BACKGROUND AND PURPOSE: Endothelium-derived hyperpolarizing factor responses in the rat middle cerebral artery are blocked by inhibiting IKCa channels alone, contrasting with peripheral vessels where block of both IKCa and SKCa is required. As the contribution of IKCa and SKCa to endothelium-dependent hyperpolarization differs in peripheral arteries, depending on the level of arterial constriction, we investigated the possibility that SKCa might contribute to equivalent hyperpolarization in cerebral arteries under certain conditions. METHODS: Rat middle cerebral arteries (approximately 175 microm) were mounted in a wire myograph. The effect of KCa channel blockers on endothelium-dependent responses to the protease-activated receptor 2 agoni...
BACKGROUND AND PURPOSE: In small arteries, small conductance Ca²⁺-activated K⁺ channels (SK(Ca)) and...
Introduction: Contractile activation of vascular smooth muscle cells is limited by the release of en...
OBJECTIVE: The authors probed endothelium-dependent dilation and endothelial cell Ca2+ handling in m...
Endothelium-derived hyperpolarizing factor responses in the rat middle cerebral artery are blocked b...
NO/prostanoid independent, EDHF-mediated hyperpolarization and dilation in rat middle cerebral arter...
BACKGROUND AND PURPOSE: NO/prostanoid independent, EDHF-mediated hyperpolarization and dilation in r...
Background: In rat middle cerebral and mesenteric arteries the KCa2.3 component of endothelium-depen...
Background: In rat middle cerebral and mesenteric arteries the KCa2.3 component of endothelium-depen...
Activation of both small-conductance (SKCa) and intermediate-conductance (IKCa) Ca2+-activated K+ ch...
Activation of both small-conductance (SKCa) and intermediate-conductance (IKCa) Ca2+-activated K+ ch...
Background In rat middle cerebral and mesenteric arteries the KCa2.3 component of endothelium-depend...
In rat middle cerebral and mesenteric arteries the K(Ca)2.3 component of endothelium-dependent hyper...
<div><h3>Background</h3><p>In rat middle cerebral and mesenteric arteries the K<sub>Ca</sub>2.3 comp...
This study was designed to determine whether putative openers of calcium-activated potassium channel...
BACKGROUND AND PURPOSE: In small arteries, small conductance Ca²⁺-activated K⁺ channels (SK(Ca)) and...
BACKGROUND AND PURPOSE: In small arteries, small conductance Ca²⁺-activated K⁺ channels (SK(Ca)) and...
Introduction: Contractile activation of vascular smooth muscle cells is limited by the release of en...
OBJECTIVE: The authors probed endothelium-dependent dilation and endothelial cell Ca2+ handling in m...
Endothelium-derived hyperpolarizing factor responses in the rat middle cerebral artery are blocked b...
NO/prostanoid independent, EDHF-mediated hyperpolarization and dilation in rat middle cerebral arter...
BACKGROUND AND PURPOSE: NO/prostanoid independent, EDHF-mediated hyperpolarization and dilation in r...
Background: In rat middle cerebral and mesenteric arteries the KCa2.3 component of endothelium-depen...
Background: In rat middle cerebral and mesenteric arteries the KCa2.3 component of endothelium-depen...
Activation of both small-conductance (SKCa) and intermediate-conductance (IKCa) Ca2+-activated K+ ch...
Activation of both small-conductance (SKCa) and intermediate-conductance (IKCa) Ca2+-activated K+ ch...
Background In rat middle cerebral and mesenteric arteries the KCa2.3 component of endothelium-depend...
In rat middle cerebral and mesenteric arteries the K(Ca)2.3 component of endothelium-dependent hyper...
<div><h3>Background</h3><p>In rat middle cerebral and mesenteric arteries the K<sub>Ca</sub>2.3 comp...
This study was designed to determine whether putative openers of calcium-activated potassium channel...
BACKGROUND AND PURPOSE: In small arteries, small conductance Ca²⁺-activated K⁺ channels (SK(Ca)) and...
BACKGROUND AND PURPOSE: In small arteries, small conductance Ca²⁺-activated K⁺ channels (SK(Ca)) and...
Introduction: Contractile activation of vascular smooth muscle cells is limited by the release of en...
OBJECTIVE: The authors probed endothelium-dependent dilation and endothelial cell Ca2+ handling in m...