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1. Genome-Wide Meta-analysis Identifies Genetic Variants Associated With Glycemic Response to Sulfonylureas

2. Genetic studies of abdominal MRI data identify genes regulating hepcidin as major determinants of liver iron concentration

3. Genetic analysis of blood molecular phenotypes reveals common properties in the regulatory networks affecting complex traits

4. Discovery of drug–omics associations in type 2 diabetes with generative deep-learning models

6. Metabolite ratios as potential biomarkers for type 2 diabetes: a DIRECT study

7. Genome-Wide Meta-analysis Identifies Genetic Variants Associated With Glycemic Response to Sulfonylureas. Diabetes Care 2021;44:2673–2682

11. Genome-Wide Meta-Analysis Identifies the Organic Anion-Transporting Polypeptide Gene SLCO1B1 and Statins as Modifiers of Glycemic Response to Sulfonylureas

12. The CTRB1/2 Locus Affects Diabetes Susceptibility and Treatment via the Incretin Pathway

13. The CTRB1/2 locus affects diabetes susceptibility and treatment via the incretin pathway

15. Genetic studies of abdominal MRI data identify genes regulating hepcidin as major determinants of liver iron concentration

16. Variation in the Plasma Membrane Monoamine Transporter (PMAT) (Encoded by SLC29A4) and Organic Cation Transporter 1 (OCT1) (Encoded by SLC22A1) and Gastrointestinal Intolerance to Metformin in Type 2 Diabetes : An IMI DIRECT Study

17. Variation in the Plasma Membrane Monoamine Transporter (PMAT) (Encoded by SLC29A4) and Organic Cation Transporter 1 (OCT1) (Encoded by SLC22A1) and Gastrointestinal Intolerance to Metformin in Type 2 Diabetes:An IMI DIRECT Study

18. Genetic studies of abdominal MRI data identify genes regulating hepcidin as major determinants of liver iron concentration

20. Integrative network analysis highlights biological processes underlying GLP-1 stimulated insulin secretion:A DIRECT study

21. Metabolite ratios as potential biomarkers for type 2 diabetes: a DIRECT study

22. Integrative network analysis highlights biological processes underlying GLP-1 stimulated insulin secretion: A DIRECT study

24. Integrative network analysis highlights biological processes underlying GLP-1 stimulated insulin secretion: A DIRECT study

26. Variation in the Plasma Membrane Monoamine Transporter (PMAT) (Encoded by ) and Organic Cation Transporter 1 (OCT1) (Encoded by ) and Gastrointestinal Intolerance to Metformin in Type 2 Diabetes: An IMI DIRECT Study.

27. HbA is associated with altered expression in blood of cell cycle- and immune response-related genes.

28. The CTRB1/2 locus affects diabetes susceptibility and treatment via the incretin pathway

29. Protein-altering variants associated with body mass index implicate pathways that control energy intake and expenditure underpinning obesity

30. The Functional c.-2G>C Variant of the Mineralocorticoid Receptor Modulates Blood Pressure, Renin, and Aldosterone Levels

31. Variation in the glucose transporter gene SLC2A2 is associated with glycemic response to metformin

32. The CTRB1/2 Locus Affects Diabetes Susceptibility and Treatment via the Incretin Pathway.

34. Variation in the glucose transporter gene SLC2A2 is associated with glycemic response to metformin

35. Response to Comment on Dawed et al. Genome-Wide Meta-analysis Identifies Genetic Variants Associated With Glycemic Response to Sulfonylureas. Diabetes Care 2021;44:2673-2682.

36. Variation in the Plasma Membrane Monoamine Transporter (PMAT) (Encoded by SLC29A4 ) and Organic Cation Transporter 1 (OCT1) (Encoded by SLC22A1 ) and Gastrointestinal Intolerance to Metformin in Type 2 Diabetes: An IMI DIRECT Study.

37. HbA 1c is associated with altered expression in blood of cell cycle- and immune response-related genes.

38. Metabolite ratios as potential biomarkers for type 2 diabetes: a DIRECT study.

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