384 results on '"DECLERCK, YVES A."'
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2. Neuroblastoma Tumor Microenvironment: Non-Immune Cells and Exosomes
3. The plasminogen activator inhibitor-1 paradox in cancer: a mechanistic understanding
4. The capture of extracellular vesicles endogenously released by xenotransplanted tumours induces an inflammatory reaction in the premetastatic niche
5. Abstract 3543: Mesenchymal stromal cells and tumor-associated macrophages modulate adrenergic to mesenchymal state switching in neuroblastoma
6. Data from Bone Marrow–Derived Mesenchymal Stromal Cells Promote Survival and Drug Resistance in Tumor Cells
7. Supplementary Figure Legends from Bone Marrow–Derived Mesenchymal Stromal Cells Promote Survival and Drug Resistance in Tumor Cells
8. Figure S1, Figure S2, Figure S3, Figure S4, Figure S5, Figure S6 from Sphingosine-1-Phosphate Receptor-1 Promotes Environment-Mediated and Acquired Chemoresistance
9. Supplementary Figures 1 through 3 from Bone Marrow–Derived Mesenchymal Stromal Cells Promote Survival and Drug Resistance in Tumor Cells
10. Data from Sphingosine-1-Phosphate Receptor-1 Promotes Environment-Mediated and Acquired Chemoresistance
11. Supplemental figure legends from Sphingosine-1-Phosphate Receptor-1 Promotes Environment-Mediated and Acquired Chemoresistance
12. Data from Cancer-Associated Fibroblasts Share Characteristics and Protumorigenic Activity with Mesenchymal Stromal Cells
13. permission letter from Anti-CD105 Antibody Eliminates Tumor Microenvironment Cells and Enhances Anti-GD2 Antibody Immunotherapy of Neuroblastoma with Activated Natural Killer Cells
14. Supplementary Tables from Anti-CD105 Antibody Eliminates Tumor Microenvironment Cells and Enhances Anti-GD2 Antibody Immunotherapy of Neuroblastoma with Activated Natural Killer Cells
15. Supplementary Figure S1. from Cancer-Associated Fibroblasts Share Characteristics and Protumorigenic Activity with Mesenchymal Stromal Cells
16. Data from Synergistic Activity of Fenretinide and the Bcl-2 Family Protein Inhibitor ABT-737 against Human Neuroblastoma
17. Supplementary Figure 4 from Cancer-Associated Fibroblasts Share Characteristics and Protumorigenic Activity with Mesenchymal Stromal Cells
18. Table A and B from Cancer-Associated Fibroblasts Share Characteristics and Protumorigenic Activity with Mesenchymal Stromal Cells
19. Supplementary Figure 7 from Cancer-Associated Fibroblasts Share Characteristics and Protumorigenic Activity with Mesenchymal Stromal Cells
20. Supplementary Figure 6 from Cancer-Associated Fibroblasts Share Characteristics and Protumorigenic Activity with Mesenchymal Stromal Cells
21. Supplementary Fig. 1-8 from Anti-CD105 Antibody Eliminates Tumor Microenvironment Cells and Enhances Anti-GD2 Antibody Immunotherapy of Neuroblastoma with Activated Natural Killer Cells
22. Supplementary Figure 5 from Cancer-Associated Fibroblasts Share Characteristics and Protumorigenic Activity with Mesenchymal Stromal Cells
23. Supplementary Figures 1-2, Table 1 from Synergistic Activity of Fenretinide and the Bcl-2 Family Protein Inhibitor ABT-737 against Human Neuroblastoma
24. Data from MYCN-Dependent Expression of Sulfatase-2 Regulates Neuroblastoma Cell Survival
25. Data from The Activity of Zoledronic Acid on Neuroblastoma Bone Metastasis Involves Inhibition of Osteoclasts and Tumor Cell Survival and Proliferation
26. Data from Critical Role of STAT3 in IL-6–Mediated Drug Resistance in Human Neuroblastoma
27. Supplementary Table 2 from A Galectin-3–Dependent Pathway Upregulates Interleukin-6 in the Microenvironment of Human Neuroblastoma
28. Supplementary Figures 1-5 from The Activity of Zoledronic Acid on Neuroblastoma Bone Metastasis Involves Inhibition of Osteoclasts and Tumor Cell Survival and Proliferation
29. Supplementary Table 1 from The Activity of Zoledronic Acid on Neuroblastoma Bone Metastasis Involves Inhibition of Osteoclasts and Tumor Cell Survival and Proliferation
30. Supplemental Figure 1 from MYCN-Dependent Expression of Sulfatase-2 Regulates Neuroblastoma Cell Survival
31. Supplementary Figure 4 from Interleukin-6 in the Bone Marrow Microenvironment Promotes the Growth and Survival of Neuroblastoma Cells
32. Data from A Galectin-3–Dependent Pathway Upregulates Interleukin-6 in the Microenvironment of Human Neuroblastoma
33. Supplementary Figure 2 from Interleukin-6 in the Bone Marrow Microenvironment Promotes the Growth and Survival of Neuroblastoma Cells
34. Supplementary Table 1 from MYCN-Dependent Expression of Sulfatase-2 Regulates Neuroblastoma Cell Survival
35. Supplemental Figure 2 from MYCN-Dependent Expression of Sulfatase-2 Regulates Neuroblastoma Cell Survival
36. Legends to supplementary figures from Critical Role of STAT3 in IL-6–Mediated Drug Resistance in Human Neuroblastoma
37. Supplementary Figure 6 from The Activity of Zoledronic Acid on Neuroblastoma Bone Metastasis Involves Inhibition of Osteoclasts and Tumor Cell Survival and Proliferation
38. Supplementary Figure 2 from Critical Role of STAT3 in IL-6–Mediated Drug Resistance in Human Neuroblastoma
39. Supplementary Figure 1 from Critical Role of STAT3 in IL-6–Mediated Drug Resistance in Human Neuroblastoma
40. Supplementary Figure 4 from Critical Role of STAT3 in IL-6–Mediated Drug Resistance in Human Neuroblastoma
41. Supplementary Figure 3 from Critical Role of STAT3 in IL-6–Mediated Drug Resistance in Human Neuroblastoma
42. Supplementary Table 1 from A Galectin-3–Dependent Pathway Upregulates Interleukin-6 in the Microenvironment of Human Neuroblastoma
43. Data from Interleukin-6 in the Bone Marrow Microenvironment Promotes the Growth and Survival of Neuroblastoma Cells
44. Supplementary Figure 3 from Interleukin-6 in the Bone Marrow Microenvironment Promotes the Growth and Survival of Neuroblastoma Cells
45. Supplementary Figure 1 from Interleukin-6 in the Bone Marrow Microenvironment Promotes the Growth and Survival of Neuroblastoma Cells
46. The capture of extracellular vesicles endogenously released by xenotransplanted tumours induces an inflammatory reaction in the premetastatic niche
47. More than the genes, the tumor microenvironment in neuroblastoma
48. Fibroblasts and macrophages cooperate to create a pro-tumorigenic and immune resistant environment via activation of TGF-β/IL-6 pathway in neuroblastoma
49. The Extracellular Matrix and the Growth and Survival of Tumors
50. Abstract 3123: Cancer-associated fibroblasts and tumor-associated macrophages cooperate to promote TGF-β1-dependent NFkB activation and IL6 production and immune escape
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