108 results on '"Roychoudhuri, Rahul"'
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2. GS-TCGA: Gene Set-Based Analysis of The Cancer Genome Atlas
3. Tumour-retained activated CCR7+ dendritic cells are heterogeneous and regulate local anti-tumour cytolytic activity
4. Lack of phosphatidylinositol 3-kinase VPS34 in regulatory T cells leads to a fatal lymphoproliferative disorder without affecting their development
5. Supplemental Figure 2 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
6. Supplemental Figure 2 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
7. Supplemental Figure 1 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
8. Supplemental Figure 4 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
9. Supplemental Figure 1 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
10. Supplemental Figure 3 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
11. Supplemental Figure 3 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
12. Supplemental Figure 4 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
13. Supplemental Figure 2 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
14. Supplemental Figure 1 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
15. Supplemental Figure 1 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
16. Supplemental Figure 4 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
17. Supplemental Figure 4 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
18. Supplemental Figure 2 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
19. Data from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
20. Data from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
21. Supplemental Figure 3 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
22. Supplemental Figure 3 from Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
23. Intracellular K+ Limits T-cell Exhaustion and Preserves Antitumor Function
24. 933 Heme-mediated reprogramming guides CD8+T cell exhaustion in response to mitochondrial dysfunction
25. Intracellular K+ limits T cell exhaustion and preserves antitumor function
26. The Toll-like receptor 4 pathway modulates response to anti-PD-1 therapy
27. Orthogonal engineering of synthetic T cell states to enhance cancer immunotherapy
28. Data from Type I Cytokines Synergize with Oncogene Inhibition to Induce Tumor Growth Arrest
29. Supplementary Materials and Methods from Type I Cytokines Synergize with Oncogene Inhibition to Induce Tumor Growth Arrest
30. Data from Type I Cytokines Synergize with Oncogene Inhibition to Induce Tumor Growth Arrest
31. Supplementary Figures 1 - 12 and Tables 1 - 11 from Type I Cytokines Synergize with Oncogene Inhibition to Induce Tumor Growth Arrest
32. Supplemental Figure S4 from Akt Inhibition Enhances Expansion of Potent Tumor-Specific Lymphocytes with Memory Cell Characteristics
33. Data from Akt Inhibition Enhances Expansion of Potent Tumor-Specific Lymphocytes with Memory Cell Characteristics
34. Supplemental Figure S1 from Akt Inhibition Enhances Expansion of Potent Tumor-Specific Lymphocytes with Memory Cell Characteristics
35. Data from Akt Inhibition Enhances Expansion of Potent Tumor-Specific Lymphocytes with Memory Cell Characteristics
36. Supplemental Figure S3 from Akt Inhibition Enhances Expansion of Potent Tumor-Specific Lymphocytes with Memory Cell Characteristics
37. Supplemental Figure S2 from Akt Inhibition Enhances Expansion of Potent Tumor-Specific Lymphocytes with Memory Cell Characteristics
38. Supplemental Figure S6 from Akt Inhibition Enhances Expansion of Potent Tumor-Specific Lymphocytes with Memory Cell Characteristics
39. Supplemental Figure S5 from Akt Inhibition Enhances Expansion of Potent Tumor-Specific Lymphocytes with Memory Cell Characteristics
40. Supplemental Figure S7 from Akt Inhibition Enhances Expansion of Potent Tumor-Specific Lymphocytes with Memory Cell Characteristics
41. Supplemental Figure Legend from Akt Inhibition Enhances Expansion of Potent Tumor-Specific Lymphocytes with Memory Cell Characteristics
42. IL-2 is inactivated by the acidic pH environment of tumors enabling engineering of a pH-selective mutein
43. 1069 OX40/CD137 dual agonism potentiates anti-tumour immunity by driving functional reprogramming and instability of regulatory T (Treg) cells
44. Multimodal single-cell profiling of intrahepatic cholangiocarcinoma defines hyperactivated Tregs as a potential therapeutic target
45. BACH2 restricts NK cell maturation and function, limiting immunity to cancer metastasis
46. Multimodal single-cell profiling of intrahepatic cholangiocarcinoma defines hyperactivated Tregs as a potential therapeutic target
47. TCR-induced FOXP3 expression by CD8+ T cells impairs their anti-tumor activity
48. Multiply restimulated human thymic regulatory T cells express distinct signature regulatory T-cell transcription factors without evidence of exhaustion
49. CCR8 marks highly suppressive Treg cells within tumours but is dispensable for their accumulation and suppressive function
50. A cell-based bioluminescence assay reveals dose-dependent and contextual repression of AP-1-driven gene expression by BACH2
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