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Updated: Oct 11, 2025

In Situ Exploration of Murine Megakaryopoiesis using Transmission Electron Microscopy
Published on: September 8, 2021
Neutrophil transit time and localization within the megakaryocyte define morphologically distinct forms of
Frank Y Huang1,2, Pierre Cunin3, Felix A Radtke1,2
1Division of Rheumatology, Inflammation, and Immunity, Brigham and Women's Hospital, Harvard Medical School, Boston, MA.
Abstract:
Neutrophils transit through megakaryocytes in a process termed emperipolesis, but it is unknown whether this interaction is a single type of cell-in-cell interaction or a set of distinct processes. Using a murine in vitro model, we characterized emperipolesis by live-cell spinning disk microscopy and electron microscopy. Approximately half of neutrophils exited the megakaryocyte rapidly, typically in 10 minutes or less, displaying ameboid morphology as they passed through the host cell (fast emperipolesis). The remaining neutrophils assumed a sessile morphology, most remaining within the megakaryocyte for at least 60 minutes (slow emperipolesis). These neutrophils typically localized near the megakaryocyte nucleus. By ultrastructural assessment, all internalized neutrophils remained morphologically intact. Most neutrophils resided within emperisomes, but some could be visualized exiting the emperisome to enter the cell cytoplasm. Neutrophils in the cytoplasm assumed close contact with the platelet-forming demarcation membrane system or the perinuclear endoplasmic reticulum. These findings reveal that megakaryocyte emperipolesis reflects at least 2 distinct processes differing in transit time and morphology, fast and slow emperipolesis, suggesting divergent physiologic functions.
Insights
Neutrophil emperipolesis involves two distinct processes: fast and slow transit through megakaryocytes. This cell-in-cell interaction reveals unique neutrophil morphologies and locations, suggesting varied physiological roles.
Area of Science:
- Hematology
- Cell Biology
- Immunology
Background:
- Neutrophils interact with megakaryocytes via emperipolesis, a cell-in-cell phenomenon.
- The precise nature and potential diversity of emperipolesis remain incompletely understood.
Purpose of the Study:
- To characterize neutrophil emperipolesis within a murine in vitro model.
- To differentiate potential distinct processes within megakaryocyte emperipolesis.
Main Methods:
- Live-cell spinning disk microscopy was employed for dynamic observation.
- Electron microscopy provided ultrastructural details of the interaction.
Main Results:
- Two distinct emperipolesis processes were identified: fast (≤10 min transit, ameboid morphology) and slow (≥60 min transit, sessile morphology).
- Slow-transit neutrophils localized near the megakaryocyte nucleus.
- Internalized neutrophils remained intact, residing in emperisomes or cytoplasm, interacting with cellular organelles.
Conclusions:
- Megakaryocyte emperipolesis comprises at least two distinct processes with differing kinetics and morphologies.
- These findings suggest divergent physiological functions for fast and slow emperipolesis.
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