Cardiac sodium channels are responsible for conduction in the normal and diseased heart. We aimed to investigate regional and transmural distribution of sodium channel expression and function in the myocardium. Sodium channel Scn5a mRNA and Na(v)1.5 protein distribution was investigated in adult and embryonic mouse heart through immunohistochemistry and in situ hybridization. Functional sodium channel availability in subepicardial and subendocardial myocytes was assessed using patch-clamp technique. Adult and embryonic (ED14.5) mouse heart sections showed low expression of Na(v)1.5 in the HCN4-positive sinoatrial and atrioventricular nodes. In contrast, high expression levels of Na(v)1.5 were observed in the HCN4-positive and Cx43-negative ...
Voltage-gated sodium channels (VGSCs) are macromolecular assemblies composed of a number of proteins...
The cardiac voltage-gated Na(+) channel Na(v)1.5 generates the cardiac Na(+) current (INa). Mutation...
Rationale: Voltage-gated sodium channels initiate action potentials in excitable tissues. Mice in wh...
D ow nloaded from Aim: The aim of this study was to analyze the mRNA expression levels and protein d...
Voltage-gated sodium channels composed of a pore-forming alpha subunit and auxiliary beta subunits a...
Voltage-gated sodium channels composed of a pore-forming alpha subunit and auxiliary beta subunits a...
Voltage-gated sodium channels composed of a pore-forming alpha subunit and auxiliary beta subunits a...
Voltage-gated sodium channels composed of a pore-forming alpha subunit and auxiliary beta subunits a...
Voltage-gated sodium channels drive the initial depolarization phase of the cardiac action potential...
During the past decade, Na(v)1.5, the main voltage-gated Na(+) channel in the heart, has been shown ...
During the past decade, Na(v)1.5, the main voltage-gated Na(+) channel in the heart, has been shown ...
BACKGROUND: Sodium channels isolated from mammalian brain are composed of alpha-, beta(1)-, and beta...
BACKGROUND: Sodium channels isolated from mammalian brain are composed of alpha-, beta(1)-, and beta...
During the past decade, Nav1.5, the main voltage-gated Na+ channel in the heart, has been shown to b...
The different sodium channel currents (INa) were reported in myocardium, neuron, and skeletal muscle...
Voltage-gated sodium channels (VGSCs) are macromolecular assemblies composed of a number of proteins...
The cardiac voltage-gated Na(+) channel Na(v)1.5 generates the cardiac Na(+) current (INa). Mutation...
Rationale: Voltage-gated sodium channels initiate action potentials in excitable tissues. Mice in wh...
D ow nloaded from Aim: The aim of this study was to analyze the mRNA expression levels and protein d...
Voltage-gated sodium channels composed of a pore-forming alpha subunit and auxiliary beta subunits a...
Voltage-gated sodium channels composed of a pore-forming alpha subunit and auxiliary beta subunits a...
Voltage-gated sodium channels composed of a pore-forming alpha subunit and auxiliary beta subunits a...
Voltage-gated sodium channels composed of a pore-forming alpha subunit and auxiliary beta subunits a...
Voltage-gated sodium channels drive the initial depolarization phase of the cardiac action potential...
During the past decade, Na(v)1.5, the main voltage-gated Na(+) channel in the heart, has been shown ...
During the past decade, Na(v)1.5, the main voltage-gated Na(+) channel in the heart, has been shown ...
BACKGROUND: Sodium channels isolated from mammalian brain are composed of alpha-, beta(1)-, and beta...
BACKGROUND: Sodium channels isolated from mammalian brain are composed of alpha-, beta(1)-, and beta...
During the past decade, Nav1.5, the main voltage-gated Na+ channel in the heart, has been shown to b...
The different sodium channel currents (INa) were reported in myocardium, neuron, and skeletal muscle...
Voltage-gated sodium channels (VGSCs) are macromolecular assemblies composed of a number of proteins...
The cardiac voltage-gated Na(+) channel Na(v)1.5 generates the cardiac Na(+) current (INa). Mutation...
Rationale: Voltage-gated sodium channels initiate action potentials in excitable tissues. Mice in wh...