417 results on '"Fleming, Timothy"'
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2. Regulation of cardiac allograft immune responses by microRNA-155
3. Extracellular Vesicles in Transplantation: Friend or Foe
4. Immune responses of lung transplant recipients against SARS-CoV-2 and common respiratory coronaviruses: Evidence for pre-existing cross-reactive immunity
5. Extracellular Vesicles in Transplantation: Friend or Foe
6. Loss of IGFBP2 mediates alveolar type 2 cell senescence and promotes lung fibrosis
7. Low-dose IL-2 prevents murine chronic cardiac allograft rejection: Role for IL-2-induced T regulatory cells and exosomes with PD-L1 and CD73
8. Novel role for tumor suppressor gene, liver kinase B1, in epithelial–mesenchymal transition leading to chronic lung allograft dysfunction
9. Enhanced enrichment of extracellular vesicles for laboratory and clinical research from drop-sized blood samples.
10. Cancer-associated mutations reveal a novel role for EpCAM as an inhibitor of cathepsin-L and tumor cell invasion
11. Optimized polyepitope neoantigen DNA vaccines elicit neoantigen-specific immune responses in preclinical models and in clinical translation
12. Local Magnetohydrodynamical Models of Layered Accretion Disks
13. The Effect of Resistivity on the Nonlinear Stage of the Magnetorotational Instability in Accretion Disks
14. HER-2 Gene Amplification Can Be Acquired as Breast Cancer Progresses
15. Extracellular vesicles: a potential new player in antibody-mediated rejection in lung allograft recipients
16. Awfully affecting : the development of a sentimental tradition in the lyrics of British and North American popular song
17. Development of an adenovirus vector vaccine platform for targeting dendritic cells
18. Cytosolic EpCAM cooperates with H-Ras to regulate epithelial to mesenchymal transition through ZEB1
19. Supplementary Table 4 from Breast Cancer Neoantigens Can Induce CD8+ T-Cell Responses and Antitumor Immunity
20. Data from Breast Cancer Neoantigens Can Induce CD8+ T-Cell Responses and Antitumor Immunity
21. Supplementary Figure 3 from EpCAM Modulates NF-κB Signaling and Interleukin-8 Expression in Breast Cancer
22. Supplementary Figures 1 - 5, Tables 1, 5 - 9 from Breast Cancer Neoantigens Can Induce CD8+ T-Cell Responses and Antitumor Immunity
23. Data from EpCAM Modulates NF-κB Signaling and Interleukin-8 Expression in Breast Cancer
24. Supplementary Figure Legend from EpCAM Modulates NF-κB Signaling and Interleukin-8 Expression in Breast Cancer
25. Supplementary Figure 1 from EpCAM Modulates NF-κB Signaling and Interleukin-8 Expression in Breast Cancer
26. Supplementary Figure 4 from EpCAM Modulates NF-κB Signaling and Interleukin-8 Expression in Breast Cancer
27. Supplementary Figure 2 from EpCAM Modulates NF-κB Signaling and Interleukin-8 Expression in Breast Cancer
28. Supplementary Figure 5 from EpCAM Modulates NF-κB Signaling and Interleukin-8 Expression in Breast Cancer
29. Supplementary Table 2 from Breast Cancer Neoantigens Can Induce CD8+ T-Cell Responses and Antitumor Immunity
30. Supplementary Table 3 from Breast Cancer Neoantigens Can Induce CD8+ T-Cell Responses and Antitumor Immunity
31. Downregulation of a tumor suppressor gene LKB1 in lung transplantation as a biomarker for chronic murine lung allograft rejection
32. Supplementary Table S1 from Isolation and Molecular Profiling of Bone Marrow Micrometastases Identifies TWIST1 as a Marker of Early Tumor Relapse in Breast Cancer Patients
33. Supplementary Figures 1 - 6 from Safety and Preliminary Evidence of Biologic Efficacy of a Mammaglobin-A DNA Vaccine in Patients with Stable Metastatic Breast Cancer
34. Les plantations forestières en Afrique centrale
35. Paired-like Homeodomain Transcription factor 2 expression by breast cancer bone marrow disseminated tumor cells is associated with early recurrent disease development
36. Cross-dressed CD8α⁺/CD103⁺ dendritic cells prime CD8⁺ T cells following vaccination
37. Extracellular Vesicles Mediate Immune Responses to Tissue-Associated Self-Antigens: Role in Solid Organ Transplantations
38. Response to Comment on “Cutting Edge: Circulating Exosomes with COVID Spike Protein Are Induced by BNT162b2 (Pfizer-BioNTech) Vaccination prior to Development of Antibodies: A Novel Mechanism for Immune Activation by mRNA Vaccines”
39. Time for a New Sherman Act? The Debate on Antitrust Reform in Historical Perspective
40. Targeting an IKBKE cytokine network impairs triple-negative breast cancer growth
41. KGF Receptor: Transforming Potential on Fibroblasts and Epithelial Cell-Specific Expression by Alternative Splicing
42. EGF Triggers a Similar Signalling Cascade in Different Cell Types Overexpressing the EGF Receptor
43. A decline in club cell secretory proteins in lung transplantation is associated with release of natural killer cells exosomes leading to chronic rejection
44. Circulating exosomes induced by respiratory viral infections in lung transplant recipients activate cellular stress, innate immune pathways and epithelial to mesenchymal transition
45. Neoantigen DNA vaccines are safe, feasible, and capable of inducing neoantigen-specific immune responses in patients with triple negative breast cancer
46. Cutting Edge: Circulating Exosomes with COVID Spike Protein Are Induced by BNT162b2 (Pfizer–BioNTech) Vaccination prior to Development of Antibodies: A Novel Mechanism for Immune Activation by mRNA Vaccines
47. SARS‐CoV‐2 infection in lung transplant recipients induces circulating exosomes with SARS‐CoV‐2 spike protein S2
48. Independent Expression of Human α or β Platelet-Derived Growth Factor Receptor cDNAs in a Naive Hematopoietic Cell Leads to Functional Coupling with Mitogenic and Chemotactic Signaling Pathways
49. MyoD Induces Growth Arrest Independent of Differentiation in Normal and Transformed Cells
50. Development of a Highly Efficient Expression cDNA Cloning System: Application to Oncogene Isolation
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