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44 results on '"Michael Gaster"'

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1. Carnitine acetyltransferase: A new player in skeletal muscle insulin resistance?

2. Metabolic flexibility is conserved in diabetic myotubes

3. Genetic alterations within the DENND1A gene in patients with polycystic ovary syndrome (PCOS).

4. Reduced TCA Flux in Diabetic Myotubes: Determined by Single Defects?

5. Insulin resistance is not conserved in myotubes established from women with PCOS.

6. Impaired cell surface expression of HLA-B antigens on mesenchymal stem cells and muscle cell progenitors.

7. Primary defects in lipolysis and insulin action in skeletal muscle cells from type 2 diabetic individuals

8. Testosterone treatment increases androgen receptor and aromatase gene expression in myotubes from patients with PCOS and controls, but does not induce insulin resistance

9. Hedgehog Partial Agonism Drives Warburg-like Metabolism in Muscle and Brown Fat

10. Uncoupling of sarcoplasmic reticulum Ca2+-ATPase by N-arachidonoyl dopamine. Members of the endocannabinoid family as thermogenic drugs

11. Impaired TCA cycle flux in mitochondria in skeletal muscle from type 2 diabetic subjects: Marker or maker of the diabetic phenotype?

12. Expression of perilipins in human skeletal muscle in vitro and in vivo in relation to diet, exercise and energy balance

13. Mesenchymal Stromal Cell Phenotype is not Influenced by Confluence during Culture Expansion

14. Criterion for Spanwise Spacing of Stall Cells

15. Intact Primary Mitochondrial Function in Myotubes Established from Women with PCOS

16. ATP synthesis is impaired in isolated mitochondria from myotubes established from type 2 diabetic subjects

17. Oxidation of intramyocellular lipids is dependent on mitochondrial function and the availability of extracellular fatty acids

18. Fatty Acid Incubation of Myotubes From Humans With Type 2 Diabetes Leads to Enhanced Release of β-Oxidation Products Because of Impaired Fatty Acid Oxidation

19. Transcriptional profiling of myotubes from patients with type 2 diabetes: no evidence for a primary defect in oxidative phosphorylation genes

20. Liver X receptor antagonist reduces lipid formation and increases glucose metabolism in myotubes from lean, obese and type 2 diabetic individuals

21. Long-chain Acyl-CoA is not primarily increased in myotubes established from type 2 diabetic subjects

22. Muscle triacylglycerol and hormone-sensitive lipase activity in untrained and trained human muscles

23. GLUT11, but not GLUT8 or GLUT12, is expressed in human skeletal muscle in a fibre type-specific pattern

24. GLUT4 expression in human muscle fibres is not correlated with intracellular triglyceride (TG) content. Is TG a maker or a marker of insulin resistance?

25. A critical assessment of the h-index

26. GLUT4 expression at the plasma membrane is related to fibre volume in human skeletal muscle fibres

27. The Diabetic Phenotype Is Conserved in Myotubes Established From Diabetic Subjects

28. On the growth of waves in boundary layers: a non-parallel correction

29. Direct evidence of fiber type-dependent GLUT-4 expression in human skeletal muscle

30. The influence of phase on the nonlinear evolution of wavepackets in boundary layers

31. A directionally sensitive hot- wire anemometer

32. FA1 induces pro-inflammatory and anti-adipogenic pathways/markers in human myotubes established from lean, obese and Type 2 diabetic subjects but not insulin resistance

33. The velocity field created by a shallow bump in a boundary layer

34. Hydrogen peroxide production is not primarily increased in human myotubes established from type 2 diabetic subjects

35. Reduced TCA flux in diabetic myotubes: A governing influence on the diabetic phenotype?

36. Expression profiling of insulin action in human myotubes: induction of inflammatory and pro-angiogenic pathways in relationship with glycogen synthesis and type 2 diabetes

37. The diabetic phenotype is conserved in myotubes established from diabetic subjects: evidence for primary defects in glucose transport and glycogen synthase activity

38. Glucose transporter expression in human skeletal muscle fibers

39. Active control of boundary-layer instabilities

40. On three-dimensionality and control of incompressible cavity flow

41. Active control of boundary-layer instabilities.

43. The reduced insulin-mediated glucose oxidation in skeletal muscle from type 2 diabetic subjects may be of genetic origin—evidence from cultured myotubes

44. Growth of Disturbances in Both Space and Time

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