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1. Three essays on financial development, inequality, and growth

8. Membrane Cholesterol in Skeletal Muscle: A Novel Player in Excitation-Contraction Coupling and Insulin Resistance

10. How Your Muscles Know You've Been Working Out: The [IP.sub.3] Pathway as a Developmental Signal in Skeletal Muscle

15. Excessive Public Employment and Rent-Seeking Traps

16. The role of quality ladders in a Ricardian model of trade with nonhomothetic preference

24. Exercise Sensitizes Skeletal Muscle to Extracellular ATP for IL-6 Expression in Mice.

27. Parallel activation of Ca2+-induced survival and death pathways in cardiomyocytes by sorbitol-induced hyperosmotic stress.

30. Differences in the properties of Na+ channels in muscle surface and T-tubular membranes revealed by tetrodotoxin derivatives

31. The Na+ channel in mammalian cardiac cells. Two kinds of tetrodotoxin receptors in rat heart membranes.

32. Centruroides toxin, a selective blocker of surface Na+ channels in skeletal muscle: voltage-clamp analysis and biochemical characterization of the receptor.

33. Density and distribution of tetrodotoxin receptors in normal and detubulated frog sartorius muscle.

34. [3H]nitrendipine receptors in skeletal muscle.

41. The sodium/ascorbic acid co-transporter SVCT2 distributes in a striated membrane-enriched domain at the M-band level in slow-twitch skeletal muscle fibers.

42. Skeletal myotubes expressing ALS mutant SOD1 induce pathogenic changes, impair mitochondrial axonal transport, and trigger motoneuron death.

43. NOX2 deficiency exacerbates diet-induced obesity and impairs molecular training adaptations in skeletal muscle.

44. Energy (and Reactive Oxygen Species Generation) Saving Distribution of Mitochondria for the Activation of ATP Production in Skeletal Muscle.

45. Probenecid affects muscle Ca2+ homeostasis and contraction independently from pannexin channel block.

46. Fibroblast growth factor 21 is expressed and secreted from skeletal muscle following electrical stimulation via extracellular ATP activation of the PI3K/Akt/mTOR signaling pathway.

48. Mechanical Disturbance of Osteoclasts Induces ATP Release That Leads to Protein Synthesis in Skeletal Muscle through an Akt-mTOR Signaling Pathway.

49. Pannexin-1 and CaV1.1 show reciprocal interaction during excitation-contraction and excitation-transcription coupling in skeletal muscle.

50. High extracellular ATP levels released through pannexin-1 channels mediate inflammation and insulin resistance in skeletal muscle fibres of diet-induced obese mice.

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