The distribution of functionally active, inwardly rectifying K (K(IR)) channels was investigated in the rat small mesenteric artery using both freshly isolated smooth muscle and endothelial cells and small arterial segments. In Ca(2+)-free solution, endothelial cells displayed a K(IR) current with a maximum amplitude of 190 +/- 16 pA at -150 mV and sensitivity to block with 30 microM Ba(2+) (n = 7). In smooth muscle cells, outward K current was activated at around -47 +/- 3 mV, but there was no evidence of K(IR) current (n = 6). Furthermore, raising extracellular [K(+)] to either 60 or 140 mM, or applying the alpha(1)-adrenoceptor agonist phenylephrine (PE; 30 microM), failed to reveal an inwardly rectifying current in the smooth muscle cel...
In intact mesenteric arteries, increasing [K +] o by 5 mM hyperpolarized both endothelial and smooth...
Aim: Conduction of vasomotor responses may contribute to long-term regulation of resistance artery f...
The afferent and efferent arterioles regulate the inflow and outflow resistance of the glomerulus, a...
The distribution of functionally active, inwardly rectifying K (K(IR)) channels was investigated in ...
Copyright © 2003 S. Karger AG, BaselThe distribution of functionally active, inwardly rectifying K (...
Strong inward rectifying K+ (KIR) channels have been observed in vascular smooth muscle and can disp...
The present study was designed to elucidate whether the conduction of vasomotor responses mediated b...
K(+) channels play indispensable roles in establishing the membrane potential and in regulating the ...
OBJECTIVE: To assess the influence of blocking smooth muscle large conductance Ca(2+) -activated K...
Smooth muscle membrane potential and tension in rat isolated small mesenteric arteries (inner diamet...
OBJECTIVE: To assess the influence of blocking smooth muscle large conductance Ca(2+) -activated K...
Activation of both small-conductance (SKCa) and intermediate-conductance (IKCa) Ca2+-activated K+ ch...
1. We have investigated the cellular target of K(+) channel blockers responsible for the inhibition ...
Activation of both small-conductance (SKCa) and intermediate-conductance (IKCa) Ca2+-activated K+ ch...
Introduction: Contractile activation of vascular smooth muscle cells is limited by the release of en...
In intact mesenteric arteries, increasing [K +] o by 5 mM hyperpolarized both endothelial and smooth...
Aim: Conduction of vasomotor responses may contribute to long-term regulation of resistance artery f...
The afferent and efferent arterioles regulate the inflow and outflow resistance of the glomerulus, a...
The distribution of functionally active, inwardly rectifying K (K(IR)) channels was investigated in ...
Copyright © 2003 S. Karger AG, BaselThe distribution of functionally active, inwardly rectifying K (...
Strong inward rectifying K+ (KIR) channels have been observed in vascular smooth muscle and can disp...
The present study was designed to elucidate whether the conduction of vasomotor responses mediated b...
K(+) channels play indispensable roles in establishing the membrane potential and in regulating the ...
OBJECTIVE: To assess the influence of blocking smooth muscle large conductance Ca(2+) -activated K...
Smooth muscle membrane potential and tension in rat isolated small mesenteric arteries (inner diamet...
OBJECTIVE: To assess the influence of blocking smooth muscle large conductance Ca(2+) -activated K...
Activation of both small-conductance (SKCa) and intermediate-conductance (IKCa) Ca2+-activated K+ ch...
1. We have investigated the cellular target of K(+) channel blockers responsible for the inhibition ...
Activation of both small-conductance (SKCa) and intermediate-conductance (IKCa) Ca2+-activated K+ ch...
Introduction: Contractile activation of vascular smooth muscle cells is limited by the release of en...
In intact mesenteric arteries, increasing [K +] o by 5 mM hyperpolarized both endothelial and smooth...
Aim: Conduction of vasomotor responses may contribute to long-term regulation of resistance artery f...
The afferent and efferent arterioles regulate the inflow and outflow resistance of the glomerulus, a...