329 results on '"Tanti, Jean-François"'
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2. GIPR expression is induced by thiazolidinediones in a PPARγ-independent manner and repressed by obesogenic stimuli
3. Periprostatic Adipose Tissue Displays a Chronic Hypoxic State that Limits Its Expandability
4. TAXOMET: A French Prospective Multicentric Randomized Phase II Study of Docetaxel Plus Metformin Versus Docetaxel Plus Placebo in Metastatic Castration-Resistant Prostate Cancer
5. Circulating Levels of Soluble Dipeptidyl Peptidase-4 Are Dissociated from Inflammation and Induced by Enzymatic DPP4 Inhibition
6. Adipocyte glucocorticoid receptor activation with high glucocorticoid doses impairs healthy adipose tissue expansion by repressing angiogenesis
7. Rab4b Deficiency in T Cells Promotes Adipose Treg/Th17 Imbalance, Adipose Tissue Dysfunction, and Insulin Resistance
8. Inhibition of eIF5A hypusination reprogrammes metabolism and glucose handling in mouse kidney
9. Adipocyte Glucocorticoid Receptor Activation With High Glucocorticoid Doses Impairs Healthy Adipose Tissue Expansion by Repressing Angiogenesis.
10. Data from Prevention of Mutagenesis: New Potential Mechanisms of Metformin Action in Neoplastic Cells
11. Supplemental Figures S1-S12 from Inhibition of the GTPase Rac1 Mediates the Antimigratory Effects of Metformin in Prostate Cancer Cells
12. Related Article from Prevention of Mutagenesis: New Potential Mechanisms of Metformin Action in Neoplastic Cells
13. Data from PGC1α Inhibits Polyamine Synthesis to Suppress Prostate Cancer Aggressiveness
14. Figure S3 from PGC1α Inhibits Polyamine Synthesis to Suppress Prostate Cancer Aggressiveness
15. Supplementary Data from PGC1α Inhibits Polyamine Synthesis to Suppress Prostate Cancer Aggressiveness
16. Data from Targeting Cancer Cell Metabolism: The Combination of Metformin and 2-Deoxyglucose Induces p53-Dependent Apoptosis in Prostate Cancer Cells
17. Data from Metformin, Independent of AMPK, Induces mTOR Inhibition and Cell-Cycle Arrest through REDD1
18. Supplementary Figures 1-3 from Metformin, Independent of AMPK, Induces mTOR Inhibition and Cell-Cycle Arrest through REDD1
19. Supplementary Figure 1 from Targeting Cancer Cell Metabolism: The Combination of Metformin and 2-Deoxyglucose Induces p53-Dependent Apoptosis in Prostate Cancer Cells
20. Maintenance of Macrophage Redox Status by ChREBP Limits Inflammation and Apoptosis and Protects against Advanced Atherosclerotic Lesion Formation
21. ERK1 is dispensable for mouse pancreatic beta cell function but is necessary for glucose-induced full activation of MSK1 and CREB
22. Impact of Proinflammatory Cytokines on Adipocyte Insulin Signaling
23. An Adipocyte Cell Culture Model to Study the Impact of Protein and Micro-RNA Modulation on Adipocyte Function
24. The Stress-Responsive microRNA-34a Alters Insulin Signaling and Actions in Adipocytes through Induction of the Tyrosine Phosphatase PTP1B
25. Caloric restriction modulates Mcl-1 expression and sensitizes lymphomas to BH3 mimetic in mice
26. Metformine et cancer : de nouvelles perspectives pour un ancien médicament
27. TAXOMET : A French prospective multicentric randomized controlled phase II study comparing docetaxel plus metformin versus docetaxel plus placebo in mCRPC
28. Transfer of dysbiotic gut microbiota has beneficial effects on host liver metabolism
29. Muscle Inactivation of mTOR Causes Metabolic and Dystrophin Defects Leading to Severe Myopathy
30. Insulin Induces REDD1 Expression through Hypoxia-inducible Factor 1 Activation in Adipocytes
31. TNFα Mediates Inflammation-Induced Effects on PPARG Splicing in Adipose Tissue and Mesenchymal Precursor Cells
32. Metformine et cancer : repositionnement ou non ? … La question se pose
33. The Tpl2 Kinase Regulates the COX-2/Prostaglandin E2 Axis in Adipocytes in Inflammatory Conditions
34. Hypoxia Inhibits Cavin-1 and Cavin-2 Expression and Down-Regulates Caveolae in Adipocytes
35. Cellular mechanisms of insulin resistance: role of stress-regulated serine kinases and insulin receptor substrates (IRS) serine phosphorylation
36. Implication of the Tpl2 Kinase in Inflammatory Changes and Insulin Resistance Induced by the Interaction Between Adipocytes and Macrophages
37. Hepatocyte Growth Factor Induces Glucose Uptake in 3T3-L1 Adipocytes through A Gab1/Phosphatidylinositol 3-Kinase/Glut4 Pathway
38. A Citrullus colocynthis fruit extract acutely enhances insulin-induced GLUT4 translocation and glucose uptake in adipocytes by increasing PKB phosphorylation
39. Impact of Proinflammatory Cytokines on Adipocyte Insulin Signaling
40. Adipose Tissue MicroRNAs as Regulators of CCL2 Production in Human Obesity
41. REDD1 deficiency protects against nonalcoholic hepatic steatosis induced by high‐fat diet
42. Osmotic Regulation of Cellular Glucose Uptake
43. Tpl2 Kinase Is Upregulated in Adipose Tissue in Obesity and May Mediate Interleukin-1β and Tumor Necrosis Factor-α Effects on Extracellular Signal–Regulated Kinase Activation and Lipolysis
44. Hypoxia Decreases Insulin Signaling Pathways in Adipocytes
45. Positive and negative regulation of insulin signaling through IRS-1 phosphorylation
46. The interaction between the adaptor protein APS and Enigma is involved in actin organisation
47. Metabolic Endotoxemia Initiates Obesity and Insulin Resistance
48. Interleukin-1β-Induced Insulin Resistance in Adipocytes through Down-Regulation of Insulin Receptor Substrate-1 Expression
49. Enigma Interacts with Adaptor Protein with PH and SH2 Domains to Control Insulin-Induced Actin Cytoskeleton Remodeling and Glucose Transporter 4 Translocation
50. Brain glucagon-like peptide–1 increases insulin secretion and muscle insulin resistance to favor hepatic glycogen storage
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