Background and Objectives:Recent studies have shown that many kinds of K+ channels, including the muscarinic K+ channel (KACh), are activated in the ischemic heart. It is known that these channels can be modulated by phosphorylation. However, little is known about the function of the KACh in ischemic hearts. In this study, we examined whether the KACh channel is mediated by protein kinase C (PKC) activation in rat atrial myocytes under ischemic conditions. Materials and Methods:Single atrial cells of adult rat heart were prepared by collagenase digestion. Channel activity of KACh was recorded by cell-attached configuration from single atrial cells under ische-mic conditions, using a patch clamp technique. To simulate ischemia, adenosine or ...
Mitochondrial calcium-sensitive potassium (mK(Ca)) channels are involved in cardiac preconditioning....
Activation of opioid receptors dramatically decreases the degree of ischemic damage in rat myocardiu...
AbstractAcetylcholine (ACh) rapidly increases cardiac K+ currents (IKACh) by activating muscarinic K...
We first determined whether the cardioprotection resulting from kappa opioid receptor (kappa-OR) sti...
Mediators involved in ischemic preconditioning, such as adenosine and norepinephrine, can activate p...
The activation of PKC and/or Cl channels have much in common with the controlling factors associated...
Background A variety of previous studies have demon-strated reduced diastolic potential and electric...
Ischaemic preconditioning, using a brief period of ischaemia and reperfusion, may protect the heart ...
The cellular and ionic mechanisms for the initiation and maintenance of life-threatening ventricular...
AbstractPlatelet-activating factor (PAF), added to the bathing solution, stimulated the cardiac musc...
Signaling mechanisms for muscarinic receptor-mediated vasoconstriction in coronary resistance arteri...
AIM: To test the hypothesis that cellular uncoupling induced by myocardial ischemia is mediated by ...
The microelectrode array was used to study the pharmacologic preconditioning effect of adenosine tri...
We tested the hypothesis that the high-conductance calcium-activated potassium (KCa) channel is invo...
Background—The specialized cardiac conduction system (CCS) expresses a unique complement of ion chan...
Mitochondrial calcium-sensitive potassium (mK(Ca)) channels are involved in cardiac preconditioning....
Activation of opioid receptors dramatically decreases the degree of ischemic damage in rat myocardiu...
AbstractAcetylcholine (ACh) rapidly increases cardiac K+ currents (IKACh) by activating muscarinic K...
We first determined whether the cardioprotection resulting from kappa opioid receptor (kappa-OR) sti...
Mediators involved in ischemic preconditioning, such as adenosine and norepinephrine, can activate p...
The activation of PKC and/or Cl channels have much in common with the controlling factors associated...
Background A variety of previous studies have demon-strated reduced diastolic potential and electric...
Ischaemic preconditioning, using a brief period of ischaemia and reperfusion, may protect the heart ...
The cellular and ionic mechanisms for the initiation and maintenance of life-threatening ventricular...
AbstractPlatelet-activating factor (PAF), added to the bathing solution, stimulated the cardiac musc...
Signaling mechanisms for muscarinic receptor-mediated vasoconstriction in coronary resistance arteri...
AIM: To test the hypothesis that cellular uncoupling induced by myocardial ischemia is mediated by ...
The microelectrode array was used to study the pharmacologic preconditioning effect of adenosine tri...
We tested the hypothesis that the high-conductance calcium-activated potassium (KCa) channel is invo...
Background—The specialized cardiac conduction system (CCS) expresses a unique complement of ion chan...
Mitochondrial calcium-sensitive potassium (mK(Ca)) channels are involved in cardiac preconditioning....
Activation of opioid receptors dramatically decreases the degree of ischemic damage in rat myocardiu...
AbstractAcetylcholine (ACh) rapidly increases cardiac K+ currents (IKACh) by activating muscarinic K...