increased in septic pigs.
- In vitro studies confirmed TNF-alpha's role in upregulating CD18 expression on neutrophils.
Conclusions:
- Increased CD18 expression on neutrophils correlates with neutropenia and elevated TNF activity in septic lung injury.
- These findings suggest a mechanism involving TNF-mediated neutrophil activation and adhesion in sepsis-induced lung injury.