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1. CRISPR screens decode cancer cell pathways that trigger γδ T cell detection.

3. Uncovering the mode of action of engineered T cells in patient cancer organoids

4. 9[delta]2T cell diversity and the receptor interface with tumor cells

5. Basics of Advanced Therapy Medicinal Product Development in Academic Pharma and The Role of a GMP Simulation Unit

9. First in Human Clinical Responses and Persistence Data on TEG001: A Next Generation of Engineered Αβ T Cells Targeting AML and MM with a High Affinity γ9δ2TCR

10. Uncovering the mode of action of engineered T cells in patient cancer organoids

14. Adding Help to an HLA-A*24:02 Tumor-Reactive γδTCR Increases Tumor Control

19. Behavioral-transcriptomic landscape of engineered T cells targeting human cancer organoids

20. γδ T-cell Receptors Derived from Breast Cancer–Infiltrating T Lymphocytes Mediate Antitumor Reactivity

21. γ9δ2T cell diversity and the receptor interface with tumor cells

22. TEG011 persistence averts extramedullary tumor growth without exerting off-target toxicity against healthy tissues in a humanized HLA-A*24:02 transgenic mice

25. Additional file 5: of Evaluating in vivo efficacy – toxicity profile of TEG001 in humanized mice xenografts against primary human AML disease and healthy hematopoietic cells

26. Additional file 1: of Evaluating in vivo efficacy â toxicity profile of TEG001 in humanized mice xenografts against primary human AML disease and healthy hematopoietic cells

27. Additional file 6: of Evaluating in vivo efficacy – toxicity profile of TEG001 in humanized mice xenografts against primary human AML disease and healthy hematopoietic cells

28. Additional file 4: of Evaluating in vivo efficacy – toxicity profile of TEG001 in humanized mice xenografts against primary human AML disease and healthy hematopoietic cells

29. Additional file 2: of Evaluating in vivo efficacy â toxicity profile of TEG001 in humanized mice xenografts against primary human AML disease and healthy hematopoietic cells

32. A bispecific nanobody approach to leverage the potent and widely applicable tumor cytolytic capacity of Vγ9Vδ2-T cells

33. RhoB Mediates Phosphoantigen Recognition by V gamma 9V delta 2 T Cell Receptor

34. RhoB Mediates Phosphoantigen Recognition by Vγ9Vδ2 T Cell Receptor

43. Cancer immunotherapy using γδT cells: dealing with diversity.

44. Differential Association of CD45 Isoforms with CD4 and CD8 Regulates the Actions of Specific Pools of p56lck Tyrosine Kinase in T Cell Antigen Receptor Signal Transduction

46. Hegy- és településnevek a Felső-Tisza-vidéken [Names for mountains and settlements in the Upper Tisza region]

47. T Cell Receptor Fused to CD3ζ: Transmembrane Domain of CD3ζ Prevents TCR Mis-Pairing, Whereas Complete CD3ζ Directs Functional TCR Expression

49. Differential Association of CD45 Isoforms with CD4 and CD8 Regulates the Actions of Specific Pools of p56lckTyrosine Kinase in T Cell Antigen Receptor Signal Transduction*

50. Többnevűség és névosztódás Ung vármegye korai helységneveiben [Multiplicity and division of names identifying early settlements in historical Ung County, in the north-eastern part of the former Kingdom of Hungary]

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