Catecholamines inhibit adenylate cyclase in pancreatic B-cells, but the importance of the resulting fall in cAMP concentration for the decrease in insulin release remains controversial. Adrenaline caused a dose-dependent inhibition (EC50 = 5.7 nM) of insulin release by mouse islets incubated in a medium containing 15 mM glucose. Supplementation of the medium with 500 microM dibutyryl-cAMP or 1 microM forskolin potentiated the effect of glucose on release and attenuated the inhibition by 1 and 10 nM adrenaline; the EC50 value was increased 2-fold. The inhibitory action of 100 nM or 1 microM adrenaline was, however, not affected. This apparent change in adrenaline potency was not simply due to the larger rate of release since it was not obser...
How does cyclic AMP potentiate insulin secretion from pancreatic islet beta-cells? This question is ...
AbstractNoradrenaline (1–10 μM) inhibited Ca2+-induced insulin secretion from electrically permeabil...
Glucose stimulation of insulin release involves closure of ATP-sensitive K+ channels, depolarization...
Activation of alpha 2-adrenergic receptors affects several signalling pathways in pancreatic B cells...
Rat islets were used to compare the mechanisms whereby adenosine and adrenaline inhibit insulin rele...
It is unclear whether the inhibition of insulin release by galanin is entirely explained by an inter...
The effects of various stimulants of insulin release on cytosolic free Ca2+, [Ca2+]i, in dispersed a...
AbstractCell capacitance (Cm), cell conductance (Gm), access conductance (Ga) and membrane voltage (...
AbstractAdenosine 3',5-cyclic monophosphate (cAMP) was shown to stimulate insulin secretion from ele...
Glucose stimulation of insulin release involves closure of ATP-sensitive K+ channels, depolarization...
Insulin and glucagon are released in pulses from pancreatic β- and α-cells, respectively. Both cell ...
Insulin is produced and secreted by the B cells in the endocrine pancreas. In vivo, insulin secretio...
There is general agreement that glucose-induced insulin release is mediated by a complex mechanism (...
Soluble adenylyl cyclase (sAC) has been hypothesized to play a role in insulin secretion. The presen...
Insulin secretion is triggered by an increase in the cytosolic calcium concentration ([Ca(2+)](c)) i...
How does cyclic AMP potentiate insulin secretion from pancreatic islet beta-cells? This question is ...
AbstractNoradrenaline (1–10 μM) inhibited Ca2+-induced insulin secretion from electrically permeabil...
Glucose stimulation of insulin release involves closure of ATP-sensitive K+ channels, depolarization...
Activation of alpha 2-adrenergic receptors affects several signalling pathways in pancreatic B cells...
Rat islets were used to compare the mechanisms whereby adenosine and adrenaline inhibit insulin rele...
It is unclear whether the inhibition of insulin release by galanin is entirely explained by an inter...
The effects of various stimulants of insulin release on cytosolic free Ca2+, [Ca2+]i, in dispersed a...
AbstractCell capacitance (Cm), cell conductance (Gm), access conductance (Ga) and membrane voltage (...
AbstractAdenosine 3',5-cyclic monophosphate (cAMP) was shown to stimulate insulin secretion from ele...
Glucose stimulation of insulin release involves closure of ATP-sensitive K+ channels, depolarization...
Insulin and glucagon are released in pulses from pancreatic β- and α-cells, respectively. Both cell ...
Insulin is produced and secreted by the B cells in the endocrine pancreas. In vivo, insulin secretio...
There is general agreement that glucose-induced insulin release is mediated by a complex mechanism (...
Soluble adenylyl cyclase (sAC) has been hypothesized to play a role in insulin secretion. The presen...
Insulin secretion is triggered by an increase in the cytosolic calcium concentration ([Ca(2+)](c)) i...
How does cyclic AMP potentiate insulin secretion from pancreatic islet beta-cells? This question is ...
AbstractNoradrenaline (1–10 μM) inhibited Ca2+-induced insulin secretion from electrically permeabil...
Glucose stimulation of insulin release involves closure of ATP-sensitive K+ channels, depolarization...