Delineating the basic cellular components of cortical inhibitory circuits remains a fundamental issue in order to understand their specific contributions to microcircuit function. It is still unclear how current classifications of cortical interneuron subtypes relate to biological processes such as their developmental specification. Here we identified the developmental trajectory of neurogliaform cells (NGCs), the main effectors of a powerful inhibitory motif recruited by long-range connections. Using in vivo genetic lineage-tracing in mice, we report that NGCs originate from a specific pool of 5-HT3AR-expressing Hmx3+ cells located in the preoptic area (POA). Hmx3-derived 5-HT3AR+ cortical interneurons (INs) expressed the transcription fac...
Cortical pyramidal cells are generated from pallial neuroepithelial precursors, whereas GABAergic in...
Cerebral cortex projection neurons (PNs) are generated from intermediate progenitors (IPs), which ar...
SummaryHuman pluripotent stem cells are a powerful tool for modeling brain development and disease. ...
GABAergic interneurons are key inhibitory regulators of cortical circuit function. Among the dozens ...
Cortical microcircuit function relies on the coordinated activity of a large diversity of interneuro...
At present little is known about the developmental mechanisms that give rise to inhibitory g-aminobu...
Neurogliaform (RELN+) and bipolar (VIP+) GABAergic interneurons of the mammalian cerebral cortex pro...
Diverse subsets of cortical interneurons have vital roles in higher-order brain functions. To invest...
The migration of GABAergic inhibitory interneurons plays a critical role in the assembly of cortical...
Neurogliaform (RELN+) and bipolar (VIP+) GABAergic interneurons of the mammalian cerebral cortex pro...
Inhibitory GABAergic interneurons of the mouse neocortex are a highly heterogeneous population of ne...
The homeobox-encoding gene Prox1 and its Drosophila homologue prospero are key regulators of cell fa...
Cortical GABAergic interneurons constitute a highly diverse population of inhibitory neurons that ar...
Diverse gamma-aminobutyric acid-releasing interneurons regulate the functional organization of corti...
GABA-containing (GABAergic) interneurons comprise a very heterogeneousgroupof cells that are crucial...
Cortical pyramidal cells are generated from pallial neuroepithelial precursors, whereas GABAergic in...
Cerebral cortex projection neurons (PNs) are generated from intermediate progenitors (IPs), which ar...
SummaryHuman pluripotent stem cells are a powerful tool for modeling brain development and disease. ...
GABAergic interneurons are key inhibitory regulators of cortical circuit function. Among the dozens ...
Cortical microcircuit function relies on the coordinated activity of a large diversity of interneuro...
At present little is known about the developmental mechanisms that give rise to inhibitory g-aminobu...
Neurogliaform (RELN+) and bipolar (VIP+) GABAergic interneurons of the mammalian cerebral cortex pro...
Diverse subsets of cortical interneurons have vital roles in higher-order brain functions. To invest...
The migration of GABAergic inhibitory interneurons plays a critical role in the assembly of cortical...
Neurogliaform (RELN+) and bipolar (VIP+) GABAergic interneurons of the mammalian cerebral cortex pro...
Inhibitory GABAergic interneurons of the mouse neocortex are a highly heterogeneous population of ne...
The homeobox-encoding gene Prox1 and its Drosophila homologue prospero are key regulators of cell fa...
Cortical GABAergic interneurons constitute a highly diverse population of inhibitory neurons that ar...
Diverse gamma-aminobutyric acid-releasing interneurons regulate the functional organization of corti...
GABA-containing (GABAergic) interneurons comprise a very heterogeneousgroupof cells that are crucial...
Cortical pyramidal cells are generated from pallial neuroepithelial precursors, whereas GABAergic in...
Cerebral cortex projection neurons (PNs) are generated from intermediate progenitors (IPs), which ar...
SummaryHuman pluripotent stem cells are a powerful tool for modeling brain development and disease. ...