The voltage-gated sodium channel, Nav 1.8, is known to play an important role in pain signalling. In this thesis, the functional properties and drug binding sites of wild type and mutant Nav 1.8 sodium channel currents were studied in mammalian sensory neuron-derived ND7/23 cells using whole-cell patch clamp. While the voltage-dependence of activation was similar for wild type human and rat Nay 1.8 channels, the voltage-dependence of steady-state inactivation was more hyperpolarised for hNav 1.8 compared to rNav 1.8. Furthermore, as a consequence of the different time course for inactivation between human and rat channels, inhibition during frequent stimulation was less pronounced for hNav 1.8 than for rNav 1.8. Thus, this would imply that ...
Voltage-gated sodium (NaV) channels control excitable cell functions. While structural investigation...
<p>(A) Sequence alignment of D4 S6 segments for Nav1.1 to Nav1.9. The canonical local anesthetic bin...
ND7/23 cells are gaining traction as a host model to express peripheral sodium channels such as NaV1...
The voltage-gated sodium channel, Nav 1.8, is known to play an important role in pain signalling. In...
The voltage dependent sodium channel Nav1.9, is expressed preferentially in peripheral sensory neuro...
AbstractNav1.2 and Nav1.6 are two voltage-gated sodium channel isoforms that are abundant in the adu...
Voltage-gated sodium (Nav) channels are therapeutic targets for several disorders affecting humans, ...
Among the nine voltage-gated sodium channel (NaV) subtypes, NaV1.8 is an attractive therapeutic targ...
Indiana University-Purdue University Indianapolis (IUPUI)Voltage-gated sodium channels (VGSCs) are t...
AbstractThe α-subunit of tetrodotoxin-resistant voltage-gated sodium channel NaV1.8 is selectively e...
Antiarrhythmics, anticonvulsants and local anesthetics inhibit voltage gated sodium channels and red...
Human voltage-activated sodium (Nav) channels are adept at rapidly transmitting electrical signals a...
Human voltage-activated sodium (Nav) channels are adept at rapidly transmitting electrical signals a...
BACKGROUND: Increased electrical activity in peripheral sensory neurons including dorsal root gangli...
AbstractThe interaction of p11 (annexin II light chain) with the N-terminal domain of NaV1.8, a tetr...
Voltage-gated sodium (NaV) channels control excitable cell functions. While structural investigation...
<p>(A) Sequence alignment of D4 S6 segments for Nav1.1 to Nav1.9. The canonical local anesthetic bin...
ND7/23 cells are gaining traction as a host model to express peripheral sodium channels such as NaV1...
The voltage-gated sodium channel, Nav 1.8, is known to play an important role in pain signalling. In...
The voltage dependent sodium channel Nav1.9, is expressed preferentially in peripheral sensory neuro...
AbstractNav1.2 and Nav1.6 are two voltage-gated sodium channel isoforms that are abundant in the adu...
Voltage-gated sodium (Nav) channels are therapeutic targets for several disorders affecting humans, ...
Among the nine voltage-gated sodium channel (NaV) subtypes, NaV1.8 is an attractive therapeutic targ...
Indiana University-Purdue University Indianapolis (IUPUI)Voltage-gated sodium channels (VGSCs) are t...
AbstractThe α-subunit of tetrodotoxin-resistant voltage-gated sodium channel NaV1.8 is selectively e...
Antiarrhythmics, anticonvulsants and local anesthetics inhibit voltage gated sodium channels and red...
Human voltage-activated sodium (Nav) channels are adept at rapidly transmitting electrical signals a...
Human voltage-activated sodium (Nav) channels are adept at rapidly transmitting electrical signals a...
BACKGROUND: Increased electrical activity in peripheral sensory neurons including dorsal root gangli...
AbstractThe interaction of p11 (annexin II light chain) with the N-terminal domain of NaV1.8, a tetr...
Voltage-gated sodium (NaV) channels control excitable cell functions. While structural investigation...
<p>(A) Sequence alignment of D4 S6 segments for Nav1.1 to Nav1.9. The canonical local anesthetic bin...
ND7/23 cells are gaining traction as a host model to express peripheral sodium channels such as NaV1...