In the mammalian adult hippocampus, new neurons are continuously generated throughout life in the subgranular zone of the dentate gyrus. Increasing evidence point out the contribution of adult-born hippocampal granule cells (GCs) to cognitive processes such as learning and memory, indicating the relevance of understanding the molecular mechanisms that control the development of these new neurons in the preexisting hippocampal circuits. Cell proliferation and functional integration of adult-born GCs is a process highly regulated by different intrinsic and extrinsic factors. In this review, we discuss recent advances related with cellular components and extrinsic signals of the hippocampal neurogenic niche that support and modulate neurogenes...
The human brain is composed of billions of cells, including neurons and glia, with an undetermined n...
A fundamental question in the field of adult neurogenesis relies in addressing whether neurons gener...
Stem cells have the extraordinary potential to produce many different cell types. The hippocampus is...
The adult hippocampus generates functional dentate granule cells (GCs) that release glutamate onto t...
The adult hippocampus generates functional dentate granule cells (GCs) that release glutamate onto t...
Adult neurogenesis is one of the most drastic forms of brain plasticity in adulthood and there is a ...
New neurons are continuously added in the olfactory bulb and dentate gyrus of the hippocampus throug...
Adult neurogenesis is one of the most drastic forms of brain plasticity in adulthood and there is a ...
The generation of new neurons is sustained throughout adulthood in the mammalian brain due to the pr...
The adult mammalian brain possesses the remarkable capacity for generating new neurons throughout li...
The adult mammalian brain is a dynamic structure, capable of undergoing cellular and molecular remod...
The functional relevance of adult hippocampal neurogenesis has long been a matter of intense experim...
New neurons are generated throughout adulthood in two regions of the brain, the olfactory bulb and d...
SummaryAdult-born hippocampal neurons are important for cognitive plasticity in rodents. There is ev...
It is now widely accepted that adult neurogenesis plays a fundamental role in hippocampal function. ...
The human brain is composed of billions of cells, including neurons and glia, with an undetermined n...
A fundamental question in the field of adult neurogenesis relies in addressing whether neurons gener...
Stem cells have the extraordinary potential to produce many different cell types. The hippocampus is...
The adult hippocampus generates functional dentate granule cells (GCs) that release glutamate onto t...
The adult hippocampus generates functional dentate granule cells (GCs) that release glutamate onto t...
Adult neurogenesis is one of the most drastic forms of brain plasticity in adulthood and there is a ...
New neurons are continuously added in the olfactory bulb and dentate gyrus of the hippocampus throug...
Adult neurogenesis is one of the most drastic forms of brain plasticity in adulthood and there is a ...
The generation of new neurons is sustained throughout adulthood in the mammalian brain due to the pr...
The adult mammalian brain possesses the remarkable capacity for generating new neurons throughout li...
The adult mammalian brain is a dynamic structure, capable of undergoing cellular and molecular remod...
The functional relevance of adult hippocampal neurogenesis has long been a matter of intense experim...
New neurons are generated throughout adulthood in two regions of the brain, the olfactory bulb and d...
SummaryAdult-born hippocampal neurons are important for cognitive plasticity in rodents. There is ev...
It is now widely accepted that adult neurogenesis plays a fundamental role in hippocampal function. ...
The human brain is composed of billions of cells, including neurons and glia, with an undetermined n...
A fundamental question in the field of adult neurogenesis relies in addressing whether neurons gener...
Stem cells have the extraordinary potential to produce many different cell types. The hippocampus is...