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64 results on '"Hessmann E"'

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1. Spatial tumor immune heterogeneity facilitates subtype co-existence and therapy response in pancreatic cancer.

2. A Concept for Mining Transitive Sequential Patterns from Pancreatic Cancer Patient Journeys.

3. A Novel AMPK Inhibitor Sensitizes Pancreatic Cancer Cells to Ferroptosis Induction.

4. Expression of gemcitabine metabolizing enzymes and stromal components reveal complexities of preclinical pancreatic cancer models for therapeutic testing.

5. An NFATc1/SMAD3/cJUN Complex Restricted to SMAD4-Deficient Pancreatic Cancer Guides Rational Therapies.

6. Epigenetic control of pancreatic cancer metastasis.

7. Identification of a ΔNp63-Dependent Basal-Like A Subtype-Specific Transcribed Enhancer Program (B-STEP) in Aggressive Pancreatic Ductal Adenocarcinoma.

8. Interactive enhancer hubs (iHUBs) mediate transcriptional reprogramming and adaptive resistance in pancreatic cancer.

9. AP1/Fra1 confers resistance to MAPK cascade inhibition in pancreatic cancer.

10. NFATc1 Is a Central Mediator of EGFR-Induced ARID1A Chromatin Dissociation During Acinar Cell Reprogramming.

11. Axon guidance receptor ROBO3 modulates subtype identity and prognosis via AXL-associated inflammatory network in pancreatic cancer.

12. TNF-α-producing macrophages determine subtype identity and prognosis via AP1 enhancer reprogramming in pancreatic cancer.

13. EZH2 Regulates Pancreatic Cancer Subtype Identity and Tumor Progression via Transcriptional Repression of GATA6 .

14. Chromatin-Independent Interplay of NFATc1 and EZH2 in Pancreatic Cancer.

15. Combination of S-1 and the oral ATR inhibitor ceralasertib is effective against pancreatic cancer cells.

16. New Insights Into Pancreatic Cancer: Notes from a Virtual Meeting.

17. STIM1 Mediates Calcium-Dependent Epigenetic Reprogramming in Pancreatic Cancer.

18. Synergistic targeting and resistance to PARP inhibition in DNA damage repair-deficient pancreatic cancer.

19. Microenvironmental Determinants of Pancreatic Cancer.

20. Machine Learning Developed a MYC Expression Feature-Based Signature for Predicting Prognosis and Chemoresistance in Pancreatic Adenocarcinoma.

21. SPARC dependent collagen deposition and gemcitabine delivery in a genetically engineered mouse model of pancreas cancer.

22. Preclinical Evaluation of 1,2-Diamino-4,5-Dibromobenzene in Genetically Engineered Mouse Models of Pancreatic Cancer.

23. Aberrant NFATc1 signaling counteracts TGFβ-mediated growth arrest and apoptosis induction in pancreatic cancer progression.

24. Cytosolic 5'-nucleotidase 1A is overexpressed in pancreatic cancer and mediates gemcitabine resistance by reducing intracellular gemcitabine metabolites.

25. Targeting the pancreatic tumor microenvironment by plant-derived products and their nanoformulations.

26. Utilizing High Resolution Ultrasound to Monitor Tumor Onset and Growth in Genetically Engineered Pancreatic Cancer Models.

27. Fibroblast drug scavenging increases intratumoural gemcitabine accumulation in murine pancreas cancer.

28. Quantitative evaluation of gut microbiota composition in pancreatic cancer: A pooled study.

29. ATM Deficiency Generating Genomic Instability Sensitizes Pancreatic Ductal Adenocarcinoma Cells to Therapy-Induced DNA Damage.

30. Histone deacetylase class-I inhibition promotes epithelial gene expression in pancreatic cancer cells in a BRD4- and MYC-dependent manner.

31. Context-Dependent Epigenetic Regulation of Nuclear Factor of Activated T Cells 1 in Pancreatic Plasticity.

32. Tumor immune microenvironment-based therapies in pancreatic ductal adenocarcinoma: time to update the concept.

33. The collagen landscape in cancer: profiling collagens in tumors and in circulation reveals novel markers of cancer-associated fibroblast subtypes.

34. Clinicopathological Characteristics, Prognosis, and Correlated Tumor Cell Function of Tropomodulin-3 in Pancreatic Adenocarcinoma.

35. Combined analytical approach empowers precise spectroscopic interpretation of subcellular components of pancreatic cancer cells.

36. Epigenetic treatment of pancreatic cancer: is there a therapeutic perspective on the horizon?

37. MYC in pancreatic cancer: novel mechanistic insights and their translation into therapeutic strategies.

38. GSK-3β Governs Inflammation-Induced NFATc2 Signaling Hubs to Promote Pancreatic Cancer Progression.

39. Loss of ATM accelerates pancreatic cancer formation and epithelial-mesenchymal transition.

40. NFATc1 Links EGFR Signaling to Induction of Sox9 Transcription and Acinar-Ductal Transdifferentiation in the Pancreas.

41. Antithetical NFATc1-Sox2 and p53-miR200 signaling networks govern pancreatic cancer cell plasticity.

42. Inflammation-induced NFATc1-STAT3 transcription complex promotes pancreatic cancer initiation by KrasG12D.

43. The added value of [ 68 Ga]Ga-DOTA-FAPI-04 PET/CT in pancreatic cancer: a comparison to [ 18 F]F-FDG.

44. NEDD8-Activating Enzyme Inhibitor MLN4924 Inhibits Both the Tumor Stroma and Angiogenesis in Pancreatic Cancer via Gli1 and REDD1.

45. Stroma-targeting strategies in pancreatic cancer: a double-edged sword.

46. Functional biomarkers derived from computed tomography and magnetic resonance imaging differentiate PDAC subgroups and reveal gemcitabine-induced hypo-vascularization.

47. Heterogeneous cancer-associated fibroblasts: A new perspective for understanding immunosuppression in pancreatic cancer.

48. Cancer-associated fibroblasts employ NUFIP1-dependent autophagy to secrete nucleosides and support pancreatic tumor growth.

49. The pancreatic cancer immune tumor microenvironment is negatively remodeled by gemcitabine while TGF-β receptor plus dual checkpoint inhibition maintains antitumor immune cells.

50. Resveratrol inhibits the expression of RYR2 and is a potential treatment for pancreatic cancer.

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