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1. Resolution of Acinar Dedifferentiation Regulates Tissue Remodeling in Pancreatic Injury and Cancer Initiation

2. Retraction Note: Transient cytokine treatment induces acinar cell reprogramming and regenerates functional beta cell mass in diabetic mice

5. Single-cell profiling of myeloid cells in glioblastoma across species and disease stage reveals macrophage competition and specialization

6. Supplementary Figures and Legends from Dynamic Regulation of Expression of KRAS and Its Effectors Determines the Ability to Initiate Tumorigenesis in Pancreatic Acinar Cells

7. Supplementary Materials and Methods from Dynamic Regulation of Expression of KRAS and Its Effectors Determines the Ability to Initiate Tumorigenesis in Pancreatic Acinar Cells

8. Data from Dynamic Regulation of Expression of KRAS and Its Effectors Determines the Ability to Initiate Tumorigenesis in Pancreatic Acinar Cells

9. Data from Nanobody-Based Targeting of the Macrophage Mannose Receptor for Effective In Vivo Imaging of Tumor-Associated Macrophages

10. Supplementary Methods from Nanobody-Based Targeting of the Macrophage Mannose Receptor for Effective In Vivo Imaging of Tumor-Associated Macrophages

11. Data from Sirtuin-1 Regulates Acinar-to-Ductal Metaplasia and Supports Cancer Cell Viability in Pancreatic Cancer

12. Supplementary Tables 1-5 from Nanobody-Based Targeting of the Macrophage Mannose Receptor for Effective In Vivo Imaging of Tumor-Associated Macrophages

13. Supplementary Video 3 from Nanobody-Based Targeting of the Macrophage Mannose Receptor for Effective In Vivo Imaging of Tumor-Associated Macrophages

14. Supplementary Video 2 from Nanobody-Based Targeting of the Macrophage Mannose Receptor for Effective In Vivo Imaging of Tumor-Associated Macrophages

15. Supplementary Video 1 from Nanobody-Based Targeting of the Macrophage Mannose Receptor for Effective In Vivo Imaging of Tumor-Associated Macrophages

16. Supplementary Methods, Figures 1 - 9, Tables 1 - 2 from Sirtuin-1 Regulates Acinar-to-Ductal Metaplasia and Supports Cancer Cell Viability in Pancreatic Cancer

17. Supplementary Figures 1-8, Video Legends 1-3 from Nanobody-Based Targeting of the Macrophage Mannose Receptor for Effective In Vivo Imaging of Tumor-Associated Macrophages

20. Differential plasticity and fate of brain-resident and recruited macrophages during the onset and resolution of neuroinflammation

25. Divalent Metal Transporter 1 Regulates Iron-Mediated ROS and Pancreatic β Cell Fate in Response to Cytokines

27. Peroxiredoxin-I Maintains Inflammation during Pancreatitis

28. Transcutaneous Vagal Nerve Stimulation Alone or in Combination With Radiotherapy Stimulates Lung Tumor Infiltrating Lymphocytes But Fails to Suppress Tumor Growth

30. Transient cytokine treatment induces acinar cell reprogramming and regenerates functional beta cell mass in diabetic mice

34. Discovery and 3D imaging of a novel ΔNp63-expressing basal cell type in human pancreatic ducts with implications in disease.

36. Discovery and 3D imaging of a novel ΔNp63-expressing basal cell type in human pancreatic ducts with implications in disease

37. Discovery and 3D imaging of a novel Δnp63-expressing basal cell type in human pancreatic ducts with implications in disease

38. MECOM permits pancreatic acinar cell dedifferentiation avoiding cell death under stress conditions.

39. Dynamic regulation of expression of KRAS and its effectors determines the ability to initiate tumorigenesis in pancreatic acinar cells.

40. Peroxiredoxin-I Sustains Inflammation During Pancreatitis

41. Peroxiredoxin-I Sustains Inflammation During Pancreatitis

43. Dynamic Regulation of Expression of KRAS and Its Effectors Determines the Ability to Initiate Tumorigenesis in Pancreatic Acinar Cells

44. Inflammation enables pancreatic acinar cells to overcome resistance to oncogenic Kras by increasing its expression and plasma membrane localization

45. Pathogen Invasion Reveals the Differential Plasticity and Fate of Resident and Recruited Brain Macrophages During the Onset and Resolution of Disease

48. Regulation of pancreatic beta-cell mass

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