43 results on '"Takamoto, Iseki"'
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2. Overexpression of UBE2E2 in Mouse Pancreatic β-Cells Leads to Glucose Intolerance via Reduction of β-Cell Mass
3. Overexpression of UBE2E2 in mouse pancreatic β-cells leads to glucose intolerance via reduction of the β-cell mass
4. Gut microbial carbohydrate metabolism contributes to insulin resistance
5. Risk Classification for Metabolic Syndrome and the Incidence of Cardiovascular Disease in Japan With Low Prevalence of Obesity: A Pooled Analysis of 10 Prospective Cohort Studies
6. Lack of Brain Insulin Receptor Substrate-1 Causes Growth Retardation, With Decreased Expression of Growth Hormone–Releasing Hormone in the Hypothalamus
7. Lack of Brain Insulin Receptor Substrate-1 Causes Growth Retardation, with Decreased Expression of Growth Hormone-Releasing Hormone in the Hypothalamus
8. Lack of Brain Insulin Receptor Substrate-1 Causes Growth Retardation, with Decreased Expression of Growth Hormone-Releasing Hormone in the Hypothalamus
9. Association between tear and blood glucose concentrations: Random intercept model adjusted with confounders in tear samples negative for occult blood
10. Downregulation of macrophage Irs2 by hyperinsulinemia impairs IL-4-indeuced M2a-subtype macrophage activation in obesity
11. Impairment of M2a-Subtype Macrophage Activation by Il-4-Irs2 Pathway in Obesity
12. Tofogliflozin Suppresses the Progression of Atherosclerosis and Reduces Inflammation in Macrophages of STZ-Diabetic ApoE KO Mice due to Improvement of Glucose Tolerance
13. Development of an Automatic Puncturing and Sampling System for a Self-Monitoring Blood Glucose Device
14. Role of insulin receptor substrates in the progression of hepatocellular carcinoma
15. Dual Regulation of Gluconeogenesis by Insulin and Glucose in the Proximal Tubules of the Kidney
16. Adiponectin Enhances Quiescence Exit of Murine Hematopoietic Stem Cells and Hematopoietic Recovery Through mTORC1 Potentiation
17. Differential hepatic distribution of insulin receptor substrates causes selective insulin resistance in diabetes and obesity
18. Pioglitazone Ameliorates Smooth Muscle Cell Proliferation in Cuff-Induced Neointimal Formation by Both Adiponectin-Dependent and -Independent Pathways
19. Anagliptin increases insulin-induced skeletal muscle glucose uptake via an NO-dependent mechanism in mice
20. Adiponectin Enhances Antibacterial Activity of Hematopoietic Cells by Suppressing Bone Marrow Inflammation
21. 5. Diagnosis and Management of the Metabolic Syndrome
22. 5. Diagnosis and Management of the Metabolic Syndrome
23. Tofogliflozin Improves Insulin Resistance in Skeletal Muscle and Accelerates Lipolysis in Adipose Tissue in Male Mice
24. Adipocyte-Derived Adiponectin Positively Regulates Exit from Quiescence of Hematopoietic Stem Cells By Potentiating mTORC1 Activation after Myelotoxic Injury
25. l -cysteine reversibly inhibits glucose-induced biphasic insulin secretion and ATP production by inactivating PKM2
26. Insulin Receptor Substrate-2 (Irs2) in Endothelial Cells Plays a Crucial Role in Insulin Secretion
27. Effects of beraprost sodium, an oral prostacyclin analog, on insulin resistance in patients with type 2 diabetes
28. TCF7L2 in mouse pancreatic beta cells plays a crucial role in glucose homeostasis by regulating beta cell mass
29. Anti-Obese Hormone Adiponectin Regulates Emergency Hematopoiesis and Antibacterial Response Through Downregulation Of Socs3 In Hematopoietic Progenitor Cells
30. Dipeptidyl peptidase-4 inhibitor anagliptin ameliorates diabetes in mice with haploinsufficiency of glucokinase on a high-fat diet
31. Adiponectin Enhances Insulin Sensitivity by Increasing Hepatic IRS-2 Expression via a Macrophage-Derived IL-6-Dependent Pathway
32. Impaired Insulin Signaling in Endothelial Cells Reduces Insulin-Induced Glucose Uptake by Skeletal Muscle
33. Adiponectin and AdipoR1 regulate PGC-1α and mitochondria by Ca2+ and AMPK/SIRT1
34. Role of the liver in glucose homeostasis in PI 3-kinase p85α-deficient mice
35. Rimonabant Ameliorates Insulin Resistance via both Adiponectin-dependent and Adiponectin-independent Pathways
36. Impact of Small-Molecule Glucokinase Activator on Glucose Metabolism and β-Cell Mass
37. Dynamic Functional Relay between Insulin Receptor Substrate 1 and 2 in Hepatic Insulin Signaling during Fasting and Feeding
38. Molecular Mechanism of Moderate Insulin Resistance in Adiponectin-Knockout Mice
39. Adiponectin Stimulates AMP-Activated Protein Kinase in the Hypothalamus and Increases Food Intake
40. Targeted disruption of AdipoR1 and AdipoR2 causes abrogation of adiponectin binding and metabolic actions
41. Pioglitazone Ameliorates Insulin Resistance and Diabetes by Both Adiponectin-dependent and -independent Pathways
42. Pioglitazone Reduces Islet Triglyceride Content and Restores Impaired Glucose-Stimulated Insulin Secretion in Heterozygous Peroxisome Proliferator–Activated Receptor-γ–Deficient Mice on a High-Fat Diet
43. Insulin receptor substrate 2 plays a crucial role in β cells and the hypothalamus
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