1,096 results on '"Linden, Joel"'
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2. Improved survival of SARS COV-2-infected K18-hACE2 mice treated with adenosine A2AR agonist
3. Feeding desensitizes A1 adenosine receptors in adipose through FOXO1-mediated transcriptional regulation
4. Pediatric tolerogenic DCs expressing CD4 and immunoglobulin‐like transcript receptor (ILT)‐4 secrete IL‐10 in response to Fc and adenosine
5. Adenosine A2A receptor agonist (regadenoson) in human lung transplantation
6. G protein beta4 as a structural determinant of enhanced nucleotide exchange in the A2A adenosine receptor Gs complex
7. The Second Extracellular Loop of the Adenosine A1 Receptor Mediates Activity of Allosteric Enhancers
8. Unlocking antitumor immunity with adenosine receptor blockers
9. Regadenoson for the treatment of COVID-19: A five case clinical series and mouse studies
10. Effects of adenosine A2A receptor activation and alanyl-glutamine in Clostridium difficile toxin-induced ileitis in rabbits and cecitis in mice
11. Adenosine receptors in GtoPdb v.2023.1
12. Supplementary Figure 2 from The Expression of Adenosine A2B Receptor on Antigen-Presenting Cells Suppresses CD8+ T-cell Responses and Promotes Tumor Growth
13. Supplementary Figure 6 from The Expression of Adenosine A2B Receptor on Antigen-Presenting Cells Suppresses CD8+ T-cell Responses and Promotes Tumor Growth
14. Data from The Expression of Adenosine A2B Receptor on Antigen-Presenting Cells Suppresses CD8+ T-cell Responses and Promotes Tumor Growth
15. Supplementary Figure 4 from The Expression of Adenosine A2B Receptor on Antigen-Presenting Cells Suppresses CD8+ T-cell Responses and Promotes Tumor Growth
16. Supplementary Figure 5 from The Expression of Adenosine A2B Receptor on Antigen-Presenting Cells Suppresses CD8+ T-cell Responses and Promotes Tumor Growth
17. Supplementary Figure 8 from The Expression of Adenosine A2B Receptor on Antigen-Presenting Cells Suppresses CD8+ T-cell Responses and Promotes Tumor Growth
18. Supplementary Figure 7 from The Expression of Adenosine A2B Receptor on Antigen-Presenting Cells Suppresses CD8+ T-cell Responses and Promotes Tumor Growth
19. Supplementary Figure 3 from The Expression of Adenosine A2B Receptor on Antigen-Presenting Cells Suppresses CD8+ T-cell Responses and Promotes Tumor Growth
20. Supplementary Figure Legends from The Expression of Adenosine A2B Receptor on Antigen-Presenting Cells Suppresses CD8+ T-cell Responses and Promotes Tumor Growth
21. Supplementary Figure 1 from The Expression of Adenosine A2B Receptor on Antigen-Presenting Cells Suppresses CD8+ T-cell Responses and Promotes Tumor Growth
22. Transgenic A1 Adenosine Receptor Overexpression Increases Myocardial Resistance to Ischemia
23. Table S2 from Targeting Adenosine with Adenosine Deaminase 2 to Inhibit Growth of Solid Tumors
24. Data from A2AR Adenosine Signaling Suppresses Natural Killer Cell Maturation in the Tumor Microenvironment
25. Supplementary Figure Legends S1-S4 from A2AR Adenosine Signaling Suppresses Natural Killer Cell Maturation in the Tumor Microenvironment
26. Figure S1-11 from Targeting Adenosine with Adenosine Deaminase 2 to Inhibit Growth of Solid Tumors
27. Supplementary Figures S1-S4 from A2AR Adenosine Signaling Suppresses Natural Killer Cell Maturation in the Tumor Microenvironment
28. Supplemental Figure 3 from Adenosine A2A Receptors Intrinsically Regulate CD8+ T Cells in the Tumor Microenvironment
29. Data from Myeloid Expression of Adenosine A2A Receptor Suppresses T and NK Cell Responses in the Solid Tumor Microenvironment
30. Supplemental Figure 1 from Adenosine A2A Receptors Intrinsically Regulate CD8+ T Cells in the Tumor Microenvironment
31. Supplemental Figure 5 from Adenosine A2A Receptors Intrinsically Regulate CD8+ T Cells in the Tumor Microenvironment
32. Supplementary Figure Legends from Myeloid Expression of Adenosine A2A Receptor Suppresses T and NK Cell Responses in the Solid Tumor Microenvironment
33. Data from Adenosine A2A Receptors Intrinsically Regulate CD8+ T Cells in the Tumor Microenvironment
34. Supplementary Table of Antibodies from Myeloid Expression of Adenosine A2A Receptor Suppresses T and NK Cell Responses in the Solid Tumor Microenvironment
35. Supplemental Figure 2 from Adenosine A2A Receptors Intrinsically Regulate CD8+ T Cells in the Tumor Microenvironment
36. Supplementary Figure 2 from Myeloid Expression of Adenosine A2A Receptor Suppresses T and NK Cell Responses in the Solid Tumor Microenvironment
37. Supplemental Figure Legends from Adenosine A2A Receptors Intrinsically Regulate CD8+ T Cells in the Tumor Microenvironment
38. Supplementary Figure 1 from Myeloid Expression of Adenosine A2A Receptor Suppresses T and NK Cell Responses in the Solid Tumor Microenvironment
39. Supplemental Table 1 from Adenosine A2A Receptors Intrinsically Regulate CD8+ T Cells in the Tumor Microenvironment
40. Supplemental Figure 4 from Adenosine A2A Receptors Intrinsically Regulate CD8+ T Cells in the Tumor Microenvironment
41. P16.26: Adenosine A2A Receptor (A2AR) Agonists Improve Survival in K28-hACE2 Mice and Syrian Hamsters Following SARS CoV-2 Infection
42. Molecular Biology and Pharmacology of Recombinant Adenosine Receptors
43. Purinergic regulation of the immune system
44. Characterization of Dahl salt-sensitive rats with genetic disruption of the A2B adenosine receptor gene: implications for A2B adenosine receptor signaling during hypertension
45. Kinetic profiling and functional characterization of 8-phenylxanthine derivatives as A2B adenosine receptor antagonists
46. Sickle cell vaso-occlusion causes activation of iNKT cells that is decreased by the adenosine A2A receptor agonist regadenoson
47. Blood Flow Regulation in Inflammation
48. P1 Receptors in the Cardiovascular System
49. Augmentation of Muscle Blood Flow by Ultrasound Cavitation Is Mediated by ATP and Purinergic Signaling
50. Feeding desensitizes A1 adenosine receptors in adipose through FOXO1-mediated transcriptional regulation
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