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Updated: Sep 13, 2026

Bone Marrow-derived Macrophage Production
Published on: November 22, 2013
Role of phagocytosis in the activation of macrophages
Abstract:
Macrophages were obtained by peritoneal lavage from untreated mice or from mice which had received either Brewer's thioglycollate broth or a suspension of streptococcus A cell walls intraperitoneally 4 days before. 3 h after harvesting, adherent cells from untreated mice were allowed to phagocytose zymosan, formaldehyde-treated sheep erythrocytes, or latex beads. Phagocytosis was stopped after 1 h and culture was continued for up to 10 days. Phagocytosis of zymosan or sheep erythrocytes triggered the immediate release of lysosomal glycosidases, stimulated the synthesis of cellular lactate dehydrogenase, and induced the delayed production and secretion of plasminogen activator . No such changes were observed upon phagocytosis of latex. Although all three particles used were phagocytosed, only zymosan and sheep erythrocytes stimulated glucose oxidation via the hexose monophosphate shunt. Similar findings were obtained in macrophages elicited with streptococcus A cell walls after zymosan phagocytosis. Thioglycollate-elicited macrophages, however, which were already secreting lysosomal hydrolases and plasminogen activator, could not be activated further by zymosan. The results of this study show that macrophages become activated after phagocytosis of particles that stimulate the activity of their hexose monophosphate shunt. The triggering event appears to be the burst of shunt activity itself or shunt-related biochemical reactions rather than phagocytic uptake per se or particle-dependent complement activation by the alternative pathway. Once initiated, macrophage activation proceeds independently of the intracellular fate of the ingested material .
Insights
Macrophage activation occurs when phagocytosing particles that stimulate the hexose monophosphate shunt. This activation is triggered by shunt activity, not just particle uptake, leading to biochemical changes and enzyme release.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Macrophages are key immune cells involved in phagocytosis and inflammatory responses.
- Macrophage activation is a complex process influenced by various stimuli.
- Understanding the triggers of macrophage activation is crucial for immune system research.
Purpose of the Study:
- To investigate the specific triggers of macrophage activation following phagocytosis.
- To determine whether phagocytic uptake or subsequent biochemical events activate macrophages.
- To elucidate the role of the hexose monophosphate shunt in macrophage activation.
Main Methods:
- Macrophages were elicited using thioglycollate broth or Streptococcus A cell walls.
- Macrophages were induced to phagocytose zymosan, sheep erythrocytes, or latex beads.
- Assays were performed to measure lysosomal glycosidase release, lactate dehydrogenase synthesis, plasminogen activator production, and hexose monophosphate shunt activity.
Main Results:
- Phagocytosis of zymosan and sheep erythrocytes, but not latex beads, stimulated the hexose monophosphate shunt.
- Stimulation of the hexose monophosphate shunt correlated with the release of lysosomal enzymes and production of plasminogen activator.
- Thioglycollate-elicited macrophages, already activated, showed no further activation upon zymosan phagocytosis.
Conclusions:
- Macrophage activation is triggered by particles that stimulate hexose monophosphate shunt activity.
- The burst of shunt activity, or related reactions, initiates activation, independent of particle uptake or complement activation.
- Once initiated, macrophage activation progresses irrespective of the ingested material's fate.
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