The spontaneous action potential (AP) firing rate of sinoatrial nodal cells (SANC) is regulated by a system of intracellular Ca2+ and membrane ion current clocks driven by Ca2+-calmodulin-activated adenylyl cyclase-protein kinase-A signaling. The mean AP-cycle length (APCL) and APCL variability inform on the effectiveness of clock coupling. Endogenous ATP metabolite adenosine binds to adenosine receptors (A1, A3) that couple to Gi protein-coupled receptors, reducing spontaneous AP firing rate via Gβγ signaling that activates IKAch,Ado. Adenosine also inhibits adenylyl cyclase activity via Gαi signaling, impacting cAMP-mediated protein kinase-A-dependent protein phosphorylation. We hypothesize that in addition to IKAch,Ado activation, adenos...
BackgroundTorsade de pointes (TDP) is thought to result from early afterdepolarizations (EADs). Alth...
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 (...
The spontaneous action potential (AP) firing rate of sinoatrial nodal cells (SANC) is regulated by a...
The spontaneous action potential (AP) firing rate of sinoatrial nodal cells (SANC) is regulated by a...
Methods: The whole cell patch clamp technique was used to record action potentials and ion currents ...
Ca2+-activated basal adenylate cyclase (AC) in rabbit sinoatrial node cells (SANC) guarantees, via b...
: Ca(2+)-activated basal adenylate cyclase (AC) in rabbit sinoatrial node cells (SANC) guarantees, v...
The sinoatrial node is the primary pacemaker that controls the heart rate under normal conditions. A...
KEY WORDS adenosine triphosphate; action potentials; sinoatrial node; microelectrodes; rabbits AIM: ...
© 2015, Springer-Verlag Berlin Heidelberg. Atrial fibrillation (AF) has been associated with increas...
The ionic mechanisms underlying the negative dromotropic effect of adenosine were studied in calcium...
Spontaneous firing of sinoatrial (SA) node cells (SANCs) is regulated by cyclic adenosine monophosph...
Spontaneous, rhythmic subsarcolemmal local Ca2+ releases driven by cAMP-mediated, protein kinase A (...
The effects of adenosine on action potentials, rate-dependent activation failure (the cellular basis...
BackgroundTorsade de pointes (TDP) is thought to result from early afterdepolarizations (EADs). Alth...
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 (...
The spontaneous action potential (AP) firing rate of sinoatrial nodal cells (SANC) is regulated by a...
The spontaneous action potential (AP) firing rate of sinoatrial nodal cells (SANC) is regulated by a...
Methods: The whole cell patch clamp technique was used to record action potentials and ion currents ...
Ca2+-activated basal adenylate cyclase (AC) in rabbit sinoatrial node cells (SANC) guarantees, via b...
: Ca(2+)-activated basal adenylate cyclase (AC) in rabbit sinoatrial node cells (SANC) guarantees, v...
The sinoatrial node is the primary pacemaker that controls the heart rate under normal conditions. A...
KEY WORDS adenosine triphosphate; action potentials; sinoatrial node; microelectrodes; rabbits AIM: ...
© 2015, Springer-Verlag Berlin Heidelberg. Atrial fibrillation (AF) has been associated with increas...
The ionic mechanisms underlying the negative dromotropic effect of adenosine were studied in calcium...
Spontaneous firing of sinoatrial (SA) node cells (SANCs) is regulated by cyclic adenosine monophosph...
Spontaneous, rhythmic subsarcolemmal local Ca2+ releases driven by cAMP-mediated, protein kinase A (...
The effects of adenosine on action potentials, rate-dependent activation failure (the cellular basis...
BackgroundTorsade de pointes (TDP) is thought to result from early afterdepolarizations (EADs). Alth...
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 (...