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Tumor necrosis factor-alpha enhances platelet activation via cathepsin G released from neutrophils
1Unité de Pharmacologie Cellulaire, Unité Associée IP/INSERM 285, Institut Pasteur, Paris, France.
Abstract:
In this paper we show that TNF-alpha enhances platelet activation. Experiments were performed on a human polymorphonuclear neutrophil (PMN)-platelet cooperation system in which PMN, stimulated by FMLP, release cathepsin G (Cat.G), a serine proteinase responsible for the activation of nearby platelets. Pretreatment of the mixed cell suspension with 5 ng/ml TNF-alpha resulted in a strong platelet activation (37.7 +/- 3.2% aggregation; 46.0 +/- 14.4% serotonin release) in response to a weak concentration of FMLP (1.25 x 10(-8) M) inducing by itself only 7.7 +/- 4.0% of aggregation and 3.8 +/- 4.1% of serotonin release (mean +/- SD; n = 10). This effect was concentration dependent (maximum between 5 and 10 ng/ml) and was optimal for a brief preincubation time (5 min). Under these experimental conditions the target of TNF-alpha was PMN, as shown by beta-glucuronidase release. The observed potentiation was modified neither by 0.1 mM acetyl salicylic acid (a cyclo-oxygenase inhibitor) nor by 0.1 mM BN 52021 (a platelet-activating factor antagonist), while such a phenomenon was fully inhibited by 20 micrograms/ml eglin C, a strong and specific inhibitor of the human granulocytic proteinases, elastase and Cat.G. In fact, full inhibition was also observed with 300 nM alpha-1-antichymotrypsin, a specific inhibitor of Cat.G. This clear-cut evidence of Cat.G involvement was substantiated by the enhancement of Cat.G release from FMLP-activated PMN primed with TNF-alpha. These results demonstrate that the priming of PMN by TNF-alpha may modulate the activation of other inflammatory cells, particularly of platelets. It is hypothesized that this phenomenon could contribute to pulmonary pathologies, and more specifically to the adult respiratory distress syndrome, a disease for which PMN, platelet and TNF-alpha involvement has been proposed.
Insights
Tumor necrosis factor-alpha (TNF-alpha) enhances platelet activation by priming polymorphonuclear neutrophils (PMN). This priming increases cathepsin G release, leading to greater platelet aggregation and serotonin release, potentially contributing to inflammatory lung diseases.
Area of Science:
- Immunology
- Hematology
- Cellular Biology
Background:
- Polymorphonuclear neutrophils (PMN) and platelets play roles in inflammatory processes.
- Tumor necrosis factor-alpha (TNF-alpha) is a key inflammatory cytokine.
- Cathepsin G (Cat.G) is a serine proteinase released by PMN.
Purpose of the Study:
- To investigate the effect of TNF-alpha on PMN-platelet cooperation.
- To elucidate the mechanism by which TNF-alpha influences platelet activation.
- To explore the potential role of this interaction in pulmonary pathologies.
Main Methods:
- Human PMN-platelet co-cultures were stimulated with FMLP.
- Cells were pretreated with varying concentrations of TNF-alpha.
- Platelet activation was assessed by aggregation and serotonin release.
- The role of Cat.G was evaluated using specific inhibitors (eglin C, alpha-1-antichymotrypsin).
Main Results:
- TNF-alpha pretreatment significantly enhanced FMLP-induced platelet activation.
- The effect was concentration-dependent and time-optimal.
- TNF-alpha's action was mediated through PMN, evidenced by increased beta-glucuronidase release.
- Inhibition of Cat.G fully blocked TNF-alpha-potentiated platelet activation.
- TNF-alpha priming increased Cat.G release from activated PMN.
Conclusions:
- TNF-alpha primes PMN, enhancing their ability to activate platelets via Cat.G.
- This PMN-platelet interaction, modulated by TNF-alpha, may contribute to inflammatory lung conditions like ARDS.
- Targeting this pathway could offer therapeutic strategies for inflammatory diseases.