46 results on '"Steensberg, Adam"'
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2. Glucose Ingestion Attenuates the Exercise-Induced Increase in Circulating Heat Shock Protein 72 and Heat Shock Protein 60 in Humans
3. Differential regulation of IL-6 and TNF-α via calcineurin in human skeletal muscle cells
4. Retraction: Exercise induces interleukin-8 expression in human skeletal muscle
5. Muscle and Blood Metabolites during a Soccer Game: Implications for Sprint Performance
6. Exercise induces interleukin-8 expression in human skeletal muscle
7. Cerebral ammonia uptake and accumulation during prolonged exercise in humans
8. THE YO-YO INTERMITTENT RECOVERY TEST IS HIGHLY REPRODUCIBLE, SENSITIVE, AND VALID
9. The Yo-Yo Intermittent Recovery Test: Physiological Response, Reliability, and Validity
10. Exercise and hypoxia: effects on leukocytes and interleukin-6—shared mechanisms?
11. Effects of glepaglutide, a novel long-acting glucagon-like peptide-2 analogue, on markers of liver status in patients with short bowel syndrome:findings from a randomised phase 2 trial
12. Glepaglutide, a novel long-acting glucagon-like peptide-2 analogue, for patients with short bowel syndrome:a randomised phase 2 trial
13. Danegaptide for primary percutaneous coronary intervention in acute myocardial infarction patients:A phase 2 randomised clinical trial
14. Interleukin-6 autoantibodies are involved in the pathogenesis of a subset of type 2 diabetes
15. Interleukin-6 markedly decreases skeletal muscle protein turnover and increases nonmuscle amino acid utilization in healthy individuals.
16. Nitric oxide production is a proximal signaling event controlling exercise-induced mRNA expression in human skeletal muscle
17. Differential regulation of IL-6 and TNF-alfa via calcineurin in human skeletal muscle cells
18. Interleukin-6 infusion during human endotoxaemia inhibits in vitro release of the urokinase receptor from peripheral blood mononuclear cells
19. Interleukin-6 receptor expression in contracting human skeletal muscle: regulating role of IL-6
20. Interleukin-6 stimulates lipolysis and fat oxidation in humans
21. IL-6 enhances plasma IL-1ra, IL-10, and cortisol in humans
22. Glucose ingestion attenuates interleukin-6 release from contracting skeletal muscle in humans
23. Hepatosplanchnic clearance of interleukin-6 in humans during exercise
24. Muscle-derived interleukin-6: lipolytic, anti-inflammatory and immune regulatory effects.
25. Acute interleukin-6 administration does not impair muscle glucose uptake or whole-body glucose disposal in healthy humans.
26. Reduced glycogen availability is associated with an elevation in HSP72 in contracting human skeletal muscle.
27. Muscle glycogen content and glucose uptake during exercise in humans: influence of prior exercise and dietary manipulation.
28. Influence of pre-exercise muscle glycogen content on exercise-induced transcriptional regulation of metabolic genes.
29. Effect of exercise, training, and glycogen availability on IL-6 receptor expression in human skeletal muscle
30. Leptin gene expression and systemic levels in healthy men: effect of exercise, carbohydrate, interleukin-6, and epinephrine
31. THIS ARTICLE HAS BEEN RETRACTED Exercise induces interleukin‐8 expression in human skeletal muscle
32. IL-6 enhances plasma IL-1ra, IL-10, and cortisol in humans
33. Hepatosplanchnic clearance of interleukin-6 in humans during exercise
34. Glucose Ingestion Attenuates Interleukin‐6 Release from Contracting Skeletal Muscle in Humans
35. Exercise and hypoxia: effects on leukocytes and interleukin-6???shared mechanisms?
36. IL-6 and TNF-α expression in, and release from, contracting human skeletal muscle
37. Exercise induces hepatosplanchnic release of heat shock protein 72 in humans
38. Influence of pre‐exercise muscle glycogen content on exercise‐induced transcriptional regulation of metabolic genes
39. Muscle glycogen content and glucose uptake during exercise in humans: influence of prior exercise and dietary manipulation
40. Reduced glycogen availability is associated with an elevation in HSP72 in contracting human skeletal muscle
41. Interleukin‐6 production in contracting human skeletal muscle is influenced by pre‐exercise muscle glycogen content
42. Muscle‐derived interleukin‐6: possible biological effects
43. Strenuous exercise decreases the percentage of type 1 T cells in the circulation
44. Plasma interleukin-6 during strenuous exercise: role of epinephrine
45. Production of interleukin‐6 in contracting human skeletal muscles can account for the exercise‐induced increase in plasma interleukin‐6
46. Increased Levels of Auto-Reactive Interleukin-6 Antibodies in Patients with Type 2 Diabetes.
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