Sulfamethoxazole (SMX) is widely used as an antibiotic in the clinical application with side effects of hypoglycemia. This is because SMX contains the sulfonamide structure, which closes ATP-sensitive potassium (K ATP ) channels and induces insulin secretion. However, there are no detail reports that measure the effective dose that can close K ATP channels and induce insulin secretion. In this study, whole-cell patch clamp recording was utilized to measure the effect of SMX on K ATP channel activity on pancreatic β cells. Also, the static incubation assay with mice islets was assessed to measure the insulin secretion capacity of SMX. SMX was shown to inhibit the K ATP channel in pancreatic β cell membrane and induce insulin secretion in rel...
Sulfonylureas have been the leading oral antihyperglycemic agents, and they presently continue to be...
Sulfonylureas are widely used to treat non-insulin dependent diabetes mellitus. These drugs exert th...
The influence of the antidiabetic sulphonylurea tolbutamide on K+ channels of mouse pancreatic beta-...
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...
<div><p>Sulphonylurea drugs stimulate insulin secretion from pancreatic β-cells primarily by inhibit...
Sulfonylureas stimulate insulin secretion from pancreatic beta-cells by closing ATP-sensitive K+ (K(...
The influence of the hypoglycemic drugs tolbutamide, meglitinide, glipizide and glibenclamide on ATP...
Sulphonylurea drugs stimulate insulin secretion from pancreatic β-cells primarily by inhibiting ATP ...
Sulphonylurea drugs stimulate insulin secretion from pancreatic β-cells primarily by inhibiting ATP ...
The view that the insulinotropic response to hypoglycemic sulfonylureas is somehow related to an inh...
K(ATP)-channel-dependent and K(ATP)-channel-independent insulin-releasing actions of the sulfonylure...
The effects of several group-specific chemical reagents were examined upon the activity of the ATP-s...
1. The effects of various sulphonylureas and diazoxide on insulin secretion and the activity of vari...
Background and purpose: ATP-sensitive potassium channels (K(ATP) channels) in beta cells are a major...
Sulfonylureas have been the leading oral antihyperglycemic agents, and they presently continue to be...
Sulfonylureas are widely used to treat non-insulin dependent diabetes mellitus. These drugs exert th...
The influence of the antidiabetic sulphonylurea tolbutamide on K+ channels of mouse pancreatic beta-...
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...
<div><p>Sulphonylurea drugs stimulate insulin secretion from pancreatic β-cells primarily by inhibit...
Sulfonylureas stimulate insulin secretion from pancreatic beta-cells by closing ATP-sensitive K+ (K(...
The influence of the hypoglycemic drugs tolbutamide, meglitinide, glipizide and glibenclamide on ATP...
Sulphonylurea drugs stimulate insulin secretion from pancreatic β-cells primarily by inhibiting ATP ...
Sulphonylurea drugs stimulate insulin secretion from pancreatic β-cells primarily by inhibiting ATP ...
The view that the insulinotropic response to hypoglycemic sulfonylureas is somehow related to an inh...
K(ATP)-channel-dependent and K(ATP)-channel-independent insulin-releasing actions of the sulfonylure...
The effects of several group-specific chemical reagents were examined upon the activity of the ATP-s...
1. The effects of various sulphonylureas and diazoxide on insulin secretion and the activity of vari...
Background and purpose: ATP-sensitive potassium channels (K(ATP) channels) in beta cells are a major...
Sulfonylureas have been the leading oral antihyperglycemic agents, and they presently continue to be...
Sulfonylureas are widely used to treat non-insulin dependent diabetes mellitus. These drugs exert th...
The influence of the antidiabetic sulphonylurea tolbutamide on K+ channels of mouse pancreatic beta-...