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3. In vitro insulin secretion by pancreatic tissue from infants with diazoxide-resistant congenital hyperinsulinism deviates from model predictions

4. Metabolic amplifying pathway increases both phases of insulin secretion independently of [beta]-cell actin microfilaments

11. No evidence for a role of reverse Na+-Ca2+ exchange in insulin release from mouse pancreatic islets

16. Tolbutamide and diazoxide influence insulin secretion by changing the concentration but not the action of cytoplasmic Ca2+ in beta-cells

17. Mechanisms of the stimulation of insulin release by saturated fatty acids: a study of palmitate effects in mouse beta-cells

22. Immaturity of insulin secretion by pancreatic islets isolated from one human neonate.

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

38. Activators of PKA and Epac Distinctly Influence Insulin Secretion and Cytosolic Ca2+in Female Mouse Islets Stimulated by Glucose and Tolbutamide

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

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

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

43. 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.

44. SERCA3 ablation does not impair insulin secretion but suggests distinct roles of different sarcoendoplasmic reticulum Ca(2+) pumps for Ca(2+) homeostasis in pancreatic beta-cells.

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

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

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

50. Insulin secretion in islets from mice with a double knockout for the dense core vesicle proteins islet antigen-2 (IA-2) and IA-2beta.

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