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Your search keyword '"Vescovi, Angelo L."' showing total 186 results

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186 results on '"Vescovi, Angelo L."'

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1. Different states of stemness of glioblastoma stem cells sustain glioblastoma subtypes indicating novel clinical biomarkers and high-efficacy customized therapies

2. Growth factor independence underpins a paroxysmal, aggressive Wnt5aHigh/EphA2Low phenotype in glioblastoma stem cells, conducive to experimental combinatorial therapy

5. Stemness underpinning all steps of human colorectal cancer defines the core of effective therapeutic strategies

6. Phase I clinical trial of intracerebroventricular transplantation of allogeneic neural stem cells in people with progressive multiple sclerosis

7. BRAFV600E mutation impinges on gut microbial markers defining novel biomarkers for serrated colorectal cancer effective therapies

9. Establishment of stable iPS-derived human neural stem cell lines suitable for cell therapies

10. The EphA2 Receptor Drives Self-Renewal and Tumorigenicity in Stem-like Tumor-Propagating Cells from Human Glioblastomas

12. Additional file 1 of Growth factor independence underpins a paroxysmal, aggressive Wnt5aHigh/EphA2Low phenotype in glioblastoma stem cells, conducive to experimental combinatorial therapy

13. Additional file 2 of Growth factor independence underpins a paroxysmal, aggressive Wnt5aHigh/EphA2Low phenotype in glioblastoma stem cells, conducive to experimental combinatorial therapy

16. Injection of adult neurospheres induces recovery in a chronic model of multiple sclerosis

20. Growth factor independence underpins a paroxysmal, aggressive Wnt5aHigh/EphA2Low phenotype in glioblastoma stem cells, conducive to experimental combinatorial therapy.

21. Additional file 1 of BRAFV600E mutation impinges on gut microbial markers defining novel biomarkers for serrated colorectal cancer effective therapies

23. The adult human subventricular zone: partial ependymal coverage and proliferative capacity of cerebrospinal fluid

24. The adult human subventricular zone: partial ependymal coverage and proliferative capacity of cerebrospinal fluid

25. The adult human subventricular zone: partial ependymal coverage and proliferative capacity of cerebrospinal fluid

26. The adult human subventricular zone: partial ependymal coverage and proliferative capacity of cerebrospinal fluid

27. AQP4 Aggregation State Is a Determinant for Glioma Cell Fate

28. Targeting APLN/APLNR Improves Antiangiogenic Efficiency and Blunts Proinvasive Side Effects of VEGFA/VEGFR2 Blockade in Glioblastoma

30. Multifunctionalized hydrogels foster hNSC maturation in 3D cultures and neural regeneration in spinal cord injuries

31. Cancer stem cells from peritumoral tissue of glioblastoma multiforme: the possible missing link between tumor development and progression

32. Advances in stem cell therapy for amyotrophic lateral sclerosis

33. Establishment of stable iPS-derived human neural stem cell lines suitable for cell therapies

34. Advances in stem cell therapy for amyotrophic lateral sclerosis

35. Wnt5a Drives an Invasive Phenotype in Human Glioblastoma Stem-like Cells

36. Results from Phase I Clinical Trial with Intraspinal Injection of Neural Stem Cells in Amyotrophic Lateral Sclerosis: A Long‐Term Outcome

37. Phenotypic variation in Aicardi-Goutières syndrome explained by cell-specific IFN-stimulated gene response and cytokine release

38. Phenotypic variation in Aicardi-Goutières syndrome explained by cell-specific IFN-stimulated gene response and cytokine release

39. Human neural stem cell transplantation in ALS: initial results from a phase I trial

41. Endothelial Cells Create a Stem Cell Niche in Glioblastoma by Providing NOTCH Ligands That Nurture Self-Renewal of Cancer Stem-Like Cells

44. Krüppel-Like Family of Transcription Factor 9, a Differentiation-Associated Transcription Factor, Suppresses Notch1 Signaling and Inhibits Glioblastoma-Initiating Stem Cells

45. Inorganic mercury changes the fate of murine CNS stem cells

50. NOTCH Pathway Blockade Depletes CD133-Positive Glioblastoma Cells and Inhibits Growth of Tumor Neurospheres and Xenografts

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