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Updated: May 1, 2026

Bone Marrow Transplantation Procedures in Mice to Study Clonal Hematopoiesis
Published on: May 26, 2021
Cranial irradiation induces bone marrow-derived microglia in adult mouse brain tissue
Noriyuki Okonogi1, Kazuhiro Nakamura2, Yoshiyuki Suzuki1
1Department of Radiation Oncology, Gunma University Graduate School of Medicine, 3-39-22 Showa-machi, Maebashi, Gunma 371-8511, Japan.
Abstract:
Postnatal hematopoietic progenitor cells do not contribute to microglial homeostasis in adult mice under normal conditions. However, previous studies using whole-body irradiation and bone marrow (BM) transplantation models have shown that adult BM cells migrate into the brain tissue and differentiate into microglia (BM-derived microglia; BMDM). Here, we investigated whether cranial irradiation alone was sufficient to induce the generation of BMDM in the adult mouse brain. Transgenic mice that express green fluorescent protein (GFP) under the control of a murine stem cell virus (MSCV) promoter (MSCV-GFP mice) were used. MSCV-GFP mice express GFP in BM cells but not in the resident microglia in the brain. Therefore, these mice allowed us to detect BM-derived cells in the brain without BM reconstitution. MSCV-GFP mice, aged 8-12 weeks, received 13.0 Gy irradiation only to the cranium, and BM-derived cells in the brain were quantified at 3 and 8 weeks after irradiation. No BM-derived cells were detected in control non-irradiated MSCV-GFP mouse brains, but numerous GFP-labeled BM-derived cells were present in the brain stem, basal ganglia and cerebral cortex of the irradiated MSCV-GFP mice. These BM-derived cells were positive for Iba1, a marker for microglia, indicating that GFP-positive BM-derived cells were microglial in nature. The population of BMDM was significantly greater at 8 weeks post-irradiation than at 3 weeks post-irradiation in all brain regions examined. Our results clearly show that cranial irradiation alone is sufficient to induce the generation of BMDM in the adult mouse.
Insights
Cranial irradiation alone can induce bone marrow (BM) cells to become microglia (BM-derived microglia; BMDM) in adult mouse brains. This study shows that localized radiation is sufficient for generating these specific brain immune cells.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Microglia are the primary immune cells of the central nervous system.
- Previous research indicated bone marrow (BM) cells could become microglia (BM-derived microglia; BMDM) after whole-body irradiation and transplantation.
- The role of localized irradiation in BMDM generation remained unclear.
Purpose of the Study:
- To determine if cranial irradiation alone is sufficient to induce BMDM generation in adult mice.
- To track BM-derived cells in the brain without requiring BM reconstitution.
Main Methods:
- Used transgenic mice (MSCV-GFP) expressing green fluorescent protein (GFP) in BM cells.
- Administered localized cranial irradiation (13.0 Gy) to adult mice.
- Quantified GFP-labeled BM-derived cells in brain regions at 3 and 8 weeks post-irradiation.
Main Results:
- No BM-derived cells were found in non-irradiated control mice.
- Numerous GFP-labeled cells, positive for the microglial marker Iba1, were detected in the brains of irradiated mice.
- The number of BMDM increased significantly between 3 and 8 weeks after irradiation.
Conclusions:
- Localized cranial irradiation is sufficient to induce the generation of BM-derived microglia in the adult mouse brain.
- This finding offers a new model for studying BMDM without whole-body irradiation or transplantation.

