The majority of Na+ channels in the heart are composed of the tetrodotoxin (TTX)-resistant (KD, 2-6 microm) Nav1.5 isoform; however, recently it has been shown that TTX-sensitive (KD, 1-10 nm) neuronal Na+ channel isoforms (Nav1.1, Nav1.3 and Nav1.6) are also present and functionally important in the myocytes of the ventricles and the sinoatrial (SA) node. In the present study, in mouse SA node pacemaker cells, we investigated Na+ currents under physiological conditions and the expression of cardiac and neuronal Na+ channel isoforms. We identified two distinct Na+ current components, TTX resistant and TTX sensitive. At 37 degrees C, TTX-resistant iNa and TTX-sensitive iNa started to activate at approximately -70 and approximately -60 mV, an...
International audienceThe spontaneous activity of sinoatrial node (SAN) pacemaker cells is generated...
The human genome encodes nine functional voltage-gated Na+ channels. Three of them, namely Nav1.5, N...
The pacemaker potential of the mammalian sinoatrial node cells consist of various timedependent ioni...
The majority of Na+ channels in the heart are composed of the tetrodotoxin (TTX)-resistant (KD, 2-6 ...
There is currently some uncertainty about whether cardiac pacemaker cells contain tetrodotoxin (TTX)...
1. Newborn rabbit sino-atrial node (SAN) myocytes were recently found to express a tetrodotoxin (TTX...
Pacemaker activity of the sinoatrial node has been studied extensively in various animal species, bu...
Pacemaker activity of the sinoatrial node has been studied extensively in various animal spe-cies, b...
We have reported previously that the sinoatrial node (SAN) in the newborn rabbit expresses a Na+ cur...
The Na+ channel isoform, Navl.9 (NaN/SNS2), is preferentially expressed in small neurones of the dor...
Pacemaker cells are involved in regulating numerous essential biological functions. These cells exhi...
The origin of sinoatrial node (SAN) pacemaker activity in the heart is controversial. The leading ca...
Background: The mechanisms underlying dysfunction in the sinoatrial node (SAN), the heart's primary ...
AbstractBackground inward sodium current (IB,Na) that influences cardiac pacemaking has been compara...
Tetrodotoxin (TTX) sensitive inward Ca2+ currents, ICa(TTX), have been identified in cardiac myocyte...
International audienceThe spontaneous activity of sinoatrial node (SAN) pacemaker cells is generated...
The human genome encodes nine functional voltage-gated Na+ channels. Three of them, namely Nav1.5, N...
The pacemaker potential of the mammalian sinoatrial node cells consist of various timedependent ioni...
The majority of Na+ channels in the heart are composed of the tetrodotoxin (TTX)-resistant (KD, 2-6 ...
There is currently some uncertainty about whether cardiac pacemaker cells contain tetrodotoxin (TTX)...
1. Newborn rabbit sino-atrial node (SAN) myocytes were recently found to express a tetrodotoxin (TTX...
Pacemaker activity of the sinoatrial node has been studied extensively in various animal species, bu...
Pacemaker activity of the sinoatrial node has been studied extensively in various animal spe-cies, b...
We have reported previously that the sinoatrial node (SAN) in the newborn rabbit expresses a Na+ cur...
The Na+ channel isoform, Navl.9 (NaN/SNS2), is preferentially expressed in small neurones of the dor...
Pacemaker cells are involved in regulating numerous essential biological functions. These cells exhi...
The origin of sinoatrial node (SAN) pacemaker activity in the heart is controversial. The leading ca...
Background: The mechanisms underlying dysfunction in the sinoatrial node (SAN), the heart's primary ...
AbstractBackground inward sodium current (IB,Na) that influences cardiac pacemaking has been compara...
Tetrodotoxin (TTX) sensitive inward Ca2+ currents, ICa(TTX), have been identified in cardiac myocyte...
International audienceThe spontaneous activity of sinoatrial node (SAN) pacemaker cells is generated...
The human genome encodes nine functional voltage-gated Na+ channels. Three of them, namely Nav1.5, N...
The pacemaker potential of the mammalian sinoatrial node cells consist of various timedependent ioni...