The ATP-sensitive K+-channel (KATP channel) plays a key role in insulin secretion from pancreatic beta cells. It is closed both by glucose metabolism and the sulfonylurea drugs that are used in the treatment of noninsulin-dependent diabetes mellitus, thereby initiating a membrane depolarization that activates voltage-dependent Ca2+ entry and insulin release. The beta cell KATP channel is a complex of two proteins: Kir6.2 and SUR1. The former is an ATP-sensitive K+-selective pore, whereas SUR1 is a channel regulator that endows Kir6.2 with sensitivity to sulfonylureas. A number of drugs containing an imidazoline moiety, such as phentolamine, also act as potent stimulators of insulin secretion, but their mechanism of action is unknown. We hav...
Insulin secretion from pancreatic beta cells is coupled to cell metabolism through closure of ATP-se...
Insulin secretion from pancreatic beta cells is coupled to cell metabolism through closure of ATP-se...
Sulfonylureas stimulate insulin secretion from pancreatic beta-cells by closing ATP-sensitive K+ (K(...
The ATP-sensitive K+-channel (KATP channel) plays a key role in insulin secretion from pancreatic be...
Sulphonylureas have been the backbone of the management of type 2 diabetes mellitus. As they interac...
ATP-sensitive potassium (KATP) channels are a major drug target for the treatment of type-2 diabetes...
Sulfonylureas have been the leading oral antihyperglycemic agents, and they presently continue to be...
ATP‐sensitive potassium (KATP) channels couple the metabolic state of a cell to its electrical activ...
(Requests for oVprints should be addressed to S Seino) ATP-sensitive K+ channels (KATP channels) pla...
ATP-sensitive potassium (KATP) channels in the pancreatic beta cell membrane mediate insulin release...
ATP-sensitive potassium (KATP) channels are a major drug target for the treatment of type-2 diabetes...
ATP-sensitive K+ (KATP) channels are widely distributed in a variety of tissues and cell types. KATP...
1. We have investigated the mechanism of action of the novel anti-diabetic agent mitiglinide (S 2140...
ATP-sensitive K+ (KATP) channels are widely distributed in a variety of tissues and cell types. KATP...
A t 30,000 feet, ATP-sensitive potassium (KATP)channels are seen coupling the metabolic statusof the...
Insulin secretion from pancreatic beta cells is coupled to cell metabolism through closure of ATP-se...
Insulin secretion from pancreatic beta cells is coupled to cell metabolism through closure of ATP-se...
Sulfonylureas stimulate insulin secretion from pancreatic beta-cells by closing ATP-sensitive K+ (K(...
The ATP-sensitive K+-channel (KATP channel) plays a key role in insulin secretion from pancreatic be...
Sulphonylureas have been the backbone of the management of type 2 diabetes mellitus. As they interac...
ATP-sensitive potassium (KATP) channels are a major drug target for the treatment of type-2 diabetes...
Sulfonylureas have been the leading oral antihyperglycemic agents, and they presently continue to be...
ATP‐sensitive potassium (KATP) channels couple the metabolic state of a cell to its electrical activ...
(Requests for oVprints should be addressed to S Seino) ATP-sensitive K+ channels (KATP channels) pla...
ATP-sensitive potassium (KATP) channels in the pancreatic beta cell membrane mediate insulin release...
ATP-sensitive potassium (KATP) channels are a major drug target for the treatment of type-2 diabetes...
ATP-sensitive K+ (KATP) channels are widely distributed in a variety of tissues and cell types. KATP...
1. We have investigated the mechanism of action of the novel anti-diabetic agent mitiglinide (S 2140...
ATP-sensitive K+ (KATP) channels are widely distributed in a variety of tissues and cell types. KATP...
A t 30,000 feet, ATP-sensitive potassium (KATP)channels are seen coupling the metabolic statusof the...
Insulin secretion from pancreatic beta cells is coupled to cell metabolism through closure of ATP-se...
Insulin secretion from pancreatic beta cells is coupled to cell metabolism through closure of ATP-se...
Sulfonylureas stimulate insulin secretion from pancreatic beta-cells by closing ATP-sensitive K+ (K(...