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44 results on '"Francesco Ciscato"'

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1. The Use of Hexokinase 2-Displacing Peptides as an Anti-Neoplastic Approach for Malignant Peripheral Nerve Sheath Tumors

2. Plasma small‐extracellular vesicles enriched in miR‐122‐5p promote disease aggressiveness in pediatric anaplastic large‐cell lymphoma

3. Defining the molecular mechanisms of the mitochondrial permeability transition through genetic manipulation of F-ATP synthase

4. Analysis of the Effects of Hexokinase 2 Detachment From Mitochondria-Associated Membranes with the Highly Selective Peptide HK2pep

5. Plasma small‐extracellular vesicles enriched in miR‐122‐5p promote disease aggressiveness in pediatric anaplastic large‐cell lymphoma

6. Hexokinase 2 in Cancer: A Prima Donna Playing Multiple Characters

7. Absence of Neurofibromin Induces an Oncogenic Metabolic Switch via Mitochondrial ERK-Mediated Phosphorylation of the Chaperone TRAP1

8. Tumor growth of neurofibromin-deficient cells is driven by decreased respiration and hampered by NAD+ and SIRT3

9. Metabolic Plasticity of Tumor Cell Mitochondria

10. The mitochondrial chaperone TRAP1 regulates F-ATP synthase channel formation

11. TRAP1 and cyclophilin D compete at OSCP subunit to regulate enzymatic activity and permeability transition pore opening by F-ATP synthase

12. Tumor growth of neurofibromin-deficient cells is driven by decreased respiration and hampered by NAD

13. Tumor growth of neurofibromin-deficient cells is driven by decreased respiration and hampered by NAD+ and SIRT3

14. Analysis of the Effects of Hexokinase 2 Detachment From Mitochondria-Associated Membranes with the Highly Selective Peptide HK2pep

15. Defining the molecular mechanisms of the mitochondrial permeability transition through genetic manipulation of F-ATP synthase

16. Hexokinase 2 displacement from mitochondria‐associated membranes prompts Ca 2+ ‐dependent death of cancer cells

17. SerpinB3 induces dipeptidyl-peptidase IV/CD26 expression and its metabolic effects in hepatocellular carcinoma

18. Hexokinase 2 displacement from mitochondria-associated membranes prompts Ca

19. Metabolic Plasticity of Tumor Cell Mitochondria

20. Absence of Neurofibromin Induces an Oncogenic Metabolic Switch via Mitochondrial ERK-Mediated Phosphorylation of the Chaperone TRAP1

21. Displacement of Hexokinase 2 from mitochondria induces mitochondrial Ca2+ overload and calpain-dependent cell death in cancer cells

22. PO-032 Displacement of hexokinase 2 from mitochondria induces mitochondrial Ca2 +overload and caspase-independent cell death in cancer cells

23. Gold(III)-pyrrolidinedithiocarbamato Derivatives as Antineoplastic Agents

24. The oncogenic role of the mitochondrial chaperone TRAP1

25. Hepatic progenitor cells express SerpinB3

27. DPPIV/CD26 and SerpinB3 interaction affects metabolism and clinical outcome in hepatocellular carcinoma

31. The Use of Hexokinase 2-Displacing Peptides as an Anti-Neoplastic Approach for Malignant Peripheral Nerve Sheath Tumors.

32. Recent Findings in Phosphotransferases (Alcohol Group Acceptor) Described by a Researcher from University of Padova (The Use of Hexokinase 2-Displacing Peptides as an Anti-Neoplastic Approach for Malignant Peripheral Nerve Sheath Tumors).

33. SERPINB3 protects from oxidative damage by chemotherapeutics through inhibition of mitochondrial respiratory complex I

35. Plasma small‐extracellular vesicles enriched in miR‐122‐5p promote disease aggressiveness in pediatric anaplastic large‐cell lymphoma.

36. Defining the molecular mechanisms of the mitochondrial permeability transition through genetic manipulation of F-ATP synthase.

38. Hexokinase 2 displacement from mitochondria‐associated membranes prompts Ca2+‐dependent death of cancer cells.

39. Metabolic Plasticity of Tumor Cell Mitochondria.

40. Gold(III)-pyrrolidinedithiocarbamato Derivatives as Antineoplastic Agents.

41. Hepatic progenitor cells express SerpinB3.

42. Hexokinase 2 in Cancer: A Prima Donna Playing Multiple Characters.

43. Recent Findings in Phosphotransferases (Alcohol Group Acceptor) Described by a Researcher from University of Padova (The Use of Hexokinase 2-Displacing Peptides as an Anti-Neoplastic Approach for Malignant Peripheral Nerve Sheath Tumors)

44. University of Padova Researchers Report on Findings in Cancer (Hexokinase 2 in Cancer: A Prima Donna Playing Multiple Characters)

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