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Updated: Dec 25, 2025

In Situ Exploration of Murine Megakaryopoiesis using Transmission Electron Microscopy
Published on: September 8, 2021
Megapinosome: Morphological description of a novel organelle
Andrea Bauer1, Giada Frascaroli2, Paul Walther1
1Electron Microscopy Facility, Ulm University, D-89081 Ulm, Germany.
Abstract:
The megapinosome is an endocytic cell organel that we observed in human macrophages with electron microscopy. In a previous work we showed that it is formed by an endocytic event that we called megapinocytosis. The megapinosome is filled with a membrane surrounded trabecular meshwork that is topologically part of the cytosol. In this work we used scanning transmission electron tomography on high pressure frozen and freeze substituted human macrophages in order to unravel the three-dimensional structure of both the megapinosome and the adjacent structures. The megapinosome consists of the trabecular meshwork and the lacunae which are connected with and topologically equivalent to the cytosol. The surrounding lumen is topologically equivalent to the structures of the vesicular pathway. In addition, we show the connections of the trabecular meshwork with the cytosol and the connection of the megapinosomes to a complex tubular and cisternal system covering a large part of the macrophages that we named megapinosome complex. We assume that our methodological approach, based on high pressure freezing from a defined physiological state and three-dimensional imaging, renders the tubular components of the macrophages better visible than the classical two-dimensional imaging of chemically fixed cells used as a "blueprint" for textbook illustrations. The cell biological functions of the megapinosome are largely enigmatic. Probably, megapinosomes assures storage of surface membranes that can be promptly made available when a macrophage needs to change shape to move through a tissue, to uptake extracellular material or dead cells as well as to fight against microbes.
Insights
The megapinosome, a novel organelle in human macrophages, features a unique trabecular meshwork connected to the cytosol. This structure likely aids macrophages in shape changes, material uptake, and microbial defense.
Area of Science:
- Cell Biology
- Macrophage Biology
- Endocytosis
Background:
- The megapinosome is an endocytic organelle observed in human macrophages.
- Previous work identified its formation via megapinocytosis.
- Its internal structure and connections were not fully understood.
Purpose of the Study:
- To elucidate the three-dimensional structure of the megapinosome and associated cellular components.
- To investigate the topological relationships between the megapinosome, cytosol, and vesicular pathway.
- To identify connections between megapinosomes and other cellular structures.
Main Methods:
- High-pressure freezing and freeze substitution of human macrophages.
- Scanning transmission electron tomography (STEM) for high-resolution 3D imaging.
- Analysis of ultrastructural details and cellular connections.
Main Results:
- The megapinosome comprises a trabecular meshwork and lacunae, topologically continuous with the cytosol.
- The lumen of the megapinosome is topologically equivalent to the vesicular pathway.
- Connections were established between the trabecular meshwork and cytosol, and between megapinosomes and a larger "megapinosome complex".
Conclusions:
- The study reveals the detailed 3D architecture of the megapinosome and its complex network within macrophages.
- The findings suggest a role for megapinosomes in membrane storage for macrophage functions like motility and phagocytosis.
- Advanced imaging techniques provide a more accurate view of macrophage ultrastructure compared to traditional methods.
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