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285 results on '"Spagnoli, Giulio"'

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1. High density of CXCL12-positive immune cell infiltration predicts chemosensitivity and recurrence-free survival in ovarian carcinoma

3. Glomerular proteomic profiling reveals early differences between preexisting and de novo type 2 diabetes in human renal allografts

5. Data from Infiltration by IL22-Producing T Cells Promotes Neutrophil Recruitment and Predicts Favorable Clinical Outcome in Human Colorectal Cancer

6. Supplementary Tables from Infiltration by IL22-Producing T Cells Promotes Neutrophil Recruitment and Predicts Favorable Clinical Outcome in Human Colorectal Cancer

7. Supplementary Figure Legends from Infiltration by IL22-Producing T Cells Promotes Neutrophil Recruitment and Predicts Favorable Clinical Outcome in Human Colorectal Cancer

8. Supplementary Figure Legends from Infiltration by IL22-Producing T Cells Promotes Neutrophil Recruitment and Predicts Favorable Clinical Outcome in Human Colorectal Cancer

9. Data from Infiltration by IL22-Producing T Cells Promotes Neutrophil Recruitment and Predicts Favorable Clinical Outcome in Human Colorectal Cancer

10. Supplementary Figures from Infiltration by IL22-Producing T Cells Promotes Neutrophil Recruitment and Predicts Favorable Clinical Outcome in Human Colorectal Cancer

11. Supplementary Figures from Infiltration by IL22-Producing T Cells Promotes Neutrophil Recruitment and Predicts Favorable Clinical Outcome in Human Colorectal Cancer

12. Supplementary Tables from Infiltration by IL22-Producing T Cells Promotes Neutrophil Recruitment and Predicts Favorable Clinical Outcome in Human Colorectal Cancer

13. Data from Microtubule-Depolymerizing Agents Used in Antibody–Drug Conjugates Induce Antitumor Immunity by Stimulation of Dendritic Cells

14. Supplementary Methods from Microtubule-Depolymerizing Agents Used in Antibody–Drug Conjugates Induce Antitumor Immunity by Stimulation of Dendritic Cells

15. Data from Microtubule-Depolymerizing Agents Used in Antibody–Drug Conjugates Induce Antitumor Immunity by Stimulation of Dendritic Cells

16. Supplementary Methods from Microtubule-Depolymerizing Agents Used in Antibody–Drug Conjugates Induce Antitumor Immunity by Stimulation of Dendritic Cells

17. Supplementary Figures 1 - 9, Table 1 from Microtubule-Depolymerizing Agents Used in Antibody–Drug Conjugates Induce Antitumor Immunity by Stimulation of Dendritic Cells

18. Supplementary Figures 1 - 9, Table 1 from Microtubule-Depolymerizing Agents Used in Antibody–Drug Conjugates Induce Antitumor Immunity by Stimulation of Dendritic Cells

20. Supplementary Materials and Methods from Characterization and Clinical Relevance of ALDHbright Populations in Prostate Cancer

21. Supplementary Table 2 from The Interplay Between Neutrophils and CD8+ T Cells Improves Survival in Human Colorectal Cancer

22. Supplementary Materials and Methods from Characterization and Clinical Relevance of ALDHbright Populations in Prostate Cancer

23. Supplementary Figure 2 from Characterization and Clinical Relevance of ALDHbright Populations in Prostate Cancer

24. Supplementary Figure 3 from The Interplay Between Neutrophils and CD8+ T Cells Improves Survival in Human Colorectal Cancer

25. Supplementary Figure 2 from GM-CSF Production by Tumor Cells Is Associated with Improved Survival in Colorectal Cancer

26. Supplementary Figure 2 from Characterization and Clinical Relevance of ALDHbright Populations in Prostate Cancer

27. Supplementary Figure 2 from The Interplay Between Neutrophils and CD8+ T Cells Improves Survival in Human Colorectal Cancer

28. Supplementary Table 1 from Characterization and Clinical Relevance of ALDHbright Populations in Prostate Cancer

29. Supplementary Figure 1 from The Interplay Between Neutrophils and CD8+ T Cells Improves Survival in Human Colorectal Cancer

30. Supplementary Table 1 from Characterization and Clinical Relevance of ALDHbright Populations in Prostate Cancer

31. Supplementary Figure 2 from GM-CSF Production by Tumor Cells Is Associated with Improved Survival in Colorectal Cancer

32. Supplementary Table 2 from Characterization and Clinical Relevance of ALDHbright Populations in Prostate Cancer

33. Supplementary Table 2 from Characterization and Clinical Relevance of ALDHbright Populations in Prostate Cancer

34. Legend from The Interplay Between Neutrophils and CD8+ T Cells Improves Survival in Human Colorectal Cancer

35. Supplementary Table 1 from The Interplay Between Neutrophils and CD8+ T Cells Improves Survival in Human Colorectal Cancer

36. Supplementary Figure 1 from Characterization and Clinical Relevance of ALDHbright Populations in Prostate Cancer

37. Supplementary Figure 1 from GM-CSF Production by Tumor Cells Is Associated with Improved Survival in Colorectal Cancer

38. Supplementary Figure 1 from GM-CSF Production by Tumor Cells Is Associated with Improved Survival in Colorectal Cancer

50. Direct CD32 T-cell cytotoxicity: implications for breast cancer prognosis and treatment

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