Altered inactivation kinetics in skeletal muscle Na(+) channels due to mutations in the encoding gene are causal for the alterations in muscle excitability in nondystrophic myotonia. Na(+) channel blockers like lidocaine and mexiletine, suggested for therapy of myotonia, do not reconstitute inactivation in channels with defective inactivation in vitro. We examined the effects of four methylated and/or halogenated phenol derivatives on one heterologously expressed inactivation-deficient Paramyotonia congenita-mutant (R1448H) muscle Na(+) channel in vitro. All these compounds accelerated delayed inactivation of R1448H-whole-cell currents during a depolarization and delayed accelerated recovery from inactivation. The potency of these effects p...
The antiarrhythmic drug mexiletine (Mex) is also used against myotonia. Searching for a more efficie...
AbstractAn unusual form of painful congenital myotonia is associated with a novel SCN4A mutation cau...
Patients with myotonia congenita have muscle hyperexcitability due to loss-of-function mutations in ...
We have studied the effects of four different phenol derivatives, with methyl and halogen substituen...
The F1473S mutation of the adult human skeletal muscle Na+ channel causes paramyotonia congenita, a ...
Background: Myotonia and periodic paralysis caused by sodium channel mutations show variable respons...
Several heritable forms of myotonia and hyperkalemic periodic paralysis (HyperPP) are caused by miss...
The voltage-gated sodium channels represent an important target for drug discovery since a large num...
To search for use-dependent sodium channel blockers to selectively solve skeletal muscle hyperexcita...
Flecainide, a class IC antiarrhythmic, was shown to improvemyotonia caused by sodium channel mutati...
Missense mutations in the skeletal muscle Na+ channel alpha subunit occur in several heritable forms...
1. We studied the effects of benzylalcohol on heterologously expressed wild type (WT), paramyotonia ...
Sodium channel myotonia and paramyotonia congenita are caused by gain-of-function mutations in the s...
AbstractOver 20 different missense mutations in the α subunit of the adult skeletal muscle Na channe...
To search for use-dependent sodium channel blockers to se-lectively solve skeletal muscle hyperexcit...
The antiarrhythmic drug mexiletine (Mex) is also used against myotonia. Searching for a more efficie...
AbstractAn unusual form of painful congenital myotonia is associated with a novel SCN4A mutation cau...
Patients with myotonia congenita have muscle hyperexcitability due to loss-of-function mutations in ...
We have studied the effects of four different phenol derivatives, with methyl and halogen substituen...
The F1473S mutation of the adult human skeletal muscle Na+ channel causes paramyotonia congenita, a ...
Background: Myotonia and periodic paralysis caused by sodium channel mutations show variable respons...
Several heritable forms of myotonia and hyperkalemic periodic paralysis (HyperPP) are caused by miss...
The voltage-gated sodium channels represent an important target for drug discovery since a large num...
To search for use-dependent sodium channel blockers to selectively solve skeletal muscle hyperexcita...
Flecainide, a class IC antiarrhythmic, was shown to improvemyotonia caused by sodium channel mutati...
Missense mutations in the skeletal muscle Na+ channel alpha subunit occur in several heritable forms...
1. We studied the effects of benzylalcohol on heterologously expressed wild type (WT), paramyotonia ...
Sodium channel myotonia and paramyotonia congenita are caused by gain-of-function mutations in the s...
AbstractOver 20 different missense mutations in the α subunit of the adult skeletal muscle Na channe...
To search for use-dependent sodium channel blockers to se-lectively solve skeletal muscle hyperexcit...
The antiarrhythmic drug mexiletine (Mex) is also used against myotonia. Searching for a more efficie...
AbstractAn unusual form of painful congenital myotonia is associated with a novel SCN4A mutation cau...
Patients with myotonia congenita have muscle hyperexcitability due to loss-of-function mutations in ...