At normal extracellular K+ concentration (5 mM), the meglitinide analogues A-4166, KAD-1229, repaglinide and S3075, all tested at a 10 μM concentration, markedly enhanced insulin release evoked by 6 mM D-glucose in isolated rat pancreatic islets. They failed, however, to augment the much higher rate of insulin release evoked by D-glucose in islets exposed to a high K+ concentration (30 mM). Under the latter conditions, the potent diazoxide analogue BPDZ-44 (50 μM) did not exert any sizeable effect upon insulin release. Even at normal K+ concentration, BPDZ-44 (50 μM), which suppressed glucose-stimulated insulin release, only caused a partial inhibition of the insulinotropic action of A-4166 and failed to affect significantly insulin secreti...
The following sequence of events is thought to underlie the stimulation of insulin release by hypogl...
1. We have investigated the mechanism of action of the novel anti-diabetic agent mitiglinide (S 2140...
Sulfonylureas stimulate insulin secretion by blocking ATP-sensitive K+ channels (K+-ATP channels) of...
The dynamics of the cationic and secretory response to A-4166, a hypoglycemic meglitinide analogue, ...
The influence of the hypoglycemic drugs tolbutamide, meglitinide, glipizide and glibenclamide on ATP...
1 The vasodilator and antihypertensive properties of pinacidil, cromakalim (BRL 34915), nicorandil a...
The view that the insulinotropic response to hypoglycemic sulfonylureas is somehow related to an inh...
1. The effects of various sulphonylureas and diazoxide on insulin secretion and the activity of vari...
A novel ATP-sensitive potassium channel (K(ATP)) channel agonist, BPDZ 154 (6,7-dichloro-3-isopropyl...
Glucose stimulation of insulin release involves closure of ATP-sensitive K+ channels, depolarization...
Glucose stimulation of insulin release involves closure of ATP-sensitive K+ channels, depolarization...
Background and purpose: ATP-sensitive potassium channels (K(ATP) channels) in beta cells are a major...
AIMS/HYPOTHESIS: The carbamoylbenzoic acid derivative repaglinide is a potent short-acting insulin s...
The energy state of pancreatic B-cells may influence insulin release at several steps of stimulus-se...
1. 1. Sodium (2S)-2-benzyl-3-(cis-hexahydro-2-isoindolinylcarbonyl) propionate (KAD-1229) is a newly...
The following sequence of events is thought to underlie the stimulation of insulin release by hypogl...
1. We have investigated the mechanism of action of the novel anti-diabetic agent mitiglinide (S 2140...
Sulfonylureas stimulate insulin secretion by blocking ATP-sensitive K+ channels (K+-ATP channels) of...
The dynamics of the cationic and secretory response to A-4166, a hypoglycemic meglitinide analogue, ...
The influence of the hypoglycemic drugs tolbutamide, meglitinide, glipizide and glibenclamide on ATP...
1 The vasodilator and antihypertensive properties of pinacidil, cromakalim (BRL 34915), nicorandil a...
The view that the insulinotropic response to hypoglycemic sulfonylureas is somehow related to an inh...
1. The effects of various sulphonylureas and diazoxide on insulin secretion and the activity of vari...
A novel ATP-sensitive potassium channel (K(ATP)) channel agonist, BPDZ 154 (6,7-dichloro-3-isopropyl...
Glucose stimulation of insulin release involves closure of ATP-sensitive K+ channels, depolarization...
Glucose stimulation of insulin release involves closure of ATP-sensitive K+ channels, depolarization...
Background and purpose: ATP-sensitive potassium channels (K(ATP) channels) in beta cells are a major...
AIMS/HYPOTHESIS: The carbamoylbenzoic acid derivative repaglinide is a potent short-acting insulin s...
The energy state of pancreatic B-cells may influence insulin release at several steps of stimulus-se...
1. 1. Sodium (2S)-2-benzyl-3-(cis-hexahydro-2-isoindolinylcarbonyl) propionate (KAD-1229) is a newly...
The following sequence of events is thought to underlie the stimulation of insulin release by hypogl...
1. We have investigated the mechanism of action of the novel anti-diabetic agent mitiglinide (S 2140...
Sulfonylureas stimulate insulin secretion by blocking ATP-sensitive K+ channels (K+-ATP channels) of...