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1. Dynamics and Regulation of Insulin Secretion in Pancreatic Islets from Normal Young Children.

2. Dynamics of glucose-induced insulin secretion in normal human islets.

3. Activators of PKA and Epac distinctly influence insulin secretion and cytosolic Ca2+ in female mouse islets stimulated by glucose and tolbutamide.

4. Metabolic amplification of insulin secretion by glucose is independent of β-cell microtubules.

5. Glucose controls cytosolic Ca2+ and insulin secretion in mouse islets lacking adenosine triphosphate-sensitive K+ channels owing to a knockout of the pore-forming subunit Kir6.2.

6. Glucose-induced cytosolic pH changes in beta-cells and insulin secretion are not causally related: studies in islets lacking the Na+/H+ exchangeR NHE1.

7. Overnight culture unmasks glucose-induced insulin secretion in mouse islets lacking ATP-sensitive K+ channels by improving the triggering Ca2+ signal.

8. Glucose stimulates Ca2+ influx and insulin secretion in 2-week-old beta-cells lacking ATP-sensitive K+ channels.

9. Nutrient control of insulin secretion in isolated normal human islets.

10. In vivo and in vitro glucose-induced biphasic insulin secretion in the mouse: pattern and role of cytoplasmic Ca2+ and amplification signals in beta-cells.

11. The elevation of glutamate content and the amplification of insulin secretion in glucose-stimulated pancreatic islets are not causally related.

12. Inhibition of protein synthesis sequentially impairs distinct steps of stimulus-secretion coupling in pancreatic beta cells

13. Human Insulinomas Show Distinct Patterns of Insulin Secretion In Vitro.

14. Disruption and stabilization of β-cell actin microfilaments differently influence insulin secretion triggered by intracellular Ca2+ mobilization or store-operated Ca2+ entry

15. Metabolic amplifying pathway increases both phases of insulin secretion independently of β-cell actin microfilaments.

16. Overnight Culture Unmasks Glucose-induced Insulin Secretion in Mouse Islets Lacking ATP-sensitive K+ Channels by Improving the Triggering Ca2+ Signal.

17. Glucose Stimulates Ca2+ Influx and Insulin Secretion in 2-Week-old β-CelIs Lacking ATP-sensitive K+ Channels.

18. Signals and pools underlying biphasic insulin secretion.

19. Magnesium uptake by pancreatic islet cells is modulated by stimulators and inhibitors of the B-cell function.

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