AbstractThe effects of bicarbonate buffer (HCO−3/CO2) on the activity of the two K+ channels proposed by some to control the pancreatic B-cell membrane response to glucose were studied. Single K+-channel records from membrane patches of cultured B-cells dissociated from adult rat islets exposed to a glucose- and bicarbonate-free medium (Na-Hepes in place of bicarbonate) exhibit the activity of both the ATP-sensitive as well as the [Ca2+]i-activated K+ channels. However, in the presence of bicarbonate-buffered Krebs solution, the activity of the ATP-sensitive K+ channel is inhibited leaving the activity of the K+ channel activated by intracellular [Ca2+]i unaffected. In the absence of bicarbonate (Hepes/NaOH in place of bicarbonate), lowerin...
Since their discovery in pancreatic ß-cells, ATP-sensitive K+ channels in the cell membrane have bee...
The effects of glucose, diazoxide, K+, and tolbutamide on the activity of K+ channels, membrane pote...
1. The effects of intracellular pH (pHi) on the ATP-sensitive K+ channel (K+ATP channel) from mouse ...
AbstractThe effects of bicarbonate buffer (HCO−3/CO2) on the activity of the two K+ channels propose...
AbstractGlucose-stimulated insulin release from rodent pancreatic B-cells is thought to be initiated...
AbstractThe study of the influence of intracellular pH (pHi) changes on the mechanism underlying pan...
AbstractMeasurements of the effects of NH3/NH4+ on glucose-induced electrical activity in β-cells fr...
AbstractATP-sensitive K+ channels in inside-out membrane patches from dispersed rat pancreatic B-cel...
During glucose stimulation, pancreatic beta-cells display membrane potential oscillations that corre...
Based on the existence of ATP-sensitive potassium channels in the plasma membrane of pancreatic beta...
AbstractThe patch-clamp technique in the cell-attached mode was used to study the K channels present...
Stimulation of insulin release by glucose requires Ca2+ influx in pancreatic B-cells. This influx oc...
Two types of K channel regulated by ATP were observed in pancreatic beta cells from a type-2 diabeti...
AbstractThe pancreatic β-cell displays an electrical activity consisting of spike bursts and silent ...
Since their discovery in pancreatic p-cells, ATP-sensitive K+ channels in the cell membrane have bee...
Since their discovery in pancreatic ß-cells, ATP-sensitive K+ channels in the cell membrane have bee...
The effects of glucose, diazoxide, K+, and tolbutamide on the activity of K+ channels, membrane pote...
1. The effects of intracellular pH (pHi) on the ATP-sensitive K+ channel (K+ATP channel) from mouse ...
AbstractThe effects of bicarbonate buffer (HCO−3/CO2) on the activity of the two K+ channels propose...
AbstractGlucose-stimulated insulin release from rodent pancreatic B-cells is thought to be initiated...
AbstractThe study of the influence of intracellular pH (pHi) changes on the mechanism underlying pan...
AbstractMeasurements of the effects of NH3/NH4+ on glucose-induced electrical activity in β-cells fr...
AbstractATP-sensitive K+ channels in inside-out membrane patches from dispersed rat pancreatic B-cel...
During glucose stimulation, pancreatic beta-cells display membrane potential oscillations that corre...
Based on the existence of ATP-sensitive potassium channels in the plasma membrane of pancreatic beta...
AbstractThe patch-clamp technique in the cell-attached mode was used to study the K channels present...
Stimulation of insulin release by glucose requires Ca2+ influx in pancreatic B-cells. This influx oc...
Two types of K channel regulated by ATP were observed in pancreatic beta cells from a type-2 diabeti...
AbstractThe pancreatic β-cell displays an electrical activity consisting of spike bursts and silent ...
Since their discovery in pancreatic p-cells, ATP-sensitive K+ channels in the cell membrane have bee...
Since their discovery in pancreatic ß-cells, ATP-sensitive K+ channels in the cell membrane have bee...
The effects of glucose, diazoxide, K+, and tolbutamide on the activity of K+ channels, membrane pote...
1. The effects of intracellular pH (pHi) on the ATP-sensitive K+ channel (K+ATP channel) from mouse ...