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Updated: Aug 5, 2026

Visualizing Macrophage Extracellular Traps Using Confocal Microscopy
Published on: October 19, 2017
Macrophage Extracellular Traps in Health and Disease: Current Concepts, Pathogenic Mechanisms and Clinical
Bojan Stojanovic1,2, Ivana Milivojcevic Bevc3, Bojana S Stojanovic2,4
1Department of Surgery, Faculty of Medical Sciences, University of Kragujevac, 34000 Kragujevac, Serbia.
Abstract:
Macrophage extracellular traps (METs) are chromatin-based structures released by activated macrophages and are increasingly recognized as distinct, context-dependent effectors of innate immunity. Although initially described in antimicrobial defense, METs are now implicated in sterile inflammation, autoimmunity, fibrosis, metabolic and vascular injury, organ-specific damage, and cancer. This review integrates dispersed evidence on MET biology across physiological and pathological settings, moving beyond neutrophil-centered interpretations of extracellular trap biology. We summarize the molecular composition, structural heterogeneity, major forms of METosis, and key regulatory pathways, including PAD-dependent chromatin remodeling, reactive oxygen species and calcium signaling, mitochondrial DNA release, extracellular DNA sensing, protease-mediated injury, and macrophage-stromal crosstalk. We also discuss the dual nature of METs as protective structures that can contain pathogens and amplify early innate responses, but also as pathogenic platforms when excessive, persistent, or insufficiently cleared. Overall, current evidence supports METs as functionally versatile macrophage-derived immune structures whose biological effects depend on the stimulus, tissue microenvironment, and disease context. By providing a unified framework, this review highlights the relevance of METs as potential biomarkers and therapeutic targets in inflammatory, fibrotic, vascular, autoimmune, and malignant diseases.
Insights
Macrophage extracellular traps (METs) are immune structures released by macrophages. They play dual roles in immunity, acting as both protective and pathogenic elements in various diseases.
Area of Science:
- Immunology
- Cell Biology
Background:
- Macrophage extracellular traps (METs) are chromatin structures released by macrophages.
- Initially known for antimicrobial defense, METs are now linked to sterile inflammation, autoimmunity, fibrosis, metabolic and vascular injury, organ damage, and cancer.
Purpose of the Study:
- To integrate evidence on MET biology across physiological and pathological settings.
- To move beyond neutrophil-focused interpretations of extracellular trap biology.
- To highlight METs as potential biomarkers and therapeutic targets.
Main Methods:
- Literature review integrating dispersed evidence on MET biology.
- Summary of molecular composition, structural heterogeneity, and forms of METosis.
- Discussion of key regulatory pathways and macrophage-stromal crosstalk.
Main Results:
- METs exhibit structural heterogeneity and diverse forms of METosis.
- Key regulatory pathways include PAD-dependent chromatin remodeling, ROS/calcium signaling, mtDNA release, and extracellular DNA sensing.
- METs have dual roles: protective in pathogen containment and amplification of innate responses, or pathogenic when excessive or uncleared.
Conclusions:
- METs are versatile macrophage-derived immune structures with context-dependent effects.
- Their biological impact varies based on stimulus, tissue microenvironment, and disease context.
- METs are relevant as potential biomarkers and therapeutic targets in multiple inflammatory and malignant diseases.
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