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Published on: October 14, 2016
Isolated cilia and crystalloid inclusions in murine bone marrow stromal cells
1Department of Pathology, School of Medicine, Keio University, Tokyo, Japan.
Abstract:
Bone marrow stromal cells, especially reticular cells and macrophages, are thought to have important functions in the hematopoietic inductive microenvironment (HIM). In order to define the details of their fine structure, the femoral bone marrow of 50 C 57 BL mice was examined by electron microscopy after fixation by vascular perfusion. Almost all the structures of the murine bone marrow stromal cells were similar to those previously reported. Murine bone marrow reticular cells had some isolated cilia (with a frequency of 6.0%) of 9 + 0 pattern in their axoneme. The murine bone marrow macrophages had crystalloid inclusions (CI) that revealed characteristic periodic substructure. These periodic structures could be classified into four types (types A-D). Type A inclusions had a rather amorphous structure and were the most common (with a frequency of 61.9%). Type B inclusions had a periodic lamellar structure oblique to the long axis of the CI itself at intervals of about 3.5 nm. Type C inclusions had a periodic lattice structure at intervals of about 3.7 nm, and were the least frequent (with a frequency of 6.0%). Type D inclusions had periodic laminated structure parallel to the long axis of CI at intervals of about 3.5 nm. Although the true significance of isolated cilia of murine bone marrow reticular cells and the periodic internal structures of CI in murine bone marrow macrophages remains unknown, they must not be ignored as only incidental findings: they may be useful to the understanding of the relationship between function and structure in future research on HIM.
Insights
Electron microscopy revealed unique structures in mouse bone marrow stromal cells. Reticular cells showed isolated cilia, and macrophages contained diverse crystalloid inclusions, offering insights into the hematopoietic inductive microenvironment.
Area of Science:
- Hematology
- Cell Biology
- Microscopy
Background:
- Bone marrow stromal cells, including reticular cells and macrophages, are crucial for hematopoiesis.
- Their specific ultrastructural features within the hematopoietic inductive microenvironment (HIM) require detailed investigation.
Purpose of the Study:
- To elucidate the fine structural details of murine bone marrow stromal cells.
- To characterize novel ultrastructural findings in reticular cells and macrophages.
Main Methods:
- Transmission electron microscopy was employed.
- Femoral bone marrow from 50 C57 BL mice was fixed via vascular perfusion.
Main Results:
- Murine bone marrow reticular cells exhibited isolated cilia (6.0%) with a 9+0 axoneme pattern.
- Murine bone marrow macrophages contained crystalloid inclusions (CI) with four distinct periodic substructures (Types A-D).
- Type A was most common (61.9%), while Type C was least frequent (6.0%).
Conclusions:
- The observed isolated cilia in reticular cells and diverse CI substructures in macrophages represent significant ultrastructural findings.
- These structures may hold functional relevance for the hematopoietic inductive microenvironment.
- Further research is needed to understand the functional significance of these cellular components.

