Purpose: Several studies have indicated a potential role for SCN10A/NaV1.8 in modulating cardiac electrophysiology and arrhythmia susceptibility. However, by which mechanism SCN10A/NaV1.8 impacts on cardiac electrical function is still a matter of debate. To address this, we here investigated the functional relevance of NaV1.8 in atrial and ventricular cardiomyocytes (CMs), focusing on the contribution of NaV1.8 to the peak and late sodium current (INa) under normal conditions in different species. Methods: The effects of the NaV1.8 blocker A-803467 were investigated through patch-clamp analysis in freshly isolated rabbit left ventricular CMs, human left atrial CMs and human-induced pluripotent stem cell-derived CMs (hiPSC-CMs). Results: A-...
Cardiac myocyte contraction is initiated by a set of intricately orchestrated electrical impulses, c...
During the past decade, Nav1.5, the main voltage-gated Na+ channel in the heart, has been shown to b...
The ability to differentiate patient-specific human induced pluripotent stem cells in cardiac myocyt...
Rationale: The SCN10A gene encodes the neuronal sodium channel isoform NaV1.8. Several recent genome...
Pharmacologic approaches for the treatment of atrial arrhythmias are limited due to side effects and...
The recent volume 111 of Circulation Research focuses on the SCN10A gene that encodes the TTX-resist...
Objective: In myocardial pathology such as heart failure a late sodium current (I-NaL) augmentation ...
KEY POINTS: Late Na(+) current (INaL) contributes to action potential remodelling and Ca(2+)/Na(+) c...
AIMS: Recent studies reported slowed conduction velocity (CV) in murine hearts homozygous for the ga...
This editorial refers to ‘Tubulin polymerization modifies cardiac sodium channel expression and gati...
Abstract Generating atrial-like cardiomyocytes derived from human induced pluripotent stem cells (hi...
Aims In heart failure (HF), enhanced persistent Na+ current (I-NaL) exerts detrimental effects on ce...
BACKGROUND:Genetic variants at the SCN5A/SCN10A locus are strongly associated with electrocardiograp...
BACKGROUND: Genetic variants in SCN10A, encoding the neuronal voltage-gated sodium channel Na V1.8, ...
Aims In hypertrophy and heart failure, the proarrhythmic persistent Na+ current (INaL) is enhanced....
Cardiac myocyte contraction is initiated by a set of intricately orchestrated electrical impulses, c...
During the past decade, Nav1.5, the main voltage-gated Na+ channel in the heart, has been shown to b...
The ability to differentiate patient-specific human induced pluripotent stem cells in cardiac myocyt...
Rationale: The SCN10A gene encodes the neuronal sodium channel isoform NaV1.8. Several recent genome...
Pharmacologic approaches for the treatment of atrial arrhythmias are limited due to side effects and...
The recent volume 111 of Circulation Research focuses on the SCN10A gene that encodes the TTX-resist...
Objective: In myocardial pathology such as heart failure a late sodium current (I-NaL) augmentation ...
KEY POINTS: Late Na(+) current (INaL) contributes to action potential remodelling and Ca(2+)/Na(+) c...
AIMS: Recent studies reported slowed conduction velocity (CV) in murine hearts homozygous for the ga...
This editorial refers to ‘Tubulin polymerization modifies cardiac sodium channel expression and gati...
Abstract Generating atrial-like cardiomyocytes derived from human induced pluripotent stem cells (hi...
Aims In heart failure (HF), enhanced persistent Na+ current (I-NaL) exerts detrimental effects on ce...
BACKGROUND:Genetic variants at the SCN5A/SCN10A locus are strongly associated with electrocardiograp...
BACKGROUND: Genetic variants in SCN10A, encoding the neuronal voltage-gated sodium channel Na V1.8, ...
Aims In hypertrophy and heart failure, the proarrhythmic persistent Na+ current (INaL) is enhanced....
Cardiac myocyte contraction is initiated by a set of intricately orchestrated electrical impulses, c...
During the past decade, Nav1.5, the main voltage-gated Na+ channel in the heart, has been shown to b...
The ability to differentiate patient-specific human induced pluripotent stem cells in cardiac myocyt...