<div><p>Voltage-gated sodium channels are responsible for the initiation and propagation of action potentials (APs). Two brain isoforms, Nav1.1 and Nav1.6, have very distinct cellular and subcellular expression. Specifically, Nav1.1 is predominantly expressed in the soma and proximal axon initial segment of fast-spiking GABAergic neurons, while Nav1.6 is found at the distal axon initial segment and nodes of Ranvier of both fast-spiking GABAergic and excitatory neurons. Interestingly, an auxiliary voltage-gated sodium channel subunit, Navβ4, is also enriched in the axon initial segment of fast-spiking GABAergic neurons. The C-terminal tail of Navβ4 is thought to mediate resurgent sodium current, an atypical current that occurs immediately fo...
AbstractThe Nav1.6 voltage-gated sodium channel has been implicated in the generation of resurgent c...
Living organisms react to external stimuli to adapt their activity to the environment for survival. ...
The inhibition of voltage-gated sodium (Na-V) channels in somatosensory neurons presents a promising...
Voltage-gated sodium channels are responsible for the initiation and propagation of action potential...
Voltage-gated sodium channels (Navs) are critical determinants of cellular excitability. These ion c...
AbstractNav1.2 and Nav1.6 are two voltage-gated sodium channel isoforms that are abundant in the adu...
The vestibular inner ear transmits head-motion information to the brain via two populations of prima...
Cerebellar granule (CG) cells generate high-frequency action potentials that have been proposed to d...
Background: Increased electrical activity in peripheral sensory neurons including dorsal root gangli...
Cerebellar granule (CG) cells generate high-frequency action potentials that have been proposed to d...
Voltage-gated sodium channels (Navs) are large four-domain transmembrane proteins responsible for th...
Voltage-gated sodium (Nav) channels are intrinsic plasma membrane proteins that initiate the action ...
Neocortical pyramidal neurons express several distinct subtypes of voltage-gated Na+ channels. In ma...
Voltage-gated sodium channels are key contributors to membrane excitability. These channels are expr...
BACKGROUND: Increased electrical activity in peripheral sensory neurons including dorsal root gangli...
AbstractThe Nav1.6 voltage-gated sodium channel has been implicated in the generation of resurgent c...
Living organisms react to external stimuli to adapt their activity to the environment for survival. ...
The inhibition of voltage-gated sodium (Na-V) channels in somatosensory neurons presents a promising...
Voltage-gated sodium channels are responsible for the initiation and propagation of action potential...
Voltage-gated sodium channels (Navs) are critical determinants of cellular excitability. These ion c...
AbstractNav1.2 and Nav1.6 are two voltage-gated sodium channel isoforms that are abundant in the adu...
The vestibular inner ear transmits head-motion information to the brain via two populations of prima...
Cerebellar granule (CG) cells generate high-frequency action potentials that have been proposed to d...
Background: Increased electrical activity in peripheral sensory neurons including dorsal root gangli...
Cerebellar granule (CG) cells generate high-frequency action potentials that have been proposed to d...
Voltage-gated sodium channels (Navs) are large four-domain transmembrane proteins responsible for th...
Voltage-gated sodium (Nav) channels are intrinsic plasma membrane proteins that initiate the action ...
Neocortical pyramidal neurons express several distinct subtypes of voltage-gated Na+ channels. In ma...
Voltage-gated sodium channels are key contributors to membrane excitability. These channels are expr...
BACKGROUND: Increased electrical activity in peripheral sensory neurons including dorsal root gangli...
AbstractThe Nav1.6 voltage-gated sodium channel has been implicated in the generation of resurgent c...
Living organisms react to external stimuli to adapt their activity to the environment for survival. ...
The inhibition of voltage-gated sodium (Na-V) channels in somatosensory neurons presents a promising...