Stimulation of insulin release by glucose requires Ca2+ influx in pancreatic B-cells. This influx occurs during phases of electrical activity (slow waves of membrane potential with superimposed spikes) that can be monitored with intracellular microelectrodes. It has been suggested that closure of ATP-sensitive K+ channels contributes to the increase in electrical activity (and, hence, in Ca2+ influx and insulin release) produced by suprathreshold (>7 mM) concentrations of glucose. If this is the sole mechanism of control, the decrease in electrical activity that follows a decrease in glucose concentration should be mimicked by opening these ATP-sensitive K+ channels. This was achieved by diazoxide, which selectively and directly acts at the...
This thesis attempts to further clarify mechanisms behind the negative effects of overstimulation an...
The major physiological stimulus for the secretion of insulin from the pancreatic beta-cell is an in...
By closing ATP-sensitive K+ (K+-ATP) channels, glucose promotes depolarization-dependent Ca2+ entry ...
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...
The energy state of pancreatic B-cells may influence insulin release at several steps of stimulus-se...
Glucose stimulation of insulin release involves closure of ATP-sensitive K+ channels (K(+)-ATP chann...
The effects of glucose, diazoxide, K+, and tolbutamide on the activity of K+ channels, membrane pote...
The regulation of a K(+) current activating during oscillatory electrical activity (I(K,slow)) in an...
Two major pathways are implicated in the stimulation of insulin secretion by glucose. The K+-ATP cha...
The regulation of a K+ current activating during oscillatory electrical activity (I-K,I-slow) in an ...
This review article is an attempt to schematize the major alterations in ionic fluxes and B cell mem...
信州大学博士(医学)・学位論文・平成24年3月31日授与(甲第936号)・武井 真大In pancreatic beta-cells, glucose metabolism leads to clos...
Since their discovery in pancreatic p-cells, ATP-sensitive K+ channels in the cell membrane have bee...
During glucose stimulation, pancreatic beta-cells display membrane potential oscillations that corre...
This thesis attempts to further clarify mechanisms behind the negative effects of overstimulation an...
The major physiological stimulus for the secretion of insulin from the pancreatic beta-cell is an in...
By closing ATP-sensitive K+ (K+-ATP) channels, glucose promotes depolarization-dependent Ca2+ entry ...
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...
The energy state of pancreatic B-cells may influence insulin release at several steps of stimulus-se...
Glucose stimulation of insulin release involves closure of ATP-sensitive K+ channels (K(+)-ATP chann...
The effects of glucose, diazoxide, K+, and tolbutamide on the activity of K+ channels, membrane pote...
The regulation of a K(+) current activating during oscillatory electrical activity (I(K,slow)) in an...
Two major pathways are implicated in the stimulation of insulin secretion by glucose. The K+-ATP cha...
The regulation of a K+ current activating during oscillatory electrical activity (I-K,I-slow) in an ...
This review article is an attempt to schematize the major alterations in ionic fluxes and B cell mem...
信州大学博士(医学)・学位論文・平成24年3月31日授与(甲第936号)・武井 真大In pancreatic beta-cells, glucose metabolism leads to clos...
Since their discovery in pancreatic p-cells, ATP-sensitive K+ channels in the cell membrane have bee...
During glucose stimulation, pancreatic beta-cells display membrane potential oscillations that corre...
This thesis attempts to further clarify mechanisms behind the negative effects of overstimulation an...
The major physiological stimulus for the secretion of insulin from the pancreatic beta-cell is an in...
By closing ATP-sensitive K+ (K+-ATP) channels, glucose promotes depolarization-dependent Ca2+ entry ...