Bone marrow CD34+/B220+ progenitors target the inflamed brain and display in vitro differentiation potential toward

N Davoust1, C Vuaillat, G Cavillon

  • 1INSERM U433, IFR des Neurosciences de Lyon, Faculté de Médecine Laënnec, Lyon, France.

Insights

Microglia may originate from circulating CD34+/B220+ myeloid progenitors, not mature monocytes. These progenitors target the brain during development and neuroinflammation, differentiating into microglial cells.

Area of Science:

  • Neuroscience
  • Immunology
  • Cell Biology

Background:

  • Microglial cells are key immune cells in the central nervous system (CNS).
  • Their precise origin, particularly whether they derive from circulating monocytes or other progenitor cells, remains debated.
  • Recent findings suggest microglial cells may share features with myeloid progenitors.

Purpose of the Study:

  • To investigate the hypothesis that microglia, or a subset thereof, originate from circulating CD34+/B220+ myeloid progenitors.
  • To determine if these progenitors can target the brain under developmental or neuroinflammatory conditions.
  • To assess the differentiation potential of CD34+/B220+ cells into microglial cells.

Main Methods:

  • Observation of CD34 and B220 antigen expression on microglial cells during brain development.
  • Utilizing experimental allergic encephalomyelitis (EAE) as a model for chronic neuroinflammation.
  • Performing intravenous transfer experiments with macrophage-colony stimulating factor (M-CSF)-expanded CD34+ myeloid progenitors in EAE mice.
  • In vitro differentiation assays of CD34+/B220+ cells from bone marrow cultures using glial cell conditioned medium.

Main Results:

  • A subpopulation of microglial cells expressed CD34 and B220 antigens during brain development.
  • In EAE mice, a distinct population of CD34+/B220+ cells was found to expand in both blood and brain.
  • Intravenously transferred M-CSF-expanded CD34+ myeloid progenitors successfully targeted the inflamed CNS in EAE mice, retaining an immature phenotype.
  • Sorted CD34+/B220+ cells demonstrated in vitro differentiation into microglial-like cells with characteristic morphology and phenotype.

Conclusions:

  • Data suggest that a subset of microglial cells originates from CD34+/B220+ myeloid progenitors that invade the CNS.
  • These progenitors may play a role in both brain development and neuroinflammatory conditions.
  • The findings challenge the traditional view of microglial origins and highlight a potential pathway for immune cell contribution to the brain.