Na+ channel currents of rat motor and sensory nerve fibres were studied with the patch-clamp technique on enzymatically demyelinated axons. Differences between motor and sensory fibres in multi-channel inactivation kinetics and the gating of late single-channel currents were investigated. In the axon-attached mode, inactivation of multi-channel Na+ currents in sensory axons was best fitted with a single time constant while for motor axons two time constants were needed. Late single-channel currents in sensory axons were characterized by short openings whereas motor axons exhibited additional long single-channel openings. In contrast, in excised, inside-out membrane patches, no differences between motor and sensory fibres were found: in both...
Myelinated nerve fibres with a reduced safety factor for conduction due to demyelination are easily ...
Amyotrophic lateral sclerosis (ALS) is a neurodegenerative disease characterized by a substantial lo...
AbstractVoltage-gated Na+ channels play a fundamental role in the excitability of nerve and muscle c...
Na+ channel currents of rat motor and sensory nerve fibres were studied with the patch-clamp techniq...
The effects of glutathione were studied on the gating behaviour of sodium channels in membrane patch...
Abstract. The effects of glutathione were studied on the gating behaviour of sodium channels in memb...
Sodium channel inactivation kinetics of rat sensory and motor nerve fibres and their modulation by g...
Several methionine-reactive reagents, including N-bromoacetamide, N-bromosuccinimide, chloramine-T, ...
To test the possible role of lysine residues in Na channel function the effects of several imidoeste...
The intracellular linker between domains III and IV of the voltage-gated Na channel mediates fast in...
In Myxicola axons subjected to moderate depolarizations the sodium inactivation time constants obtai...
Experiments on sodium channel inactivation kinetics were performed on voltage-clamped crayfish giant...
The interaction of n-propylguanidinium (nPG) with sodium channels has been further characterized. Fr...
Values for the time constant of reactivation of the sodium conductance following depolarization suff...
A number of models proposed to account for the sodium conductance changes are shown to fall into two...
Myelinated nerve fibres with a reduced safety factor for conduction due to demyelination are easily ...
Amyotrophic lateral sclerosis (ALS) is a neurodegenerative disease characterized by a substantial lo...
AbstractVoltage-gated Na+ channels play a fundamental role in the excitability of nerve and muscle c...
Na+ channel currents of rat motor and sensory nerve fibres were studied with the patch-clamp techniq...
The effects of glutathione were studied on the gating behaviour of sodium channels in membrane patch...
Abstract. The effects of glutathione were studied on the gating behaviour of sodium channels in memb...
Sodium channel inactivation kinetics of rat sensory and motor nerve fibres and their modulation by g...
Several methionine-reactive reagents, including N-bromoacetamide, N-bromosuccinimide, chloramine-T, ...
To test the possible role of lysine residues in Na channel function the effects of several imidoeste...
The intracellular linker between domains III and IV of the voltage-gated Na channel mediates fast in...
In Myxicola axons subjected to moderate depolarizations the sodium inactivation time constants obtai...
Experiments on sodium channel inactivation kinetics were performed on voltage-clamped crayfish giant...
The interaction of n-propylguanidinium (nPG) with sodium channels has been further characterized. Fr...
Values for the time constant of reactivation of the sodium conductance following depolarization suff...
A number of models proposed to account for the sodium conductance changes are shown to fall into two...
Myelinated nerve fibres with a reduced safety factor for conduction due to demyelination are easily ...
Amyotrophic lateral sclerosis (ALS) is a neurodegenerative disease characterized by a substantial lo...
AbstractVoltage-gated Na+ channels play a fundamental role in the excitability of nerve and muscle c...