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1. CAR+ extracellular vesicles predict ICANS in patients with B cell lymphomas treated with CD19-directed CAR T cells

3. Supplementary Figure 5 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

4. Supplementary Figure 3 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

5. Data from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

6. Supplementary video 1 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

7. Supplementary Figure 9 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

8. Supplementary Figure 11 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

9. Supplementary Figure 10 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

10. Supplementary Figure 4 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

11. Supplementary Figure 2 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

12. Supplementary Table S1 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

13. Supplementary Table S1 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

14. Supplementary Figure 4 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

15. Supplementary video 2 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

16. Supplementary Figure 7 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

17. Supplementary Figure 3 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

18. Supplementary Figure 1 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

19. Supplementary video 2 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

20. Supplementary Figure 9 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

21. Supplementary video 1 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

22. Supplementary Figure 7 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

23. Supplementary Figure 6 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

24. Supplementary Figure 1 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

25. Supplementary Figure 6 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

26. Supplementary Figure 2 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

27. Supplementary Figure 10 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

28. Supplementary Figure 5 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

29. Supplementary Table S2 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

30. Supplementary Table S2 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

31. Supplementary Figure 8 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

32. Supplementary Figure 11 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

33. Supplementary Figure 8 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

34. Data from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

36. Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages

37. Aberrant MET activation impairs perinuclear actin cap organization with YAP1 cytosolic relocation

41. Pre-transplant CD69+ extracellular vesicles are negatively correlated with active ATLG serum levels and associate with the onset of GVHD in allogeneic HSCT patients

42. Impaired synaptic plasticity in an animal model of autism exhibiting early hippocampal GABAergic-BDNF/TrkB signaling alterations

43. Small Extracellular Vesicles from Inflamed Adipose Derived Stromal Cells Enhance the NF-κB-Dependent Inflammatory/Catabolic Environment of Osteoarthritis

44. The autocrine loop of ALK receptor and ALKAL2 ligand is an actionable target in consensus molecular subtype 1 colon cancer

45. Exosomes Recovered From the Plasma of COVID-19 Patients Expose SARS-CoV-2 Spike-Derived Fragments and Contribute to the Adaptive Immune Response

49. A new method for the study of biophysical and morphological parameters in 3D cell cultures: Evaluation in LoVo spheroids treated with crizotinib

50. Oxidative stress-induced DNA damage and repair in primary human osteoarthritis chondrocytes: focus on IKKα and the DNA Mismatch Repair System

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