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Updated: May 13, 2026

Experimental Analysis of Apoptotic Thymocyte Engulfment by Macrophages
Published on: May 24, 2019
Pyroptotic cells externalize eat-me and release find-me signals and are efficiently engulfed by macrophages
Qiang Wang1, Ryu Imamura, Kou Motani
1Division of Immunology and Molecular Biology, Cancer Research Institute, Kanazawa University, Kanazawa, Ishikawa 920-1192, Japan.
Abstract:
Pathogenic intracellular bacteria often hijack macrophages for their propagation. The infected macrophages release IL-1β and IL-18 and simultaneously commit suicide, which is called pyroptosis; both responses require caspase-1. Here, we found that pyroptotic cells induced by microbial infection were efficiently engulfed by human monocytic THP-1-cell-derived macrophages or mouse peritoneal macrophages. This engulfment was inhibited by the D89E mutant of milk fat globule (MFG) epidermal growth factor (EGF) factor 8 (MFG-E8; a phosphatidylserine-binding protein) that has been shown previously to inhibit phosphatidylserine-dependent engulfment of apoptotic cells by macrophages, suggesting that the engulfment of pyroptotic cells by macrophages was also phosphatidylserine dependent. Using a pair of cell lines that respectively exhibited pyroptosis or apoptosis after muramyl dipeptide treatment, we showed that both pyroptotic and apoptotic cells bound to a T-cell immunoglobulin and mucin domain-containing 4 (Tim4; another phosphatidylserine-binding protein)-coated plate, whereas heat-killed necrotic cells did not, indicating that phosphatidylserine was externalized in pyroptosis and apoptosis but not in accidental necrosis. Macrophages engulfed apoptotic cells most efficiently, followed by pyroptotic and then heat-killed necrotic cells. Pyroptotic cells also released a macrophage attractant(s), 'find-me' signal, whose activity was diminished by apyrase that degrades nucleoside triphosphate to nucleoside monophosphate. Heat-killed necrotic cells and pyroptotic cells released ATP much more efficiently than apoptotic cells. These results suggest that pyroptotic cells, like apoptotic cells, actively induce phagocytosis by macrophages using 'eat-me' and find-me signals. Based on these results, a possible role of coordinated induction of pyroptosis and inflammatory cytokine production is discussed.
Insights
Pathogenic bacteria trigger pyroptosis, a cell death requiring caspase-1. Macrophages engulf these pyroptotic cells, a process dependent on phosphatidylserine, similar to apoptotic cells, utilizing
Area of Science:
- Immunology
- Cell Biology
- Microbiology
Background:
- Pathogenic intracellular bacteria exploit macrophages for replication.
- Infected macrophages undergo pyroptosis (caspase-1-dependent cell death) and release IL-1β and IL-18.
- Efficient clearance of dying cells by phagocytes is crucial for host defense and preventing inflammation.
Purpose of the Study:
- To investigate the engulfment mechanisms of pyroptotic cells by macrophages.
- To determine if phosphatidylserine exposure plays a role in pyroptotic cell clearance.
- To compare the phagocytic signals ('eat-me' and 'find-me') from pyroptotic versus apoptotic and necrotic cells.
Main Methods:
- Used human THP-1-derived macrophages and mouse peritoneal macrophages.
- Utilized microbial infection models to induce pyroptosis.
- Employed phosphatidylserine-binding proteins (MFG-E8, Tim4) and apyrase to assess engulfment and signaling.
- Compared phagocytosis of pyroptotic, apoptotic, and heat-killed necrotic cells.
Main Results:
- Macrophages efficiently engulfed pyroptotic cells, dependent on phosphatidylserine exposure.
- Pyroptotic cells, like apoptotic cells, externalized phosphatidylserine, unlike necrotic cells.
- Pyroptotic cells released 'find-me' signals (ATP) and 'eat-me' signals, facilitating macrophage attraction and engulfment.
- Engulfment efficiency followed the order: apoptotic > pyroptotic > necrotic cells.
Conclusions:
- Pyroptotic cells actively signal for their own clearance by macrophages via 'eat-me' and 'find-me' signals.
- Phosphatidylserine-dependent engulfment is a common mechanism for both apoptotic and pyroptotic cell clearance.
- Understanding these mechanisms may reveal roles for pyroptosis in coordinated inflammatory responses.
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