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2. Supplementary Figure Legends from Accessory Cells of the Microenvironment Protect Multiple Myeloma from T-Cell Cytotoxicity through Cell Adhesion-Mediated Immune Resistance

4. Supplementary Figure 2 from Accessory Cells of the Microenvironment Protect Multiple Myeloma from T-Cell Cytotoxicity through Cell Adhesion-Mediated Immune Resistance

5. Supplementary Figure 3 from Accessory Cells of the Microenvironment Protect Multiple Myeloma from T-Cell Cytotoxicity through Cell Adhesion-Mediated Immune Resistance

6. Supplementary Figure 1 from Accessory Cells of the Microenvironment Protect Multiple Myeloma from T-Cell Cytotoxicity through Cell Adhesion-Mediated Immune Resistance

7. Supplementary Figure 4 from Accessory Cells of the Microenvironment Protect Multiple Myeloma from T-Cell Cytotoxicity through Cell Adhesion-Mediated Immune Resistance

10. Supplementary Figure 6 from Accessory Cells of the Microenvironment Protect Multiple Myeloma from T-Cell Cytotoxicity through Cell Adhesion-Mediated Immune Resistance

12. Supplementary Figure 5 from Accessory Cells of the Microenvironment Protect Multiple Myeloma from T-Cell Cytotoxicity through Cell Adhesion-Mediated Immune Resistance

14. BMP6 overcomes multiple myeloma-induced bone disease by inducing the expression of small leucine-rich proteoglycans

18. Mesenchymal Stem Cells Induce Resistance to Chemotherapy through the Release of Platinum-Induced Fatty Acids

19. Liposomal dexamethasone inhibits tumor growth in an advanced human-mouse hybrid model of multiple myeloma

26. Spatial distribution and survival of human and goat mesenchymal stromal cells on hydroxyapatite and beta-tricalcium phosphate

27. Establishing human leukemia xenograft mouse models by implanting human bone marrow–like scaffold-based niches

29. Target Antigen Density Governs the Efficacy of Anti–CD20-CD28-CD3 ζ Chimeric Antigen Receptor–Modified Effector CD8+ T Cells

32. Modulation of CD38 Expression Levels on Multiple Myeloma Tumor Cells By All-Trans Retinoic Acid Improves the Efficacy of the Anti-CD38 Monoclonal Antibody Daratumumab

37. Accessory Cells of the Microenvironment Protect Multiple Myeloma from T-Cell Cytotoxicity through Cell Adhesion-Mediated Immune Resistance

41. Dll1+ secretory progenitor cells revert to stem cells upon crypt damage

42. Reconstructing the human hematopoietic niche in immunodeficient mice: opportunities for studying primary multiple myeloma

45. Eradication of Medullary Multiple Myeloma by CD4+ Cytotoxic Human T Lymphocytes Directed at a Single Minor Histocompatibility Antigen

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