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.

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.

Related Concept Videos