From the subventricular zone (SVZ), neuronal precursor cells (NPCs), called neuroblasts, migrate through the rostral migratory stream (RMS) to become interneurons in the olfactory bulb (OB). Ion channels regulate neuronal migration during development, yet their role in migration through the adult RMS is unknown. To address this question, we utilized Nestin-CreERT2/R26R-YFP mice to fluorescently label neuroblasts in the adult. Patch-clamp recordings from neuro-blasts reveal K+ currents that are sensitive to intracellular Ca2+ levels and blocked by clotrimazole and TRAM-34, inhibitors of inter-mediate conductance Ca2+-activated K+ (KCa3.1) channels. Immu-nolabeling and electrophysiology show KCa3.1 expression restricted to neuroblasts in the ...
Neurogenesis has been the subject of active research in recent years. Although the majority of neuro...
Neural stem cells (NSCs) in the olfactory bulb (OB) core can generate mature interneurons in the adu...
The molecular mechanisms controlling the termination of cortical interneuron migration are unknown. ...
From the subventricular zone (SVZ), neuronal precursor cells (NPCs), called neuroblasts, migrate thr...
Newborn neurons are generated and incorporated into existing neural circuitry throughout the lifetim...
Neuronal migration is a key process in the developing and adult brain. Numerous factors act on intra...
New neurons are constantly added to the olfactory bulb of rodents from birth to adulthood. This accr...
International audienceFrom an early postnatal period and throughout life there is a continuous produ...
International audienceNeuronal activity has been identified as a key regulator of neuronal network d...
Neurons continue to be born in the subventricular zone (SVZ) of the lateral ventricles of adult mice...
The functional significance of the electrophysiological properties of neural precursor cells (NPCs) ...
The functional significance of the electrophysiological properties of neural precursor cells (NPCs) ...
In the brain of adult mice, cell division persists in the subventricular zone (SVZ) of the lateral v...
Adult neuronal precursors retain the remarkable capacity to migrate long distances from the posterio...
Understanding the migration of newborn neurons within the brain presents a major challenge in contem...
Neurogenesis has been the subject of active research in recent years. Although the majority of neuro...
Neural stem cells (NSCs) in the olfactory bulb (OB) core can generate mature interneurons in the adu...
The molecular mechanisms controlling the termination of cortical interneuron migration are unknown. ...
From the subventricular zone (SVZ), neuronal precursor cells (NPCs), called neuroblasts, migrate thr...
Newborn neurons are generated and incorporated into existing neural circuitry throughout the lifetim...
Neuronal migration is a key process in the developing and adult brain. Numerous factors act on intra...
New neurons are constantly added to the olfactory bulb of rodents from birth to adulthood. This accr...
International audienceFrom an early postnatal period and throughout life there is a continuous produ...
International audienceNeuronal activity has been identified as a key regulator of neuronal network d...
Neurons continue to be born in the subventricular zone (SVZ) of the lateral ventricles of adult mice...
The functional significance of the electrophysiological properties of neural precursor cells (NPCs) ...
The functional significance of the electrophysiological properties of neural precursor cells (NPCs) ...
In the brain of adult mice, cell division persists in the subventricular zone (SVZ) of the lateral v...
Adult neuronal precursors retain the remarkable capacity to migrate long distances from the posterio...
Understanding the migration of newborn neurons within the brain presents a major challenge in contem...
Neurogenesis has been the subject of active research in recent years. Although the majority of neuro...
Neural stem cells (NSCs) in the olfactory bulb (OB) core can generate mature interneurons in the adu...
The molecular mechanisms controlling the termination of cortical interneuron migration are unknown. ...