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1. Effects of adrenergic-stimulated lipolysis and cytokine production on in vitro mouse adipose tissue–islet interactions

2. Extracellular Matrix Expression in Human Pancreatic Fat Cells of Patients with Normal Glucose Regulation, Prediabetes and Type 2 Diabetes

3. Glucose homeostasis is regulated by pancreatic β-cell cilia via endosomal EphA-processing

4. What role do fat cells play in pancreatic tissue?

6. Point mutation of Ffar1 abrogates fatty acid-dependent insulin secretion, but protects against HFD-induced glucose intolerance

7. Palmitate and insulin counteract glucose-induced thioredoxin interacting protein (TXNIP) expression in insulin secreting cells via distinct mechanisms.

8. Activation of Extracellular Signal-Regulated Protein Kinases 1 and 2 (ERK1/2) by Free Fatty Acid Receptor 1 (FFAR1/GPR40) Protects from Palmitate-Induced Beta Cell Death, but Plays no Role in Insulin Secretion

9. Impact of the adipokine adiponectin and the hepatokine fetuin-A on the development of type 2 diabetes: prospective cohort- and cross-sectional phenotyping studies.

10. Extracellular Matrix Expression in Human Pancreatic Fat Cells of Patients with Normal Glucose Regulation, Prediabetes and Type 2 Diabetes

11. Metabolic implications of pancreatic fat accumulation

12. Pancreatic fat cells of humans with type 2 diabetes display reduced adipogenic and lipolytic activity

13. Effects of adrenergic-stimulated lipolysis and cytokine production on in vitro mouse adipose tissue-islet interactions

14. Metabolic implications of pancreatic fat accumulation

15. Author Correction: Glucose homeostasis is regulated by pancreatic β-cell cilia via endosomal EphA-processing

16. FFA2-, but not FFA3-agonists inhibit GSIS of human pseudoislets:a comparative study with mouse islets and rat INS-1E cells

17. Sunitinib specifically augments glucose-induced insulin secretion

21. Fetuin-A reverses functional maturation of beta-cells

22. Glucose Responsiveness of β-Cells Depends on Fatty Acids

23. Pancreatic adipocytes mediate hypersecretion of insulin in diabetes-susceptible mice

24. What role do fat cells play in pancreatic tissue?

25. Glucose homeostasis is regulated by pancreatic β-cell cilia via endosomal EphA-processing

26. Association of Pancreas Fat with Impaired Insulin Secretion Depends on Liver Fat and Circulating Fatty Acids

27. Fetuin-A impairs maturation of pig neonatal islet cell clusters

30. Metabolomic characteristics of fatty pancreas

31. The expression of aldolase B in islets is negatively associated with insulin secretion in humans

32. Role of free fatty acid signaling in islet function

33. Protein kinase Cδ regulates nuclear export of FOXO1 through phosphorylation of the chaperone 14-3-3ζ

34. Activation of Extracellular Signal-Regulated Protein Kinases 1 and 2 (ERK1/2) by Free Fatty Acid Receptor 1 (FFAR1/GPR40) Protects from Palmitate-Induced Beta Cell Death, but Plays no Role in Insulin Secretion

35. Nor-1, a novel incretin-responsive regulator of insulin genes and insulin secretion

36. Regulation of forkhead box O1 (FOXO1) by protein kinase B and glucocorticoids: different mechanisms of induction of beta cell death in vitro

37. Metabolic crosstalk between fatty pancreas and fatty liver: effects on local inflammation and insulin secretion

41. Human Islets Exhibit Electrical Activity on Microelectrode Arrays (MEA)

42. Mice with point mutations in Ffar1 display impaired glucose tolerance

45. The hepatokine fetuin-A associates with insulin resistance and induces inflammation but selectively improves cAMP-dependent insulin secretion of human islets

46. Fetuin-A influences vascular cell growth and production of proinflammatory and angiogenic proteins by human perivascular fat cells

49. Reevaluation of fatty acid receptor 1 as a drug target for the stimulation of insulin secretion in humans

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