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Updated: Nov 6, 2025

Visualizing Macrophage Extracellular Traps Using Confocal Microscopy
Published on: October 19, 2017
Macrophage extracellular traps aggravate iron overload-related liver ischaemia/reperfusion injury
Shan Wu1,2, Jing Yang1, Guoliang Sun1
1Department of Anesthesiology, The Third Affiliated Hospital of Sun Yat-sen University, Guangzhou, China.
Background And Purpose:
Macrophages regulate iron homeostasis in the liver and play important role in hepatic ischaemia/reperfusion (I/R) injury. This study investigates the role of macrophages in iron overload-related hepatocyte damage during liver I/R.
Experimental Approach:
Liver biopsies from patients undergoing partial hepatectomy with or without hepatic portal occlusion were recruited and markers of hepatocyte cell death and macrophage extracellular traps (METs) were detected. A murine hepatic I/R model was also established in high-iron diet-fed mice. Ferrostatin-1 and deferoxamine were administered to investigate the role of ferroptosis in hepatic I/R injury. The macrophage inhibitor liposome-encapsulated clodronate was used to investigate the interaction between macrophages and ferroptosis. AML12 hepatocytes and RAW264.7 macrophages were co-cultured in vitro. An inhibitor of macrophage extracellular traps was used to evaluate the role and mechanism of these traps and ferroptosis in hepatic I/R injury.
Key Results:
Hepatocyte macrophage extracellular trap formation and ferroptosis were greater in patients who underwent hepatectomy with hepatic portal occlusion and in mice subjected to hepatic I/R. Macrophage extracellular traps increased when macrophages were subjected to hypoxia/reoxygenation and when they were co-cultured with hepatocytes. Ferroptosis increased and post-hypoxic hepatocyte survival decreased, which were reversed by inhibition of macrophage extracellular traps. Ferroptosis inhibition attenuated post-ischaemic liver damage. Moreover, iron overload induced hepatic ferroptosis and exacerbated post-ischaemic liver damage, which were reversed by the iron chelator.
Conclusion And Implications:
Macrophage extracellular traps are in volved in regulating ferroptosis highlighting the therapeutic potential of macrophage extracellular traps and ferroptosis inhibition in reducing liver I/R injury.
Insights
Macrophages contribute to liver injury during ischemia/reperfusion (I/R) by promoting ferroptosis, a cell death pathway. Inhibiting macrophage extracellular traps and ferroptosis shows therapeutic promise for liver I/R damage, especially in iron overload conditions.
Area of Science:
- Hepatology
- Immunology
- Cell Death Pathways
Background:
- Macrophages play a critical role in liver iron homeostasis and hepatic ischemia/reperfusion (I/R) injury.
- This study investigates the involvement of macrophages in hepatocyte damage during liver I/R, particularly in the context of iron overload.
Purpose of the Study:
- To elucidate the role of macrophages in iron overload-related hepatocyte damage during liver I/R.
- To explore the mechanisms linking macrophages, ferroptosis, and liver injury.
Main Methods:
- Analysis of liver biopsies from patients and a murine hepatic I/R model.
- Assessment of hepatocyte cell death, macrophage extracellular traps (METs), and ferroptosis markers.
- In vivo and in vitro experiments using pharmacological inhibitors (Ferrostatin-1, deferoxamine, clodronate) and co-culture systems.
Main Results:
- Increased MET formation and ferroptosis observed in patients and mice undergoing hepatic I/R, exacerbated by iron overload.
- METs increased under hypoxia/reoxygenation and co-culture with hepatocytes.
- Inhibition of METs reversed ferroptosis and improved hepatocyte survival; ferroptosis inhibition attenuated liver damage.
Conclusions:
- Macrophage extracellular traps are implicated in regulating ferroptosis in the context of liver I/R injury.
- Targeting METs and ferroptosis presents a potential therapeutic strategy for mitigating liver I/R damage, especially when iron overload is present.
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