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1. Apoptotic cell death in disease—Current understanding of the NCCD 2023

2. Molecular mechanisms of cell death: recommendations of the Nomenclature Committee on Cell Death 2018

4. Apoptotic cell death in disease—Current understanding of the NCCD 2023

6. Senescence-associated reprogramming promotes cancer stemness

7. Supplementary Table 1 from Death Receptor Pathway Activation and Increase of ROS Production by the Triple Epigenetic Inhibitor UVI5008

9. Supplementary Figure 1 from Death Receptor Pathway Activation and Increase of ROS Production by the Triple Epigenetic Inhibitor UVI5008

10. Data from Death Receptor Pathway Activation and Increase of ROS Production by the Triple Epigenetic Inhibitor UVI5008

11. Supplementary Figure 4 from Death Receptor Pathway Activation and Increase of ROS Production by the Triple Epigenetic Inhibitor UVI5008

15. Supplementary Figure 2 from Death Receptor Pathway Activation and Increase of ROS Production by the Triple Epigenetic Inhibitor UVI5008

17. Supplementary Methods from Death Receptor Pathway Activation and Increase of ROS Production by the Triple Epigenetic Inhibitor UVI5008

18. Supplementary Figure 5 from Death Receptor Pathway Activation and Increase of ROS Production by the Triple Epigenetic Inhibitor UVI5008

20. Supplementary Figure 3 from Death Receptor Pathway Activation and Increase of ROS Production by the Triple Epigenetic Inhibitor UVI5008

23. Supplementary Figure 4 from Multivalent DR5 Peptides Activate the TRAIL Death Pathway and Exert Tumoricidal Activity

25. Supplementary Figure 2 from Multivalent DR5 Peptides Activate the TRAIL Death Pathway and Exert Tumoricidal Activity

26. Supplementary Figure 5 from Multivalent DR5 Peptides Activate the TRAIL Death Pathway and Exert Tumoricidal Activity

27. Supplementary Figure 1 from Multivalent DR5 Peptides Activate the TRAIL Death Pathway and Exert Tumoricidal Activity

28. Supplementary Figure Legends 1-5 from Multivalent DR5 Peptides Activate the TRAIL Death Pathway and Exert Tumoricidal Activity

46. Patient-matched analysis identifies deregulated networks in prostate cancer to guide personalized therapeutic intervention

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