71 results on '"Logsdon, Craig D."'
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2. Correction to: Kras mutation rate precisely orchestrates ductal derived pancreatic intraepithelial neoplasia and pancreatic cancer
3. Kras mutation rate precisely orchestrates ductal derived pancreatic intraepithelial neoplasia and pancreatic cancer
4. Transgenic Expression of PRSS1R122H Sensitizes Mice to Pancreatitis
5. Hematopoietic progenitor kinase 1 down-regulates the oncogenic receptor tyrosine kinase AXL in pancreatic cancer
6. Oncogenic KRAS Reduces Expression of FGF21 in Acinar Cells to Promote Pancreatic Tumorigenesis in Mice on a High-Fat Diet
7. Galectin-3 Mediates Tumor Cell–Stroma Interactions by Activating Pancreatic Stellate Cells to Produce Cytokines via Integrin Signaling
8. RAGE maintains high levels of NFκB and oncogenic Kras activity in pancreatic cancer
9. Mutant Human PRSS1 R122H Expression in Mice Greatly Exacerbates Pancreatitis
10. Acinar Ductal Metaplasia: Yap Fills a Gap
11. Preliminary evaluation of 1′-[18F]fluoroethyl-β-D-lactose ([18F]FEL) for detection of pancreatic cancer in nude mouse orthotopic xenografts
12. A High-Fat Diet Activates Oncogenic Kras and COX2 to Induce Development of Pancreatic Ductal Adenocarcinoma in Mice
13. Pancreatic cancer-associated Cathepsin E as a drug activator
14. 536 Oncogenic Ki-RAS-miR-21 Signaling Promotes AKT Activation in Pancreatic Cancer Cells Through a Novel AKT-Interacting Protein Bsta
15. Roles for KRAS in Pancreatic Tumor Development and Progression
16. Study human pancreatic cancer in mice: How close are they?
17. Activation of Nuclear Factor-κB in Acinar Cells Increases the Severity of Pancreatitis in Mice
18. Adrenomedullin is Up-regulated in Patients With Pancreatic Cancer and Causes Insulin Resistance in β Cells and Mice
19. Digesting New Information About the Role of Trypsin in Pancreatitis
20. Duct Cells Contribute to Regeneration of Endocrine and Acinar Cells Following Pancreatic Damage in Adult Mice
21. Regulator of Calcineurin 1 Controls Growth Plasticity of Adult Pancreas
22. 475q Tm4sf1 is Highly Expressed in Pancreatic Cancer and Promotes Cancer Cell Migration, Invasion and Survival
23. M1970 Knock Down of Signal Tranducer and Avtivator of Transcripton3 (STAT3) Enhance Gemcitabine Mediated Apoptosis in Chemoresistant Pancreatic Cancer Cells In Vitro and In Vivo
24. 132 Galectin-3 Induces Human Pancreatic Stellate Cell Activation and IL-8 Production via NF-kB Signaling
25. M1961 Galectin-3 Induces Cell Proliferation and Invasion by Binding K-RAS and Activating RAS Signaling in Pancreatic Cancer Cells
26. Ras Activity in Acinar Cells Links Chronic Pancreatitis and Pancreatic Cancer
27. Ras Activity Levels Control the Development of Pancreatic Diseases
28. Intracellular Trypsin Induces Pancreatic Acinar Cell Death but Not NF-κB Activation
29. Oncogenic Function of ATDC in Pancreatic Cancer through Wnt Pathway Activation and β-Catenin Stabilization
30. M2023 Expression of Cathepsin E Reverses EMT in Pancreatic Cancer Cells In Vitro and Expression Correlates with Increased Patient Survival in Human Pancreatic Adenocarcinoma
31. 890 Intracellular Trypsinogen Activation Induces Pancreatic Acinar Cell Apoptosis and Necrosis While Extracellular Trypsin Activates Nf-κB
32. M1837 Increased Severity of Arginine Induced Pancreatitis Is Reflected By Differential Pancreatic Gene Expression
33. 104. Aberrant Expression of Zinc Transporter ZIP4 (SLC39A4) Significantly Contributes to Human Pancreatic Cancer Pathogenesis and Progression
34. New insights into neurohormonal regulation of pancreatic secretion
35. Raf kinase inhibitory protein inhibits β-cell proliferation
36. S100P Stimulates Cell Proliferation and Survival via Receptor for Activated Glycation End Products (RAGE)
37. Identification of pancreatic genes expressed during the initiation of acute pancreatitis: EGR-1 is a key regulator
38. Dominant Negative Rab3D Inhibits Amylase Release from Mouse Pancreatic Acini
39. NF-κB activation in pancreas induces pancreatic and systemic inflammatory response
40. Human pancreatic acinar cells lack functional responses to cholecystokinin and gastrin
41. TGFβ activation of cAMP responsive element-binding protein (CREB) is dependent on PKA and smads in pancreatic acinar cells
42. Lysophosphatidic acid signaling in the enteric nervous system
43. Acute pancreatitis and systemic inflammatory response induced by NF-κB activation in pancreas
44. Human pancreatic acinar cells lack functional responses to cholecystokinin and gastrin
45. Effects of oncogenic K-ras on pancreatic acinar cells In vitro
46. Species Differences between Rat and Mouse CCKAReceptors Determine the Divergent Acinar Cell Response to the Cholecystokinin Analog JMV-180
47. Independent activation of trypsinogen and NFKB in pancreatic acinar cells during experimental acute pancreatitis
48. CCKB/gastrin receptors expressed in mouse pancreatic acinar cells couple to similar responses as CCKA receptors at physiologic agonist concentrations but show differences at high concentrations
49. TGFb inhibits growth in a human pancreatic cancer cell line lacking DPC4
50. B-cyclodextrins enhance efficiency of adenoviral mediated gene delivery to pancreas in vivo without inducing pancreatitis
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