Background: The SCN5A encoded sodium current (INa) generates the action potential (AP) upstroke and is a major determinant of AP characteristics and AP propagation in cardiac myocytes. Unfortunately, in cardiac myocytes, investigation of kinetic properties of INa with near-physiological ion concentrations and temperature is technically challenging due to the large amplitude and rapidly activating nature of INa, which may seriously hamper the quality of voltage control over the membrane. We hypothesized that the alternating voltage clamp-current clamp (VC/CC) technique might provide an alternative to traditional voltage clamp (VC) technique for the determination of INa properties under physiological conditions. Principal Findings: We studied...
AbstractSodium overload of cardiac cells can accompany various pathologies and induce fatal cardiac ...
This paper describes the kinetics of an Na-conducting channel during spontaneous action potentials i...
This paper describes the kinetics of an Na-conducting channel during spontaneous action potentials i...
BACKGROUND: The SCN5A encoded sodium current (I(Na)) generates the action potential (AP) upstroke an...
The sodium (Na) channel is the fundamental unit of excitability in heart muscle. This channel has be...
Study of the excitatory sodium current (INa) intact heart muscle has been hampered by the limitation...
The inward sodium current in cardiac muscle is difficult to study by voltage clamp methods, so vario...
The objective of this work is to examine the contribution of late Na(+) current (INa,L) to the cardi...
Voltage-gated sodium channels are crucial to action potential propagation in excitable tissues. Beca...
The cardiac sodium current was studied in guinea pig ventricular myocytes using the cell-attached pa...
This article is a study of the fast Na current during action potentials. We have investigated the ou...
The different sodium channel currents (INa) were reported in myocardium, neuron, and skeletal muscle...
This article is a study of the fast Na current during action potentials. We have investigated the ou...
The inward sodium current in cardiac muscle is difficult to study by voltage clamp methods, so vario...
Aims: Reentrant arrhythmias often develop in the setting of myocardial infarction and ensuing slow p...
AbstractSodium overload of cardiac cells can accompany various pathologies and induce fatal cardiac ...
This paper describes the kinetics of an Na-conducting channel during spontaneous action potentials i...
This paper describes the kinetics of an Na-conducting channel during spontaneous action potentials i...
BACKGROUND: The SCN5A encoded sodium current (I(Na)) generates the action potential (AP) upstroke an...
The sodium (Na) channel is the fundamental unit of excitability in heart muscle. This channel has be...
Study of the excitatory sodium current (INa) intact heart muscle has been hampered by the limitation...
The inward sodium current in cardiac muscle is difficult to study by voltage clamp methods, so vario...
The objective of this work is to examine the contribution of late Na(+) current (INa,L) to the cardi...
Voltage-gated sodium channels are crucial to action potential propagation in excitable tissues. Beca...
The cardiac sodium current was studied in guinea pig ventricular myocytes using the cell-attached pa...
This article is a study of the fast Na current during action potentials. We have investigated the ou...
The different sodium channel currents (INa) were reported in myocardium, neuron, and skeletal muscle...
This article is a study of the fast Na current during action potentials. We have investigated the ou...
The inward sodium current in cardiac muscle is difficult to study by voltage clamp methods, so vario...
Aims: Reentrant arrhythmias often develop in the setting of myocardial infarction and ensuing slow p...
AbstractSodium overload of cardiac cells can accompany various pathologies and induce fatal cardiac ...
This paper describes the kinetics of an Na-conducting channel during spontaneous action potentials i...
This paper describes the kinetics of an Na-conducting channel during spontaneous action potentials i...