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Updated: Feb 11, 2026

Isolation of Early Hematopoietic Stem Cells from Murine Yolk Sac and AGM
Published on: June 27, 2008
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.
Abstract:
Microglia represent the resident macrophages of the central nervous system (CNS). While it is clear that microglia recruitment is established by differentiation of primitive yolk sac (YS) macrophages and consecutive invasion of the brain, starting around E8 in rodents (Ginhoux et al., 2010), more recent studies suggest that a non-YS contribution to the microglia population should not entirely be dismissed (Swinnen et al., 2013; Xu et al., 2015). Therefore, we used Vav1-Cre+:dicer knock-out mice in order to study the effect of the post-YS hematopoiesis on the definitive microglial population in late prenatal (E16.5, E18.5) and early postnatal brains (P0, P1). Since Vav1 is thereby exclusively expressed in hematopoietic cells starting at E11, the depletion of the micro RNA processing enzyme dicer in Vav1-positive cells allows interfering with post-YS microglia recruitment. Using this approach, analysis of the number of Iba-1 positive microglia revealed a reduction of microglial numbers by 40% in knock-out mice at P1 compared to their individual control littermates. Noteworthy, immunolabeling for Ki-67 and active caspase 3 confirmed that the differences in the microglial numbers are not related to differential rates of proliferation or apoptosis. Therefore, our data demonstrates that interfering with the definitive hematopoiesis highly impacts on the microglial population, implicating an important role of post-YS hematopoiesis on microglial development and recruitment.
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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