BACKGROUND: There is only one established drug binding site on sodium channels. However, drug binding of sodium channels shows extreme promiscuity: ∼25% of investigated drugs have been found to potently inhibit sodium channels. The structural diversity of these molecules suggests that they may not share the binding site, and/or the mode of action. Our goal was to attempt classification of sodium channel inhibitors by measuring multiple properties of inhibition in electrophysiology experiments. We also aimed to investigate if different properties of inhibition correlate with specific chemical properties of the compounds. METHODOLOGY/PRINCIPAL FINDINGS: A comparative electrophysiological study of 35 compounds, including classic sodium channel...
Na channels are the source of excitatory currents for the nervous system and muscle. They are the ta...
Abstract: Ion channel targeted drugs have always been related with either the central nervous system...
Sodium channel blockers are commonly used as local anaesthetics, antiarrhythmics and anti-epileptics...
Background: There is only one established drug binding site on sodium channels. However, drug bindin...
We have developed an automated patch-clamp protocol that allows high information content screening o...
Voltage-gated sodium (Nav) channels are therapeutic targets for several disorders affecting humans, ...
The development of novel anticonvulsant drugs with improved efficacy for the treatment of epilepsy i...
Antiarrhythmics, anticonvulsants and local anesthetics inhibit voltage gated sodium channels and red...
Background and purpose: Pilsicainide, an anti-arrhythmic drug used in Japan, is described as a pure ...
Nerve and muscle signalling is controlled by voltage-gated sodium (Nav) channels which are the targe...
We previously showed that the β-adrenoceptor modulators, clenbuterol and propranolol, directly block...
Voltage-gated sodium channels (Nav) represent a therapeutically validated group of targets for the d...
OBJECTIVE: Evidence from basic neurophysiology and molecular genetics has implicated persistent sodi...
Mexiletine and lidocaine are widely used class IB anti-arrhythmic drugs that are considered to act b...
Voltage-clamp studies of myelinated nerve fibers that are de-signed to determine structural criteria...
Na channels are the source of excitatory currents for the nervous system and muscle. They are the ta...
Abstract: Ion channel targeted drugs have always been related with either the central nervous system...
Sodium channel blockers are commonly used as local anaesthetics, antiarrhythmics and anti-epileptics...
Background: There is only one established drug binding site on sodium channels. However, drug bindin...
We have developed an automated patch-clamp protocol that allows high information content screening o...
Voltage-gated sodium (Nav) channels are therapeutic targets for several disorders affecting humans, ...
The development of novel anticonvulsant drugs with improved efficacy for the treatment of epilepsy i...
Antiarrhythmics, anticonvulsants and local anesthetics inhibit voltage gated sodium channels and red...
Background and purpose: Pilsicainide, an anti-arrhythmic drug used in Japan, is described as a pure ...
Nerve and muscle signalling is controlled by voltage-gated sodium (Nav) channels which are the targe...
We previously showed that the β-adrenoceptor modulators, clenbuterol and propranolol, directly block...
Voltage-gated sodium channels (Nav) represent a therapeutically validated group of targets for the d...
OBJECTIVE: Evidence from basic neurophysiology and molecular genetics has implicated persistent sodi...
Mexiletine and lidocaine are widely used class IB anti-arrhythmic drugs that are considered to act b...
Voltage-clamp studies of myelinated nerve fibers that are de-signed to determine structural criteria...
Na channels are the source of excitatory currents for the nervous system and muscle. They are the ta...
Abstract: Ion channel targeted drugs have always been related with either the central nervous system...
Sodium channel blockers are commonly used as local anaesthetics, antiarrhythmics and anti-epileptics...