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1. Tisotumab Vedotin in Combination With Carboplatin, Pembrolizumab, or Bevacizumab in Recurrent or Metastatic Cervical Cancer: Results From the innovaTV 205/GOG-3024/ENGOT-cx8 Study.

3. Intralesional SD-101 in Combination with Pembrolizumab in Anti-PD-1 Treatment-Naïve Head and Neck Squamous Cell Carcinoma: Results from a Multicenter, Phase II Trial.

4. Abemaciclib in combination with pembrolizumab for HR+, HER2− metastatic breast cancer: Phase 1b study

6. Phase II study of afatinib plus pembrolizumab in patients with squamous cell carcinoma of the lung following progression during or after first-line chemotherapy (LUX-Lung-IO)

7. AXL targeting restores PD-1 blockade sensitivity of STK11/LKB1 mutant NSCLC through expansion of TCF1+ CD8 T cells

8. Efficacy and safety of olomorasib (LY3537982), a second-generation KRAS G12C inhibitor (G12Ci), in combination with pembrolizumab in patients with KRAS G12C-mutant advanced NSCLC.

9. Results of a phase 1b/2 study of ADG126 (a masked anti-CTLA-4 SAFEbody) in combo with pembrolizumab (Pembro) in patients (Pts) with metastatic microsatellite-stable (MSS) colorectal cancer (CRC).

10. CTIM-14. PHASE 1 SAFETY LEAD-IN AND RANDOMIZED OPEN-LABEL PERIOPERATIVE STUDY OF VORASIDENIB COMBINED WITH PEMBROLIZUMAB IN RECURRENT OR PROGRESSIVE ENHANCING IDH1-MUTANT ASTROCYTOMAS: SAFETY LEAD-IN RESULTS

11. 753 An open-label, phase 1a/b study of AB248, a CD8+ selective IL-2 mutein fusion protein, alone or in combination with pembrolizumab in patients with advanced solid tumors

12. 757 Phase 1/2a clinical trial of BI-1808, a monoclonal antibody to tumor necrosis factor receptor 2 (TNFR2) as single agent and in combination with pembrolizumab

13. 598 Bemcentinib + pembrolizumab show promising efficacy in metastatic NSCLC harbouring mutations associated with poor prognosis: exploratory sub-analysis from the BGBC008 trial (NCT03184571)

14. 782-H Effects of an AI generated personalized neopeptide-based immunotherapy, EVX-01, in combination with pembrolizumab in patients with metastatic melanoma: a clinical trial update

15. Table S3 from Results of an Open-label, Phase Ia/b Study of Pembrolizumab plus Olaratumab in Patients with Unresectable, Locally Advanced, or Metastatic Soft-Tissue Sarcoma

16. Figure S2 from Results of an Open-label, Phase Ia/b Study of Pembrolizumab plus Olaratumab in Patients with Unresectable, Locally Advanced, or Metastatic Soft-Tissue Sarcoma

17. Data from Results of an Open-label, Phase Ia/b Study of Pembrolizumab plus Olaratumab in Patients with Unresectable, Locally Advanced, or Metastatic Soft-Tissue Sarcoma

18. Tisotumab Vedotin in Combination With Carboplatin, Pembrolizumab, or Bevacizumab in Recurrent or Metastatic Cervical Cancer: Results From the innovaTV 205/GOG-3024/ENGOT-cx8 Study

19. FIGURE 4 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

20. FIGURE 5 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

21. Supplementary Table 6 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

22. FIGURE 1 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

23. Supplementary Figure 5 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

24. Supplementary Table 1 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

25. Supplementary Figure 1 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

26. FIGURE 3 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

27. Supplementary Figure 2 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

28. Supplementary Figure 6 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

29. Supplementary Table 5 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

30. Supplementary Table 3 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

31. Supplementary Figure 3 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

32. Supplementary Movie 1 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

33. Supplementary Figure 7 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

34. Supplementary Figure 9 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

35. Supplementary Table 2 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

36. Supplementary Figure 4 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

37. Supplementary Movie 1 Legend from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

38. Supplementary Figure 8 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

39. Supplementary Table 4 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

40. Data from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

41. Supplementary Methods from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

42. FIGURE 2 from Activating Inducible T-cell Costimulator Yields Antitumor Activity Alone and in Combination with Anti-PD-1 Checkpoint Blockade

43. Supplementary Figure 5 from Activating Inducible T cell Co-stimulator (ICOS) yields anti-tumor activity alone and in combination with anti-PD-1 checkpoint blockade

44. Supplementary Figure 2 from Activating Inducible T cell Co-stimulator (ICOS) yields anti-tumor activity alone and in combination with anti-PD-1 checkpoint blockade

45. Supplementary Figure 11 from Activating Inducible T cell Co-stimulator (ICOS) yields anti-tumor activity alone and in combination with anti-PD-1 checkpoint blockade

46. Supplementary Figure 9 from Activating Inducible T cell Co-stimulator (ICOS) yields anti-tumor activity alone and in combination with anti-PD-1 checkpoint blockade

47. Supplementary Figure 4 from Activating Inducible T cell Co-stimulator (ICOS) yields anti-tumor activity alone and in combination with anti-PD-1 checkpoint blockade

48. Supplementary Figure 6 from Activating Inducible T cell Co-stimulator (ICOS) yields anti-tumor activity alone and in combination with anti-PD-1 checkpoint blockade

49. Supplementary Methods from Activating Inducible T cell Co-stimulator (ICOS) yields anti-tumor activity alone and in combination with anti-PD-1 checkpoint blockade

50. Supplementary Table 5 from Activating Inducible T cell Co-stimulator (ICOS) yields anti-tumor activity alone and in combination with anti-PD-1 checkpoint blockade

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