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...
Stimulation of insulin release by glucose requires Ca2+ influx in pancreatic B-cells. This influx oc...
AbstractThe perforated patch technique was used to assess the relative contribution of KATP channel ...
Two major pathways are implicated in the stimulation of insulin secretion by glucose. The K+-ATP cha...
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...
AbstractThe pancreatic β-cell displays an electrical activity consisting of spike bursts and silent ...
AbstractSingle calcium-channel currents were recorded from membrane patches of cultured β-cells diss...
Based on the existence of ATP-sensitive potassium channels in the plasma membrane of pancreatic beta...
The electrical activity of pancreatic beta-cells, which has been closely correlated both with intrac...
During glucose stimulation, pancreatic beta-cells display membrane potential oscillations that corre...
Since their discovery in pancreatic ß-cells, ATP-sensitive K+ channels in the cell membrane have bee...
AbstractIn pancreatic β-cells, K,ATP channels respond to changes in glucose to regulate cell excitab...
Since their discovery in pancreatic p-cells, ATP-sensitive K+ channels in the cell membrane have bee...
Stimulation of insulin release by glucose requires Ca2+ influx in pancreatic B-cells. This influx oc...
AbstractThe perforated patch technique was used to assess the relative contribution of KATP channel ...
Two major pathways are implicated in the stimulation of insulin secretion by glucose. The K+-ATP cha...
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...
AbstractThe pancreatic β-cell displays an electrical activity consisting of spike bursts and silent ...
AbstractSingle calcium-channel currents were recorded from membrane patches of cultured β-cells diss...
Based on the existence of ATP-sensitive potassium channels in the plasma membrane of pancreatic beta...
The electrical activity of pancreatic beta-cells, which has been closely correlated both with intrac...
During glucose stimulation, pancreatic beta-cells display membrane potential oscillations that corre...
Since their discovery in pancreatic ß-cells, ATP-sensitive K+ channels in the cell membrane have bee...
AbstractIn pancreatic β-cells, K,ATP channels respond to changes in glucose to regulate cell excitab...
Since their discovery in pancreatic p-cells, ATP-sensitive K+ channels in the cell membrane have bee...
Stimulation of insulin release by glucose requires Ca2+ influx in pancreatic B-cells. This influx oc...
AbstractThe perforated patch technique was used to assess the relative contribution of KATP channel ...
Two major pathways are implicated in the stimulation of insulin secretion by glucose. The K+-ATP cha...