1. We examined the effect of the sulphonylurea glimepiride on three types of recombinant ATP-sensitive potassium (K(ATP)) channels. 2. K(ATP) channels share a common pore-forming subunit, Kir6.2, which associates with different sulphonylurea receptor isoforms (SUR1 in beta-cells, SUR2A in heart and SUR2B in smooth muscle). 3. Kir6.2 was coexpressed with SUR1, SUR2A or SUR2B in Xenopus oocytes and macroscopic K(ATP) currents were recorded from giant inside-out membrane patches. Glimepiride was added to the intracellular membrane surface. 4. Glimepiride inhibited Kir6.2/SUR currents by interaction with two sites: a low-affinity site on Kir6.2 (IC(50)= approximately 400 microM) and a high-affinity site on SUR (IC(50)=3.0 nM for SUR1, 5.4 nM fo...
1. We have examined the mechanism by which nucleotides modulate the tolbutamide block of the beta-ce...
ATP-sensitive potassium channels (K(ATP)) are formed from four pore-forming Kir6.2 subunits complexe...
Sulfonylurea drugs exert their insulinotropic action by inhibiting ATP-sensitive potassium channels ...
Sulfonylureas stimulate insulin secretion from pancreatic beta-cells by closing ATP-sensitive K+ (K(...
Sulfonylureas stimulate insulin secretion from pancreatic beta-cells by closing ATP-sensitive K+ (K(...
AIMS/HYPOTHESIS: To investigate the tissue specificity of gliclazide for cloned beta-cell, cardiac a...
1. We have investigated the mechanism of action of the novel anti-diabetic agent mitiglinide (S 2140...
Sulfonylureas stimulate insulin secretion in type-2 diabetic patients by blocking ATP-sensitive (K(A...
Sulfonylureas are widely used to stimulate insulin secretion in type 2 diabetic patients because the...
1. The beta-cell K(ATP) channel is composed of two types of subunit - the inward rectifier K(+) chan...
1. The beta-cell K(ATP) channel is composed of two types of subunit - the inward rectifier K(+) chan...
AIMS/HYPOTHESIS: The carbamoylbenzoic acid derivative repaglinide is a potent short-acting insulin s...
Sulphonylurea drugs are the therapy of choice for treating neonatal diabetes (ND) caused by mutation...
Nicorandil is a new antianginal agent that potentially may be used to treat the cardiovascular side ...
Nicorandil is a new antianginal agent that potentially may be used to treat the cardiovascular side ...
1. We have examined the mechanism by which nucleotides modulate the tolbutamide block of the beta-ce...
ATP-sensitive potassium channels (K(ATP)) are formed from four pore-forming Kir6.2 subunits complexe...
Sulfonylurea drugs exert their insulinotropic action by inhibiting ATP-sensitive potassium channels ...
Sulfonylureas stimulate insulin secretion from pancreatic beta-cells by closing ATP-sensitive K+ (K(...
Sulfonylureas stimulate insulin secretion from pancreatic beta-cells by closing ATP-sensitive K+ (K(...
AIMS/HYPOTHESIS: To investigate the tissue specificity of gliclazide for cloned beta-cell, cardiac a...
1. We have investigated the mechanism of action of the novel anti-diabetic agent mitiglinide (S 2140...
Sulfonylureas stimulate insulin secretion in type-2 diabetic patients by blocking ATP-sensitive (K(A...
Sulfonylureas are widely used to stimulate insulin secretion in type 2 diabetic patients because the...
1. The beta-cell K(ATP) channel is composed of two types of subunit - the inward rectifier K(+) chan...
1. The beta-cell K(ATP) channel is composed of two types of subunit - the inward rectifier K(+) chan...
AIMS/HYPOTHESIS: The carbamoylbenzoic acid derivative repaglinide is a potent short-acting insulin s...
Sulphonylurea drugs are the therapy of choice for treating neonatal diabetes (ND) caused by mutation...
Nicorandil is a new antianginal agent that potentially may be used to treat the cardiovascular side ...
Nicorandil is a new antianginal agent that potentially may be used to treat the cardiovascular side ...
1. We have examined the mechanism by which nucleotides modulate the tolbutamide block of the beta-ce...
ATP-sensitive potassium channels (K(ATP)) are formed from four pore-forming Kir6.2 subunits complexe...
Sulfonylurea drugs exert their insulinotropic action by inhibiting ATP-sensitive potassium channels ...