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142 results on '"Myotube"'

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1. Protective Effect of Whole Wheat on Muscle Atrophy in C2C12 Cells via Akt/FoxO1 Signaling Pathways.

2. In vitro mitochondrial and myogenic gene expression is influenced by formoterol in human myotubes

3. In vitro mitochondrial and myogenic gene expression is influenced by formoterol in human myotubes.

4. The retinoic acid response is a minor component of the cardiac phenotype in H9c2 myoblast differentiation.

5. In Vitro Effects of PTH (1-84) on Human Skeletal Muscle-Derived Satellite Cells.

6. The spatiotemporal matching pattern of Ezrin/Periaxin involved in myoblast differentiation and fusion and Charcot-Marie-Tooth disease-associated muscle atrophy.

7. Glucosamine inhibits myoblast proliferation and differentiation, and stimulates myotube atrophy through distinct signal pathways.

8. PDGF-B secreted from skeletal muscle enhances myoblast proliferation and myotube maturation via activation of the PDGFR signaling cascade.

9. Myristic acid selectively augments β‐tubulin levels in C2C12 myotubes via diacylglycerol kinase δ.

10. Enhancing Myoblast Fusion and Myotube Diameter in Human 3D Skeletal Muscle Constructs by Electromagnetic Stimulation

11. Fusion of Normoxic- and Hypoxic-Preconditioned Myoblasts Leads to Increased Hypertrophy.

12. Simulated microgravity accelerates aging of human skeletal muscle myoblasts at the single cell level.

13. Molecular and Biomechanical Adaptations to Mechanical Stretch in Cultured Myotubes

14. Molecular and Biomechanical Adaptations to Mechanical Stretch in Cultured Myotubes.

15. Cell entry of lymphocytic choriomeningitis virus is restricted in myotubes

16. The Role of Embryonic Chick Muscle Cell Culture in the Study of Skeletal Myogenesis

17. The synthetic peptide SVVYGLR promotes myogenic cell motility via the TGFβ1/Smad signaling pathway and facilitates skeletal myogenic differentiation in vitro.

18. The Role of Embryonic Chick Muscle Cell Culture in the Study of Skeletal Myogenesis.

19. Azelaic Acid Induces Mitochondrial Biogenesis in Skeletal Muscle by Activation of Olfactory Receptor 544

20. Characterization of Gelatin Hydrogels Cross-Linked with Microbial Transglutaminase as Engineered Skeletal Muscle Substrates.

21. Mechanisms regulating myoblast fusion: A multilevel interplay.

22. Skeletal muscle cells derived from mouse skin cultures.

23. Azelaic Acid Induces Mitochondrial Biogenesis in Skeletal Muscle by Activation of Olfactory Receptor 544.

24. The regulatory role of Myomaker and Myomixer–Myomerger–Minion in muscle development and regeneration.

26. Comparative molecular analysis of endurance exercise in vivo with electrically stimulated in vitro myotube contraction.

27. Toxoplasma gondii Impairs Myogenesis in vitro , With Changes in Myogenic Regulatory Factors, Altered Host Cell Proliferation and Secretory Profile.

28. Thermal stimulation at 39°C facilitates the fusion and elongation of C2C12 myoblasts.

29. Myristic acid specifically stabilizes diacylglycerol kinase δ protein in C2C12 skeletal muscle cells.

30. Roles of the proteasome and inhibitor of DNA binding 1 protein in myoblast differentiation.

31. Indoxyl sulfate induces myotube atrophy by ROS-ERK and JNK-MAFbx cascades.

32. Simplified in vitro engineering of neuromuscular junctions between rat embryonic motoneurons and immortalized human skeletal muscle cells.

33. L-Isoleucine reverses hyperammonemia-induced myotube mitochondrial dysfunction and post-mitotic senescence.

34. Differentiation of Murine C2C12 Myoblasts Strongly Reduces the Effects of Myostatin on Intracellular Signaling

36. Data in support of protocol for rat single muscle-fiber isolation and culture

37. Generation of Functional Myocytes from Equine Induced Pluripotent Stem Cells.

38. Regulation of skeletal myotube formation and alignment by nanotopographically controlled cell‐secreted extracellular matrix.

39. 1,25-Dihydroxycholecalciferol (calcitriol) modifies uptake and release of 25-hydroxycholecalciferol in skeletal muscle cells in culture.

40. Non-equivalence of nuclear import among nuclei in multinucleated skeletal muscle cells.

41. Caloric Restriction Mimetics Slow Aging of Neuromuscular Synapses and Muscle Fibers.

42. Transcriptional regulation of FoxO3 gene by glucocorticoids in murine myotubes.

43. Selective androgen receptor modulator, S42 has anabolic and anti-catabolic effects on cultured myotubes

44. α-Hydroxyisocaproic Acid Decreases Protein Synthesis but Attenuates TNFα/IFNγ Co-Exposure-Induced Protein Degradation and Myotube Atrophy via Suppression of iNOS and IL-6 in Murine C2C12 Myotube

45. 'Time window' effect of Yoda1‐evoked Piezo1 channel activity during mouse skeletal muscle differentiation

46. The Role of Embryonic Chick Muscle Cell Culture in the Study of Skeletal Myogenesis

47. Characterization of Gelatin Hydrogels Cross-Linked with Microbial Transglutaminase as Engineered Skeletal Muscle Substrates

48. Organization of organelles and VAMP-associated vesicular transport systems in differentiating skeletal muscle cells.

49. Myoplasmic resting Ca²+ regulation by ryanodine receptors is under the control of a novel Ca²+ -binding region of the receptor.

50. Vesicular transport system in myotubes: ultrastructural study and signposting with vesicle-associated membrane proteins.

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