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Updated: Feb 2, 2026

Author Spotlight: Investigating Neural Activity of Dentate Gyrus Granule Cells with Miniature Microscope
Published on: August 2, 2024
Unique role for dentate gyrus microglia in neuroblast survival and in VEGF-induced activation
Tirzah Kreisel1,2, Brachi Wolf1, Eli Keshet1
1Department of Developmental Biology and Cancer Research, Hadassah Medical School, The Hebrew University, Jerusalem, Israel.
Abstract:
Neurogenic roles of microglia (MG) are thought to include an active role in adult hippocampal neurogenesis in addition to their established roles in pruning surplus dendrites and clearing dead neuroblasts. However, identification of such a role and its delineation in the neurogenic cascade is yet to be established. Using diphtheria toxin-aided MG ablation, we show that MG reduction in the DG-the site where neuronal stem cells (NSCs) reside-is sufficient to impede overall hippocampal neurogenesis due to reduced survival of newly formed neuroblasts. To examine whether MG residing in the hippocampal neurogenic zone are inherently different from MG residing elsewhere in the hippocampus, we compared growth factor responsiveness of DG MG with that of CA1 MG. Strikingly, transgenic induction of the potent neurogenic factor VEGF elicited robust on-site MG expansion and activation exclusively in the DG and despite eliciting a comparable angiogenic response in the CA1 and elsewhere. Temporally, DG-specific MG expansion preceded both angiogenic and neurogenic responses. Remarkably, even partial MG reduction during the process of VEGF-induced neurogenesis led to reducing the number of newly formed neuroblasts to the basal level. Transcriptomic analysis of MG retrieved from the naïve DG and CA1 uncovered a set of genes preferentially expressed in DG MG. Notably the tyrosine kinase Axl is exclusively expressed in naïve and VEGF-induced DG MG and its inhibition prevented neurogenesis augmentation by VEGF. Taken together, findings uncover inherent unique properties of DG MG of supporting both basal- and VEGF-induced adult hippocampal neurogenesis.
Insights
Microglia (MG) actively support adult hippocampal neurogenesis by ensuring new neuron survival. Specific microglia in the dentate gyrus (DG) are crucial for both normal and VEGF-induced neurogenesis.
Area of Science:
- Neuroscience
- Cell Biology
- Stem Cell Research
Background:
- Microglia (MG) are increasingly recognized for neurogenic roles beyond pruning and debris clearance.
- Their specific involvement in the adult hippocampal neurogenesis cascade remains to be fully elucidated.
Purpose of the Study:
- To investigate the precise role of microglia in adult hippocampal neurogenesis.
- To determine if microglia in the dentate gyrus (DG) possess unique properties supporting neurogenesis.
Main Methods:
- Diphtheria toxin-induced microglia ablation in the DG.
- Comparison of microglia response to VEGF in DG versus CA1 regions.
- Transcriptomic analysis of DG and CA1 microglia.
- Inhibition of tyrosine kinase Axl.
Main Results:
- Microglia reduction in the DG significantly impaired hippocampal neurogenesis by reducing neuroblast survival.
- Vascular Endothelial Growth Factor (VEGF) induced microglia expansion and activation specifically in the DG.
- DG microglia expansion preceded neurogenic and angiogenic responses.
- Axl tyrosine kinase was exclusively expressed in DG microglia and essential for VEGF-induced neurogenesis.
Conclusions:
- Dentate gyrus (DG) microglia exhibit unique properties supporting basal and VEGF-induced adult hippocampal neurogenesis.
- These findings highlight DG microglia as key regulators of neurogenesis in the hippocampus.
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