International audienceThe spontaneous activity of sinoatrial node (SAN) pacemaker cells is generated by a functional interplay between the activity of ionic currents of the plasma membrane and intracellular Ca2+ dynamics. The molecular correlate of a dihydropyridine (DHP)-sensitive sustained inward Na+ current (I st), a key player in SAN automaticity, is still unknown. Here we show that I st and the L-type Ca2+ current (I Ca,L) share CaV1.3 as a common molecular determinant. Patch-clamp recordings of mouse SAN cells showed that I st is activated in the diastolic depolarization range, and displays Na+ permeability and minimal inactivation and sensitivity to I Ca,L activators and blockers. Both CaV1.3-mediated I Ca,L and I st were abolished i...
BackgroundEarly afterdepolarizations (EADs) are triggers of cardiac arrhythmia driven by L-type Ca(2...
The majority of Na+ channels in the heart are composed of the tetrodotoxin (TTX)-resistant (KD, 2-6 ...
This study presents a theoretical analysis of the role of store Ca²⁺ uptake on sinoatrial node (SAN)...
Background: Sinoatrial node cells (SANC) automaticity is generated by functional association between...
International audienceBackground: Sinoatrial node cells (SANC) automaticity is generated by function...
Introduction: Normal heart rhythm depends on a precise and regular activity of the sinoatrial node (...
International audienceSino-atrial node (SAN) automaticity is an essential mechanism of heart rate ge...
Heart automaticity is generated by a basic pacemaker mechanism not fully understood and still contro...
Cardiac automaticity, in normal conditions, is generated by the Sinoatrial Node (SAN) tissue.In the ...
Background: The mechanisms underlying dysfunction in the sinoatrial node (SAN), the heart's primary ...
Recent evidence indicates that the voltage (cyclic activation and deactivation of membrane ion chann...
AIMS: Cardiac voltage-gated sodium channels control action potential (AP) upstroke and cell excitabi...
International audienceCardiac automaticity is set by pacemaker activity of the sinus node (SAN). In ...
Pacemaker cells are involved in regulating numerous essential biological functions. These cells exhi...
The majority of Na+ channels in the heart are composed of the tetrodotoxin (TTX)-resistant (KD, 2-6 ...
BackgroundEarly afterdepolarizations (EADs) are triggers of cardiac arrhythmia driven by L-type Ca(2...
The majority of Na+ channels in the heart are composed of the tetrodotoxin (TTX)-resistant (KD, 2-6 ...
This study presents a theoretical analysis of the role of store Ca²⁺ uptake on sinoatrial node (SAN)...
Background: Sinoatrial node cells (SANC) automaticity is generated by functional association between...
International audienceBackground: Sinoatrial node cells (SANC) automaticity is generated by function...
Introduction: Normal heart rhythm depends on a precise and regular activity of the sinoatrial node (...
International audienceSino-atrial node (SAN) automaticity is an essential mechanism of heart rate ge...
Heart automaticity is generated by a basic pacemaker mechanism not fully understood and still contro...
Cardiac automaticity, in normal conditions, is generated by the Sinoatrial Node (SAN) tissue.In the ...
Background: The mechanisms underlying dysfunction in the sinoatrial node (SAN), the heart's primary ...
Recent evidence indicates that the voltage (cyclic activation and deactivation of membrane ion chann...
AIMS: Cardiac voltage-gated sodium channels control action potential (AP) upstroke and cell excitabi...
International audienceCardiac automaticity is set by pacemaker activity of the sinus node (SAN). In ...
Pacemaker cells are involved in regulating numerous essential biological functions. These cells exhi...
The majority of Na+ channels in the heart are composed of the tetrodotoxin (TTX)-resistant (KD, 2-6 ...
BackgroundEarly afterdepolarizations (EADs) are triggers of cardiac arrhythmia driven by L-type Ca(2...
The majority of Na+ channels in the heart are composed of the tetrodotoxin (TTX)-resistant (KD, 2-6 ...
This study presents a theoretical analysis of the role of store Ca²⁺ uptake on sinoatrial node (SAN)...