Decreased microglial numbers in Vav1-Cre+:dicer knock-out mice suggest a second source of microglia beyond yolk sac

M K Fehrenbach1, M Tjwa2, I Bechmann3

  • 1Institute of Anatomy, Leipzig University, Leipzig, Germany; Department of Neurosurgery, University Hospital Leipzig, Leipzig, Germany.

Insights

Post-yolk sac hematopoiesis significantly impacts microglia development. This study shows that interfering with definitive hematopoiesis reduces microglial numbers in the developing brain.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Immunology

Background:

  • Microglia, the central nervous system's resident macrophages, originate from primitive yolk sac (YS) macrophages.
  • While YS origin is established, a non-YS contribution to microglia is increasingly suggested.
  • Understanding the full origin of microglia is crucial for neurodevelopmental research.

Purpose of the Study:

  • To investigate the role of post-yolk sac (YS) hematopoiesis in the definitive microglial population.
  • To determine the impact of interfering with post-YS hematopoiesis on microglial recruitment and development.

Main Methods:

  • Utilized Vav1-Cre+:dicer knock-out mice to target post-YS hematopoiesis.
  • Vav1 expression in hematopoietic cells from E11 allowed specific Dicer depletion.
  • Analyzed microglial numbers in prenatal (E16.5, E18.5) and postnatal (P0, P1) brains using Iba-1 staining.

Main Results:

  • A 40% reduction in Iba-1 positive microglia was observed in knock-out mice at P1.
  • Proliferation (Ki-67) and apoptosis (active caspase 3) rates did not account for the observed microglial number differences.
  • Data indicates a significant impact of interfering with definitive hematopoiesis on microglial populations.

Conclusions:

  • Post-YS hematopoiesis plays a critical role in microglial development and recruitment.
  • Interfering with definitive hematopoiesis profoundly affects the definitive microglial population.
  • These findings highlight the importance of late-stage hematopoietic contributions to CNS immunity.

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