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Induction of macrophage plasminogen activator by endotoxin stimulation and phagocytosis: evidence for a two-stage

Insights

Thioglycollate injection induces macrophage fibrinolytic activity via plasminogen activator. Phagocytosis, especially of persistent particles like latex, enhances this enzyme secretion, impacting the extracellular environment.

Area of Science:

  • Immunology
  • Cell Biology
  • Biochemistry

Background:

  • Macrophages exhibit fibrinolytic activity, crucial for tissue remodeling and pathogen clearance.
  • This activity is mediated by secreted plasminogen activator, a serine protease.
  • Unstimulated macrophages lack significant plasminogen activator secretion.

Purpose of the Study:

  • To investigate methods for inducing macrophage plasminogen activator secretion.
  • To differentiate the roles of cell priming and phagocytosis in enzyme induction.
  • To understand the factors influencing the duration and magnitude of fibrinolytic activity.

Main Methods:

  • Induction of macrophage activation using thioglycollate medium, endotoxin, or mineral oil.
  • Stimulation of primed macrophages via phagocytosis of various particles (latex, SRBC, M. lysodeikticus, immune complexes).
  • Measurement of fibrinolytic activity, plasminogen activator levels, lysozyme, and acid hydrolases.

Main Results:

  • Thioglycollate robustly induces macrophage plasminogen activator and fibrinolytic activity.
  • Endotoxin primes macrophages, but requires phagocytosis (e.g., latex) for high-level enzyme secretion.
  • Phagocytosis of persistent particles like latex leads to sustained plasminogen activator secretion for at least 9 days.

Conclusions:

  • A two-stage process involving priming and phagocytosis effectively induces macrophage plasminogen activator secretion.
  • The persistence of phagocytized material dictates the duration of enzyme secretion.
  • Activated macrophages can modulate their extracellular environment through regulated fibrinolysis.

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