971 results on '"Langin, Dominique"'
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2. Network analyses reveal negative link between changes in adipose tissue GDF15 and BMI during dietary-induced weight loss
3. Obesity alters adipose tissue response to fasting and refeeding in women: A study on lipolytic and endocrine dynamics and acute insulin resistance
4. An integrated single cell and spatial transcriptomic map of human white adipose tissue
5. Plasma level of ATPase inhibitory factor 1 (IF1) is associated with type 2 diabetes risk in humans: A prospective cohort study
6. Les tissus adipeux thermogéniques : un rôle dans le traitement de l’obésité ?
7. The long noncoding RNA ADIPINT regulates human adipocyte metabolism via pyruvate carboxylase
8. Hormone-sensitive lipase: sixty years later
9. Lipid and glucose metabolism in white adipocytes: pathways, dysfunction and therapeutics
10. Atrial Natriuretic Peptide Orchestrates a Coordinated Physiological Response to Fuel Non-shivering Thermogenesis
11. P2Y13 receptor deficiency favors adipose tissue lipolysis and worsens insulin resistance and fatty liver disease
12. The multifunctional protein E4F1 links P53 to lipid metabolism in adipocytes
13. Collaborateurs
14. Apolipoprotein M: a novel adipokine decreasing with obesity and upregulated by calorie restriction
15. Nutrients and Gene Expression in Type 2 Diabetes
16. Contributors
17. P2Y13 receptor deficiency favors adipose tissues lipolysis and worsens insulin resistance and fatty liver disease
18. Caloric Restriction and Diet-Induced Weight Loss Do Not Induce Browning of Human Subcutaneous White Adipose Tissue in Women and Men with Obesity
19. Mitochondrial fission is associated with UCP1 activity in human brite/beige adipocytes
20. Expression of lipogenic markers is decreased in subcutaneous adipose tissue and adipocytes of older women and is negatively linked to GDF15 expression
21. FADS1 genotype is distinguished by human subcutaneous adipose tissue fatty acids, but not inflammatory gene expression
22. Niacin induces miR-502-3p expression which impairs insulin sensitivity in human adipocytes
23. Interaction between hormone-sensitive lipase and ChREBP in fat cells controls insulin sensitivity
24. Pretreatment fasting plasma glucose and insulin modify dietary weight loss success: results from 3 randomized clinical trials
25. Control of adipogenesis by oxylipins, GPCRs and PPARs
26. Effect of the interaction between diet composition and the PPM1K genetic variant on insulin resistance and β cell function markers during weight loss: results from the Nutrient Gene Interactions in Human Obesity: implications for dietary guidelines (NUGENOB) randomized trial
27. Transcriptome profiling from adipose tissue during a low-calorie diet reveals predictors of weight and glycemic outcomes in obese, nondiabetic subjects
28. Integrative phenotyping of glycemic responders upon clinical weight loss using multi-omics
29. miR-125b affects mitochondrial biogenesis and impairs brite adipocyte formation and function
30. G0/G1 Switch Gene 2 controls adipose triglyceride lipase activity and lipid metabolism in skeletal muscle
31. Adipocyte lipolysis and insulin resistance
32. Genome-wide gene-based analyses of weight loss interventions identify a potential role for NKX6.3 in metabolism
33. Baseline gene expression in subcutaneous adipose tissue predicts diet-induced weight loss in individuals with obesity
34. Effects of Fatty Acid Metabolites on Adipocytes Britening: Role of Thromboxane A2
35. Primary defects in lipolysis and insulin action in skeletal muscle cells from type 2 diabetic individuals
36. α-Lipoic acid treatment increases mitochondrial biogenesis and promotes beige adipose features in subcutaneous adipocytes from overweight/obese subjects
37. Adipose Tissue Lipolysis
38. The ω6-fatty acid, arachidonic acid, regulates the conversion of white to brite adipocyte through a prostaglandin/calcium mediated pathway
39. Le tissu adipeux brun
40. Hormone-Sensitive Lipase Deficiency in Humans
41. Immune Cell Toll-like Receptor 4 Mediates the Development of Obesity- and Endotoxemia-Associated Adipose Tissue Fibrosis
42. Lipolysis in lipid turnover, cancer cachexia, and obesity-induced insulin resistance
43. Pro-fibrotic activity of lysophosphatidic acid in adipose tissue: In vivo and in vitro evidence
44. Plasma level of ATPase inhibitory factor 1 (IF1) is associated with type 2 diabetes risk in humans: a prospective cohort study
45. Dynamics of skeletal muscle lipid pools
46. In vitro brown and “brite”/“beige” adipogenesis: Human cellular models and molecular aspects
47. Adipose tissue lipases and lipolysis
48. WISP2 regulates preadipocyte commitment and PPARγ activation by BMP4
49. Irf5 deficiency in macrophages promotes beneficial adipose tissue expansion and insulin sensitivity during obesity
50. ATGL-dependent white adipose tissue lipolysis controls hepatocyte PPARα activity
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