34 results on '"Garufi, Alessia"'
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2. NRF2 activation in BON‑1 neuroendocrine cancer cells reduces the cytotoxic effects of a novel Ruthenium(II)‑curcumin compound: A pilot study
3. HIPK2 in Colon Cancer: A Potential Biomarker for Tumor Progression and Response to Therapies.
4. Recent Advances on Mutant p53: Unveiling Novel Oncogenic Roles, Degradation Pathways, and Therapeutic Interventions.
5. New Copper-Based Metallodrugs with Anti-Invasive Capacity
6. Oxidant species are involved in T/B-mediated ERK1/2 phosphorylation that activates p53-p21 axis to promote KSHV lytic cycle in PEL cells
7. The Sweet Side of HIPK2
8. HIPK2 in Angiogenesis: A Promising Biomarker in Cancer Progression and in Angiogenic Diseases
9. NRF2 and Bip Interconnection Mediates Resistance to the Organometallic Ruthenium-Cymene Bisdemethoxycurcumin Complex Cytotoxicity in Colon Cancer Cells
10. HIPK2 as a Novel Regulator of Fibrosis
11. The Impact of NRF2 Inhibition on Drug-Induced Colon Cancer Cell Death and p53 Activity: A Pilot Study
12. p62/SQSTM1/Keap1/NRF2 Axis Reduces Cancer Cells Death-Sensitivity in Response to Zn(II)–Curcumin Complex
13. A ruthenium(II)-curcumin compound modulates NRF2 expression balancing the cancer cell death/survival outcome according to p53 status
14. Nuclear factor erythroid 2 (NF‐E2) p45‐related factor 2 interferes with homeodomain‐interacting protein kinase 2/p53 activity to impair solid tumors chemosensitivity
15. PBA Preferentially Impairs Cell Survival of Glioblastomas Carrying mutp53 by Reducing Its Expression Level, Stabilizing wtp53, Downregulating the Mevalonate Kinase and Dysregulating UPR
16. Interplay between Endoplasmic Reticulum (ER) Stress and Autophagy Induces Mutant p53H273 Degradation
17. HIPK2 role in the tumor–host interaction: Impact on fibroblasts transdifferentiation CAF‐like
18. Reduced chemotherapeutic sensitivity in high glucose condition: implication of antioxidant response
19. Autophagy manipulation as a strategy for efficient anticancer therapies: possible consequences
20. p53-Dependent PUMA to DRAM antagonistic interplay as a key molecular switch in cell-fate decision in normal/high glucose conditions
21. Hyperglycemia triggers HIPK2 protein degradation
22. Reactivation of mutant p53 by capsaicin, the major constituent of peppers
23. Apoptosis as anticancer mechanism: function and dysfunction of its modulators and targeted therapeutic strategies
24. The beneficial effect of Zinc(II) on low-dose chemotherapeutic sensitivity involves p53 activation in wild-type p53-carrying colorectal cancer cells
25. Zn(II)-curc targets p53 in thyroid cancer cells
26. High glucose dephosphorylates serine 46 and inhibits p53 apoptotic activity
27. Gentian violet induces wtp53 transactivation in cancer cells
28. A fluorescent curcumin-based Zn(II)-complex reactivates mutant (R175H and R273H) p53 in cancer cells
29. JNK and Macroautophagy Activation by Bortezomib Has a Pro-Survival Effect in Primary Effusion Lymphoma Cells
30. Zinc supplementation is required for the cytotoxic and immunogenic effects of chemotherapy in chemoresistant p53-functionally deficient cells
31. Targeting COX-2/PGE2 Pathway in HIPK2 Knockdown Cancer Cells: Impact on Dendritic Cell Maturation
32. HIPK2 downregulates vimentin and inhibits breast cancer cell invasion
33. Targeting COX-2/PGE2 Pathway in HIPK2 Knockdown Cancer Cells: Impact on Dendritic Cell Maturation.
34. Hyperglycemia triggers HIPK2 protein degradation.
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