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45 results on '"Christoffer Clemmensen"'

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1. Lead-in calorie restriction enhances the weight-lowering efficacy of incretin hormone-based pharmacotherapies in mice

2. The physiology of experimental overfeeding in animals

3. Dual melanocortin‐4 receptor and GLP‐1 receptor agonism amplifies metabolic benefits in diet‐induced obese mice

4. Outrunning obesity with Lac-Phe?

5. CB1 and GLP-1 Receptors Cross Talk Provides New Therapies for Obesity

6. The scaffold protein p62 regulates adaptive thermogenesis through ATF2 nuclear target activation

7. Effects of acute exercise and exercise training on plasma GDF15 concentrations and associations with appetite and cardiometabolic health in individuals with overweight or obesity – A secondary analysis of a randomized controlled trial

8. The GDF15-GFRAL pathway is dispensable for the effects of metformin on energy balance

9. Acute and long-term effects of psilocybin on energy balance and feeding behavior in mice

10. GLP-1-mediated delivery of the PPAR𝛼/𝛾 dual-agonist Tesaglitazar improves obesity and glucose metabolism in mice

11. GLP-1-mediated delivery of tesaglitazar improves obesity and glucose metabolism in male mice

12. Muscarinic receptors in energy homeostasis: Physiology and pharmacology

13. GLP-1/dexamethasone inhibits food reward without inducing mood and memory deficits in mice

14. Effect of bariatric surgery on plasma GDF15 in humans

15. Will the COVID-19 pandemic worsen the obesity epidemic?

16. Emerging hormonal-based combination pharmacotherapies for the treatment of metabolic diseases

17. Animal models of obesity and diabetes mellitus

18. GLP-1/glucagon receptor co-agonism for treatment of obesity

19. Monomeric GLP-1/GIP/glucagon triagonism corrects obesity, hepatosteatosis, and dyslipidemia in female mice

20. Pharmacological targeting of α3β4 nicotinic receptors improves peripheral insulin sensitivity in mice with diet-induced obesity

21. Fibroblast activation protein (FAP) as a novel metabolic target

22. Reappraisal of GIP Pharmacology for Metabolic Diseases

23. Emerging Poly-Agonists for Obesity and Type 2 Diabetes

24. Pirt deficiency has subtle female-specific effects on energy and glucose metabolism in mice

25. Emerging hormonal-based combination pharmacotherapies for the treatment of metabolic diseases

26. Long-Acting Neurotensin Synergizes With Liraglutide to Reverse Obesity Through a Melanocortin-Dependent Pathway

27. Anti-obesity therapy: From rainbow pills to polyagonists

28. Time-resolved hypothalamic open flow micro-perfusion reveals normal leptin transport across the blood–brain barrier in leptin resistant mice

29. Coordinated targeting of cold and nicotinic receptors synergistically improves obesity and type 2 diabetes

30. Metabolic syndrome and extensive adipose tissue inflammation in morbidly obese Göttingen minipigs

31. FXR is a molecular target for the effects of vertical sleeve gastrectomy

32. GLP-1/Glucagon Coagonism Restores Leptin Responsiveness in Obese Mice Chronically Maintained on an Obesogenic Diet

33. Oral l-Arginine Stimulates GLP-1 Secretion to Improve Glucose Tolerance in Male Mice

34. Gut-brain cross-talk in metabolic control

35. Molecular integration of incretin and glucocorticoid action reverses immunometabolic dysfunction and obesity

36. Increased susceptibility to diet-induced obesity in GPRC6A receptor knockout mice

37. Publisher Correction: Coordinated targeting of cold and nicotinic receptors synergistically improves obesity and type 2 diabetes

38. Current and emerging treatment options in diabetes care

39. Unimolecular polypharmacy for treatment of diabetes and obesity

40. Chemical Hybridization of Glucagon and Thyroid Hormone Optimizes Therapeutic Impact for Metabolic Disease

41. Renaissance of leptin for obesity therapy

42. Dual melanocortin-4 receptor and GLP-1 receptor agonism amplifies metabolic benefits in diet-induced obese mice

43. A rationally designed monomeric peptide triagonist corrects obesity and diabetes in rodents

44. LOSS OF MELANOCORTIN-4 RECEPTOR FUNCTION ATTENUATES HPA RESPONSES TO PSYCHOLOGICAL STRESS

45. Celastrol-Induced Weight Loss Is Driven by Hypophagia and Independent From UCP1

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