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1. In depth functional characterization of human induced pluripotent stem cell-derived beta cells in vitro and in vivo

2. NNT reverse mode of operation mediates glucose control of mitochondrial NADPH and glutathione redox state in mouse pancreatic β-cells

3. Emerging Roles of Metallothioneins in Beta Cell Pathophysiology: Beyond and above Metal Homeostasis and Antioxidant Response

4. The islet estrogen receptor-α is induced by hyperglycemia and protects against oxidative stress-induced insulin-deficient diabetes.

5. Protective antioxidant and antiapoptotic effects of ZnCl2 in rat pancreatic islets cultured in low and high glucose concentrations.

6. Glucose-induced O₂ consumption activates hypoxia inducible factors 1 and 2 in rat insulin-secreting pancreatic beta-cells.

7. Prolonged culture of human pancreatic islets under glucotoxic conditions changes their acute beta cell calcium and insulin secretion glucose response curves from sigmoid to bell-shaped

8. Nutrient Metabolism, Subcellular Redox State, and Oxidative Stress in Pancreatic Islets and β-Cells

9. Editorial Overview: 'Islet Biology in Type 2 Diabetes'

10. Glucose Acutely Reduces Cytosolic and Mitochondrial H2O2in Rat Pancreatic Beta Cells

11. Emerging Roles of Metallothioneins in Beta Cell Pathophysiology: Beyond and Above Metal Homeostasis and Antioxidant Response

12. Inhibition of the water channel aquaporin-1 prevents myocardial remodeling by blocking the transmembrane transport of hydrogen peroxide

13. Stimulating brain drug delivery

14. Aspalathin Protects Insulin-Producing β Cells against Glucotoxicity and Oxidative Stress-Induced Cell Death

15. Proof-of-concept for 2D/CT element analysis of entire cryofrozen islets of Langerhans using a cryoloop synchrotron X-ray fluorescence setup

16. Inhibition of aquaporin-1 prevents myocardial remodeling by blocking the transmembrane transport of hydrogen peroxide

17. Exenatide induces frataxin expression and improves mitochondrial function in Friedreich ataxia

18. Glucolipotoxic conditions induce β-cell iron import, cytosolic ROS formation and apoptosis

19. Mechanisms of β-cell dedifferentiation in diabetes: recent findings and future research directions

20. Biomarkers of tumour redox status in response to modulations of glutathione and thioredoxin antioxidant pathways

21. NNT reverse mode of operation mediates glucose control of mitochondrial NADPH and glutathione redox state in mouse pancreatic β-cells

22. NADPH oxidase-2 does not contribute to β-cell glucotoxicity in cultured pancreatic islets from C57BL/6J mice

23. Metallothionein 1 negatively regulates glucose-stimulated insulin secretion and is differentially expressed in conditions of beta cell compensation and failure in mice and humans

24. Phlda3 regulates beta cell survival during stress

25. Hypoxia reduces ER-to-Golgi protein trafficking and increases cell death by inhibiting the adaptive unfolded protein response in mouse beta cells

26. Glucose Acutely Reduces Cytosolic and Mitochondrial H

27. Somatostatin is Only Partly Required for the Glucagonostatic Effect of Glucose but is Necessary for the Glucagonostatic Effect of KATP Channel Blockers

28. Pancreatic β-cell tRNA hypomethylation and fragmentation link TRMT10A deficiency with diabetes

29. Glucokinase activation is beneficial or toxic to cultured rat pancreatic islets depending on the prevailing glucose concentration

30. Somatostatin Is Only Partly Required for the Glucagonostatic Effect of Glucose but Is Necessary for the Glucagonostatic Effect of K

31. Acute nutrient regulation of the mitochondrial glutathione redox state in pancreatic β-cells

32. The molecular mechanisms of pancreatic β-cell glucotoxicity: Recent findings and future research directions

33. Mitochondrial oxidative stress contributes differently to rat pancreatic islet cell apoptosis and insulin secretory defects after prolonged culture in a low non-stimulating glucose concentration

34. HDLs Protect Pancreatic β-Cells Against ER Stress by Restoring Protein Folding and Trafficking

35. Role of activating transcription factor 3 in low glucose- and thapsigargin-induced apoptosis in cultured mouse islets

36. Mechanisms of Control of the Free Ca2+ Concentration in the Endoplasmic Reticulum of Mouse Pancreatic β-Cells

37. 35Cardiac aquaporin-1 mediates transmembrane transport of hydrogen peroxide and modulates myocardial fibrosis and hypertrophic remodeling

38. Cluster analysis of rat pancreatic islet gene mRNA levels after culture in low-, intermediate- and high-glucose concentrations

39. Glucose-induced Cytosolic pH Changes in β-Cells and Insulin Secretion Are Not Causally Related

40. Acute nutrient regulation of the unfolded protein response and integrated stress response in cultured rat pancreatic islets

41. Unveiling a common mechanism of apoptosis in β-cells and neurons in Friedreich's ataxia

42. Antioxidants N-acetyl-<scp>l</scp>-cysteine and manganese(III)tetrakis (4-benzoic acid)porphyrin do not prevent β-cell dysfunction in rat islets cultured in high glucose for 1 wk

43. Mechanisms of Pancreatic β-Cell Death in Type 1 and Type 2 Diabetes

44. Atypical Ca2+-induced Ca2+release from a sarco-endoplasmic reticulum Ca2+-ATPase 3-dependent Ca2+pool in mouse pancreatic β-cells

45. Haeme-oxygenase 1 expression in rat pancreatic beta cells is stimulated by supraphysiological glucose concentrations and by cyclic AMP

46. Hierarchy of the β-cell signals controlling insulin secretion

47. Corticosteroids Induce Expression of Aquaporin-1 and Increase Transcellular Water Transport in Rat Peritoneum

48. SERCA3 Ablation Does Not Impair Insulin Secretion but Suggests Distinct Roles of Different Sarcoendoplasmic Reticulum Ca2+ Pumps for Ca2+ Homeostasis in Pancreatic β-cells

49. Do Oscillations of Insulin Secretion Occur in the Absence of Cytoplasmic Ca2+ Oscillations in β-Cells?

50. The Islet Estrogen Receptor-α Is Induced by Hyperglycemia and Protects Against Oxidative Stress-Induced Insulin-Deficient Diabetes

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