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1. Clearance of senescent macrophages ameliorates tumorigenesis in KRAS-driven lung cancer

2. SHH pathway inhibition is protumourigenic in adamantinomatous craniopharyngioma

3. TRAIL delivered by mesenchymal stromal/stem cells counteracts tumor development in orthotopic Ewing sarcoma models

4. Zoledronic acid enhances tumor growth and metastatic spread in a mouse model of jaw osteosarcoma.

5. Recurrent adamantinomatous craniopharyngiomas show MAPK pathway activation, clonal evolution and rare TP53-loss-mediated malignant progression.

6. Rebound growth of BRAF mutant pediatric glioma cells after MAPKi withdrawal is associated with MAPK reactivation and secretion of microglia-recruiting cytokines.

7. COPI vesicle formation and N-myristoylation are targetable vulnerabilities of senescent cells.

8. Development of a DNA damage-induced senescence model in osteoarthritic chondrocytes.

9. Clearance of senescent macrophages ameliorates tumorigenesis in KRAS-driven lung cancer.

10. BH3 mimetics targeting BCL-XL impact the senescent compartment of pilocytic astrocytoma.

11. TRAIL-Based Therapies Efficacy in Pediatric Bone Tumors Models Is Modulated by TRAIL Non-Apoptotic Pathway Activation via RIPK1 Recruitment.

12. Cell senescence in neuropathology: A focus on neurodegeneration and tumours.

13. Galactose-modified duocarmycin prodrugs as senolytics.

14. Cardiac glycosides are broad-spectrum senolytics.

15. The Senescence-associated Secretory Phenotype Mediates Oncogene-induced Senescence in Pediatric Pilocytic Astrocytoma.

16. In vitro and in vivo discrepancy in inducing apoptosis by mesenchymal stromal cells delivering membrane-bound tumor necrosis factor-related apoptosis inducing ligand in osteosarcoma pre-clinical models.

17. Tumour compartment transcriptomics demonstrates the activation of inflammatory and odontogenic programmes in human adamantinomatous craniopharyngioma and identifies the MAPK/ERK pathway as a novel therapeutic target.

18. Bone microenvironment has an influence on the histological response of osteosarcoma to chemotherapy: retrospective analysis and preclinical modeling.

19. TRAIL delivered by mesenchymal stromal/stem cells counteracts tumor development in orthotopic Ewing sarcoma models.

20. L-MTP-PE and zoledronic acid combination in osteosarcoma: preclinical evidence of positive therapeutic combination for clinical transfer.

21. TRAIL-based therapy in pediatric bone tumors: how to overcome resistance.

22. Clusterin inhibition using OGX-011 synergistically enhances zoledronic acid activity in osteosarcoma.

23. A functional, new short isoform of death receptor 4 in Ewing's sarcoma cell lines may be involved in TRAIL sensitivity/resistance mechanisms.

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