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131 results on '"tunneling nanotube"'

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1. Synthetic CB1 Cannabinoids Promote Tunneling Nanotube Communication, Cellular Migration, and Epithelial–Mesenchymal Transition in Pancreatic PANC-1 and Colorectal SW-620 Cancer Cell Lines.

2. Intercellular transmission of alpha-synuclein.

3. Intercellular transmission of alpha-synuclein.

4. Tunneling Nanotubes: The Cables for Viral Spread and Beyond

5. High-Resolution Microscopic Characterization of Tunneling Nanotubes in Living U87 MG and LN229 Glioblastoma Cells.

6. Mitochondrial transfer from cancer-associated fibroblasts increases migration in aggressive breast cancer.

7. Targeting CAM-DR and Mitochondrial Transfer for the Treatment of Multiple Myeloma

8. Shrimp miR-965 transfers tumoricidal mitochondria

9. Lethal effects of mitochondria via microfluidics.

10. Targeting CAM-DR and Mitochondrial Transfer for the Treatment of Multiple Myeloma.

11. Shrimp miR-965 transfers tumoricidal mitochondria.

12. Myosin X

14. Mechanical properties of tunneling nanotube and its mechanical stability in human embryonic kidney cells

15. Cytoneme-like protrusion formation induced by LAR is promoted by receptor dimerization

16. Stem cell‐derived mitochondria transplantation: A promising therapy for mitochondrial encephalomyopathy.

17. Crosstalk between astrocytes and microglia results in increased degradation of α-synuclein and amyloid-β aggregates.

18. Intercellular transmission of alpha-synuclein.

19. Endolysosomal Mesoporous Silica Nanoparticle Trafficking along Microtubular Highways

20. Intracellular and Intercellular Mitochondrial Dynamics in Parkinson’s Disease

21. Mitochondria of T Lymphocytes Promote Anti-Pulmonary Tumor Immune Response.

22. Intracellular and Intercellular Mitochondrial Dynamics in Parkinson's Disease.

23. α-Synuclein and astrocytes: tracing the pathways from homeostasis to neurodegeneration in Lewy body disease.

24. Tunneling nanotube-transmitted mechanical signal and its cellular response.

26. Endolysosomal Mesoporous Silica Nanoparticle Trafficking along Microtubular Highways

27. Making Connections: Mesenchymal Stem Cells Manifold Ways to Interact with Neurons

28. Internalization, axonal transport and release of fibrillar forms of alpha-synuclein.

29. Mitochondrial function in hypoxic ischemic injury and influence of aging.

30. Making Connections: Mesenchymal Stem Cells Manifold Ways to Interact with Neurons

31. Potential Modes of Intercellular α-Synuclein Transmission.

32. The Role of Extracellular Vesicle and Tunneling Nanotube-Mediated Intercellular Cross-Talk Between Mesenchymal Stem Cells and Human Peripheral T Cells.

33. Mechanisms of mesenchymal stem/stromal cell function.

34. Mycoplasma exploits mammalian tunneling nanotubes for cell-to-cell dissemination

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36. RalGPS2 interacts with AKT and PDK1 promoting tunneling nanotubes formation in bladder cancer and kidney cells microenvironment

37. The 3.0 cell communication: New insights in the usefulness of tunneling nanotubes for glioblastoma treatment

38. Emerging physiological and pathological implications of tunneling nanotubes formation between cells.

39. Tunneling nanotubes between rat primary astrocytes and C6 glioma cells alter proliferation potential of glioma cells.

40. Stromal Cells Serve Drug Resistance for Multiple Myeloma via Mitochondrial Transfer: A Study on Primary Myeloma and Stromal Cells

41. RalGPS2 interacts with AKT and PDK1 promoting tunneling nanotubes formation in bladder cancer and kidney cells microenvironment

42. Crosstalk between astrocytes and microglia results in increased degradation of α-synuclein and amyloid-β aggregates

43. Endotel Hücreleri Arasında Nanotüp Tünellemenin ve Organel İletiminin Görüntülenmesi

44. Mitochondrial Transfer by Human Mesenchymal Stromal Cells Ameliorates Hepatocyte Lipid Load in a Mouse Model of NASH

45. Artificial nanotube connections and transport of molecular cargo between mammalian cells.

46. Tunneling nanotubes, an emerging intercellular communication route in development.

47. Long-distance electrical coupling via tunneling nanotubes

48. Hen or Egg?

49. Selective block of tunneling nanotube (TNT) formation inhibits intercellular organelle transfer between PC12 cells

50. The art of cellular communication: tunneling nanotubes bridge the divide.

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