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Published on: January 7, 2015
Effects of tumor necrosis factor on PMN chemotaxis, chemiluminescence, and elastase activity
M Yonemaru1, K E Stephens, A Ishizaka
1Department of Medicine, Stanford University School of Medicine, CA.
Abstract:
Tumor necrosis factor (TNF) has been proposed as an important mediator of the inflammatory response in acute lung injury. To better understand polymorphonuclear leukocyte (PMN) activation during acute lung injury, we evaluated the effects of TNF on several in vitro PMN functions, including chemotaxis, chemiluminescence, and elastase activity. In the chemotaxis assay using a modified Boyden chamber, TNF alone or with N-formyl-methionyl-leucyl-phenylalanine (FMLP, 10(-8) mol/L) did not alter PMN migration. TNF suspended with 1% zymosan-activated serum (ZAS) increased PMN migration at low concentrations and decreased migration at high concentrations (control 99 +/- 4.8 microns, n = 9; TNF 0.1 ng/ml 135 +/- 9.4 microns, n = 5, p less than 0.01; TNF 1000 ng/ml 62 +/- 7.5 microns, n = 5, p less than 0.01). In the chemiluminescence assay, TNF (1000 ng/ml) induced a 3-fold increase in the PMN chemiluminescent response. However, TNF incubated with PMN did not cause an increase in supernatant elastase activity. These data reveal TNF induced the production of PMN reactive oxygen species as evidenced by an increased chemiluminescent response. Whereas TNF increased chemotaxis at low concentrations in the presence of 1% ZAS, high concentrations of TNF similar to levels detected in septic shock caused a decrease in chemotaxis that might contribute to retaining PMN in sites of inflammation. It is thus suggested that TNF may contribute to inflammation by stimulating the production of PMN-reactive oxygen species and modulating-PMN chemotaxis.
Insights
Tumor necrosis factor (TNF) influences inflammatory responses in acute lung injury by increasing polymorphonuclear leukocyte (PMN) reactive oxygen species production. High TNF concentrations may impair PMN migration, potentially contributing to inflammation.
Area of Science:
- Immunology
- Cell Biology
- Pulmonary Medicine
Background:
- Tumor necrosis factor (TNF) is implicated in acute lung injury (ALI) pathogenesis.
- Understanding polymorphonuclear leukocyte (PMN) activation is crucial for ALI research.
Purpose of the Study:
- To investigate the in vitro effects of TNF on PMN functions relevant to ALI.
- Specifically examining PMN chemotaxis, chemiluminescence, and elastase activity.
Main Methods:
- Modified Boyden chamber assay for PMN chemotaxis.
- Chemiluminescence assay to measure PMN reactive oxygen species production.
- Assay for PMN elastase activity in supernatant.
Main Results:
- TNF alone did not affect PMN migration.
- Low TNF concentrations with zymosan-activated serum (ZAS) enhanced PMN chemotaxis; high concentrations inhibited it.
- TNF significantly increased PMN chemiluminescence, indicating reactive oxygen species production.
- TNF did not increase PMN elastase activity.
Conclusions:
- TNF stimulates PMN reactive oxygen species production.
- TNF modulates PMN chemotaxis in a concentration-dependent manner, potentially impacting inflammation in ALI.
- High TNF levels may retain PMNs at inflammatory sites, exacerbating injury.

