Pulsatile insulin output, paralleled by oscillations in intracellular Ca(2+), reflect oscillating metabolism within beta-cells in response to secretory fuels. Here we question whether oscillatory periodicity is conserved or varied from stimulation to stimulation, whether glycolysis is essential for the manifestation of an oscillatory response, and if an environment of nutrient oversupply affects oscillatory regularity. We have determined that a beta-cell oscillatory Ca(2+) pattern is independent of the type of applied secretory fuel (glucose, methyl-pyruvate, or alpha-ketoisocaproate). In addition, single cells respond with the same pattern when repeatedly stimulated, regardless of the type of stimulatory fuel. Presence of substimulatory gl...
Pancreatic islets can adapt to oscillatory glucose to produce synchronous insulin pulses. Can islets...
Based on population studies, we have hypothesized that changes in metabolism in pancreatic beta-cell...
AIMS/HYPOTHESIS: In normal mouse islets, glucose induces synchronous cytoplasmic [Ca(2+)](i) oscilla...
AbstractGlucose-stimulated insulin secretion is pulsatile and driven by intrinsic oscillations in me...
AbstractPlasma insulin is pulsatile and reflects oscillatory insulin secretion from pancreatic islet...
Abstract Pancreatic islets of Langerhans display complex intracellular calcium changes in response t...
This thesis examined parameters influencing stimulated cytoplasmic free Ca2+ concentration ([Ca2+]i)...
AbstractPancreatic islets of Langerhans display complex intracellular calcium changes in response to...
Glucose-induced insulin secretion depends on an acceleration of glucose metabolism, requires a rise ...
Abstract Insulin secretion from pancreatic β-cells is oscillatory, with a typical period of 2–7 mi...
Chemical oscillation in glycolysis induced by glucose is an universal feature in all living cells. I...
Abstract Plasma insulin is pulsatile and reflects oscillatory insulin secretion from pancreatic isle...
That oscillations of the cytoplasmic free Ca(2+) concentration ([Ca(2+)](i)) in beta-cells induce os...
OBJECTIVE: Type 2 diabetes (T2D), the most common type of diabetes characterized by high blood gluco...
AbstractInsulin secretion from pancreatic β-cells is oscillatory, with a typical period of 2–7min, r...
Pancreatic islets can adapt to oscillatory glucose to produce synchronous insulin pulses. Can islets...
Based on population studies, we have hypothesized that changes in metabolism in pancreatic beta-cell...
AIMS/HYPOTHESIS: In normal mouse islets, glucose induces synchronous cytoplasmic [Ca(2+)](i) oscilla...
AbstractGlucose-stimulated insulin secretion is pulsatile and driven by intrinsic oscillations in me...
AbstractPlasma insulin is pulsatile and reflects oscillatory insulin secretion from pancreatic islet...
Abstract Pancreatic islets of Langerhans display complex intracellular calcium changes in response t...
This thesis examined parameters influencing stimulated cytoplasmic free Ca2+ concentration ([Ca2+]i)...
AbstractPancreatic islets of Langerhans display complex intracellular calcium changes in response to...
Glucose-induced insulin secretion depends on an acceleration of glucose metabolism, requires a rise ...
Abstract Insulin secretion from pancreatic β-cells is oscillatory, with a typical period of 2–7 mi...
Chemical oscillation in glycolysis induced by glucose is an universal feature in all living cells. I...
Abstract Plasma insulin is pulsatile and reflects oscillatory insulin secretion from pancreatic isle...
That oscillations of the cytoplasmic free Ca(2+) concentration ([Ca(2+)](i)) in beta-cells induce os...
OBJECTIVE: Type 2 diabetes (T2D), the most common type of diabetes characterized by high blood gluco...
AbstractInsulin secretion from pancreatic β-cells is oscillatory, with a typical period of 2–7min, r...
Pancreatic islets can adapt to oscillatory glucose to produce synchronous insulin pulses. Can islets...
Based on population studies, we have hypothesized that changes in metabolism in pancreatic beta-cell...
AIMS/HYPOTHESIS: In normal mouse islets, glucose induces synchronous cytoplasmic [Ca(2+)](i) oscilla...