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Procoagulant activity of rabbit alveolar macrophages
Abstract:
Alveolar macrophages are thought to participate in the clearance of fibrin from the injured lung, but their ability to facilitate the conversion of fibrinogen to fibrin (procoagulant activity) has not been described. In order to characterize their procoagulant properties, unstimulated alveolar macrophages obtained from normal rabbits were tested for their ability to accelerate the coagulation of plasma in a one-stage clotting assay. Compared with control assays containing no macrophages (coagulation times greater than 500 s), intact cells (10(6)/ml) were shown to display procoagulant activity (coagulation time, 153.6 +/- 11.3 s mean +/- SEM). Cell lysis caused further procoagulant activity to be expressed (125.6 +/- 11.8 s). Alveolar macrophages that were stimulated in vitro with bacterial lipopolysaccharide (LPS) or the purified complement fragments C5a and C5a des Arg caused further significant (p less than 0.002) reductions in coagulation times (intact cells, 71 to 76 s; lysed cells, 27 to 32 s), representing 5- to 6-fold and 30- to 40-fold increases in the procoagulant activity of intact and lysed cells, respectively. The generation of this material was independent of the presence of lymphocytes. The procoagulant material was identified as a cell-associated tissue thromboplastin, acting via the extrinsic coagulation pathway. These findings show that alveolar macrophages have procoagulant activity that is markedly augmented by LPS and complement fragments. This suggests that alveolar macrophages may contribute to intra-alveolar fibrin deposition in vivo.
Insights
Alveolar macrophages exhibit procoagulant activity, converting fibrinogen to fibrin. This activity is significantly enhanced by bacterial lipopolysaccharide (LPS) and complement fragments, suggesting a role in lung fibrin deposition.
Area of Science:
- Immunology
- Hematology
- Pulmonary Medicine
Background:
- Alveolar macrophages are known for fibrin clearance in injured lungs.
- Their procoagulant properties, facilitating fibrin formation, were previously undescribed.
Purpose of the Study:
- To characterize the procoagulant activity of alveolar macrophages.
- To investigate the effect of in vitro stimulation on this activity.
Main Methods:
- Unstimulated rabbit alveolar macrophages were assessed for plasma coagulation acceleration using a one-stage clotting assay.
- Macrophages were stimulated with bacterial lipopolysaccharide (LPS) and complement fragments (C5a, C5a des Arg).
Main Results:
- Intact alveolar macrophages demonstrated procoagulant activity (153.6 s), increased upon cell lysis (125.6 s).
- LPS and complement fragment stimulation significantly reduced coagulation times (intact: 71-76 s; lysed: 27-32 s).
- The procoagulant material was identified as cell-associated tissue thromboplastin, acting via the extrinsic pathway.
Conclusions:
- Alveolar macrophages possess inherent procoagulant activity.
- This activity is markedly augmented by LPS and complement fragments.
- Alveolar macrophages may contribute to intra-alveolar fibrin deposition in vivo.