649 results on '"De Launoit, Yvan"'
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2. TMPRSS2:ERG gene fusion expression regulates bone markers and enhances the osteoblastic phenotype of prostate cancer bone metastases
3. Aberrant up-regulation of iNOS/NO system is correlated with an increased abundance of Foxp3+ cells and reduced effector/memory cell markers expression during colorectal cancer: immunomodulatory effects of cetuximab combined with chemotherapy
4. Tri des cellules sénescentes par cytométrie en flux: Des spécificitéset des pièges à éviter.
5. Supplementary Figure S6 from Functional Analysis of Somatic Mutations Affecting Receptor Tyrosine Kinase Family in Metastatic Colorectal Cancer
6. Supplementary Table 2 from Loss of a Negative Feedback Loop Involving Pea3 and Cyclin D2 Is Required for Pea3-Induced Migration in Transformed Mammary Epithelial Cells
7. Supplementary Figure 4 from Loss of a Negative Feedback Loop Involving Pea3 and Cyclin D2 Is Required for Pea3-Induced Migration in Transformed Mammary Epithelial Cells
8. Data from Functional Analysis of Somatic Mutations Affecting Receptor Tyrosine Kinase Family in Metastatic Colorectal Cancer
9. Supplementary Table S1 from Functional Analysis of Somatic Mutations Affecting Receptor Tyrosine Kinase Family in Metastatic Colorectal Cancer
10. Supplementary Methods from Loss of a Negative Feedback Loop Involving Pea3 and Cyclin D2 Is Required for Pea3-Induced Migration in Transformed Mammary Epithelial Cells
11. Supplementary Figure 2 from Loss of a Negative Feedback Loop Involving Pea3 and Cyclin D2 Is Required for Pea3-Induced Migration in Transformed Mammary Epithelial Cells
12. Supplementary Table 1 from Loss of a Negative Feedback Loop Involving Pea3 and Cyclin D2 Is Required for Pea3-Induced Migration in Transformed Mammary Epithelial Cells
13. Data from Loss of a Negative Feedback Loop Involving Pea3 and Cyclin D2 Is Required for Pea3-Induced Migration in Transformed Mammary Epithelial Cells
14. Supplementary Figure 3 from Loss of a Negative Feedback Loop Involving Pea3 and Cyclin D2 Is Required for Pea3-Induced Migration in Transformed Mammary Epithelial Cells
15. Supplementary Figure Legend from Loss of a Negative Feedback Loop Involving Pea3 and Cyclin D2 Is Required for Pea3-Induced Migration in Transformed Mammary Epithelial Cells
16. Supplementary Figure 1 from Loss of a Negative Feedback Loop Involving Pea3 and Cyclin D2 Is Required for Pea3-Induced Migration in Transformed Mammary Epithelial Cells
17. Supplementary Table 2 from Autocrine Induction of Invasive and Metastatic Phenotypes by the MIF-CXCR4 Axis in Drug-Resistant Human Colon Cancer Cells
18. Supplementary Video 1 from Senescence-Associated Oxidative DNA Damage Promotes the Generation of Neoplastic Cells
19. Supplementary Methods from Senescence-Associated Oxidative DNA Damage Promotes the Generation of Neoplastic Cells
20. Supplementary Table 1 from Autocrine Induction of Invasive and Metastatic Phenotypes by the MIF-CXCR4 Axis in Drug-Resistant Human Colon Cancer Cells
21. Data from A Genetic Screen Identifies Topoisomerase 1 as a Regulator of Senescence
22. Supplementary Figure 1 from Autocrine Induction of Invasive and Metastatic Phenotypes by the MIF-CXCR4 Axis in Drug-Resistant Human Colon Cancer Cells
23. Supplementary Figures 1-8 from Senescence-Associated Oxidative DNA Damage Promotes the Generation of Neoplastic Cells
24. Data from Autocrine Induction of Invasive and Metastatic Phenotypes by the MIF-CXCR4 Axis in Drug-Resistant Human Colon Cancer Cells
25. Data from PLA2R1 Mediates Tumor Suppression by Activating JAK2
26. Supplementary Methods, Figure Legends 1 from Autocrine Induction of Invasive and Metastatic Phenotypes by the MIF-CXCR4 Axis in Drug-Resistant Human Colon Cancer Cells
27. Supplementary Table 1 from Senescence-Associated Oxidative DNA Damage Promotes the Generation of Neoplastic Cells
28. Supplementary Table 2 from Senescence-Associated Oxidative DNA Damage Promotes the Generation of Neoplastic Cells
29. Data from Senescence-Associated Oxidative DNA Damage Promotes the Generation of Neoplastic Cells
30. Supplementary Table 1, Figures 1 - 8 from PLA2R1 Mediates Tumor Suppression by Activating JAK2
31. Flow Cytometry-based Method for Efficient Sorting of Senescent Cells
32. PEA3 transcription factors are downstream effectors of Met signaling involved in migration and invasiveness of Met-addicted tumor cells
33. The obesity-associated transcription factor ETV5 modulates circulating glucocorticoids
34. Regulation of DNA Methylation Patterns by CK2-Mediated Phosphorylation of Dnmt3a
35. ETV4 transcription factor and MMP13 metalloprotease are interplaying actors of breast tumorigenesis
36. PLA2R1 kills cancer cells by inducing mitochondrial stress
37. The PEA3 Group of ETS-related Transcription Factors : Role in Breast Cancer Metastasis
38. Anti-apoptotic Role of Caspase-cleaved GAB1 Adaptor Protein in Hepatocyte Growth Factor/Scatter Factor-MET Receptor Protein Signaling
39. Effects of competitive research training funding on the careers of medical doctors
40. Effect of Nasopharyngeal Carcinoma-Derived Exosomes on Human Regulatory T Cells
41. Purification of SUMO-1 modified IκBα and complex formation with NF-κB
42. Structure-Function Relationships of Multiple Rat Members of the 3β-Hydroxysteroid Dehydrogenase Family
43. Senescent Keratinocytes Die by Autophagic Programmed Cell Death
44. ERM transcription factor contains an inhibitory domain which functions in sumoylation-dependent manner
45. Regulation of ploidy and senescence by the AMPK‐related kinase NUAK1
46. Epstein–Barr virus infection induces an increase of T regulatory type 1 cells in Hodgkin lymphoma patients
47. The M‐type receptor PLA2R regulates senescence through the p53 pathway
48. Transcriptional Regulation of the Bovine Leukemia Virus Promoter by the Cyclic AMP-response Element Modulator τ Isoform
49. Myc represses transcription through recruitment of DNA methyltransferase corepressor
50. Inducible nitric oxide synthase is upregulated by IL-23/IL-17A axis in inflammatory bowel disease: A study in Algerian patients: 204
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