154 results on '"Fernández-Piqueras, José"'
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2. Differential molecular response in mice and human thymocytes exposed to a combined-dose radiation regime
3. Downregulation of specific FBXW7 isoforms with differential effects in T-cell lymphoblastic lymphoma
4. The JAK3Q988P mutation reveals oncogenic potential and resistance to ruxolitinib
5. Transient exposure to miR‐203 enhances the differentiation capacity of established pluripotent stem cells
6. Comprehensive characterization of a novel, oncogenic and targetable SEPTIN6::ABL2 fusion in T-ALL
7. The use of PanDrugs to prioritize anticancer drug treatments in a case of T-ALL based on individual genomic data
8. Detection of novel fusion-transcripts by RNA-Seq in T-cell lymphoblastic lymphoma
9. SOCS3 deregulation contributes to aberrant activation of the JAK/STAT pathway in precursor T-cell neoplasms
10. Comprehensive characterization of a novel, oncogenic and targetable SEPTIN6::ABL2 fusion in T-ALL
11. The JAK3Q988P mutation reveals oncogenic potential and resistance to ruxolitinib.
12. Data from A Role for Endoglin as a Suppressor of Malignancy during Mouse Skin Carcinogenesis
13. Data from A Role for Stroma-Derived Annexin A1 as Mediator in the Control of Genetic Susceptibility to T-Cell Lymphoblastic Malignancies through Prostaglandin E2 Secretion
14. Supplementary Figure 1 Legend from A Role for the Fas/FasL System in Modulating Genetic Susceptibility to T-Cell Lymphoblastic Lymphomas
15. Supplementary Figure 3 from A Role for Stroma-Derived Annexin A1 as Mediator in the Control of Genetic Susceptibility to T-Cell Lymphoblastic Malignancies through Prostaglandin E2 Secretion
16. Supplementary Figure 1 from A Role for Stroma-Derived Annexin A1 as Mediator in the Control of Genetic Susceptibility to T-Cell Lymphoblastic Malignancies through Prostaglandin E2 Secretion
17. Data from A Role for the Fas/FasL System in Modulating Genetic Susceptibility to T-Cell Lymphoblastic Lymphomas
18. Supplementary Figure 2 from A Role for Stroma-Derived Annexin A1 as Mediator in the Control of Genetic Susceptibility to T-Cell Lymphoblastic Malignancies through Prostaglandin E2 Secretion
19. Supplementary Figure 1 from A Role for Endoglin as a Suppressor of Malignancy during Mouse Skin Carcinogenesis
20. Supplementary Table 1 from A Role for Stroma-Derived Annexin A1 as Mediator in the Control of Genetic Susceptibility to T-Cell Lymphoblastic Malignancies through Prostaglandin E2 Secretion
21. Supplementary Table 2 from A Role for Endoglin as a Suppressor of Malignancy during Mouse Skin Carcinogenesis
22. Supplementary Information, Legends 1-3 from A Role for Endoglin as a Suppressor of Malignancy during Mouse Skin Carcinogenesis
23. Supplementary Table 4 from A Role for Endoglin as a Suppressor of Malignancy during Mouse Skin Carcinogenesis
24. Supplementary Table 1 from A Role for Endoglin as a Suppressor of Malignancy during Mouse Skin Carcinogenesis
25. Supplementary Figure 2 from A Role for Endoglin as a Suppressor of Malignancy during Mouse Skin Carcinogenesis
26. Supplementary Table 3 from A Role for Endoglin as a Suppressor of Malignancy during Mouse Skin Carcinogenesis
27. Supplementary Figure Legends 1-3 from A Role for Stroma-Derived Annexin A1 as Mediator in the Control of Genetic Susceptibility to T-Cell Lymphoblastic Malignancies through Prostaglandin E2 Secretion
28. Supplementary Figure 3 from A Role for Endoglin as a Suppressor of Malignancy during Mouse Skin Carcinogenesis
29. Supplementary Figure 1 from A Role for the Fas/FasL System in Modulating Genetic Susceptibility to T-Cell Lymphoblastic Lymphomas
30. Supplementary Table 1 from A Role for the Fas/FasL System in Modulating Genetic Susceptibility to T-Cell Lymphoblastic Lymphomas
31. SOCS3 deregulation contributes to aberrant activation of the JAK/STAT pathway in precursor T‐cell neoplasms
32. A Dual Role for FADD in Human Precursor T-Cell Neoplasms
33. RNA-Seq reveals the existence of a CDKN1C-E2F1-TP53 axis that is altered in human T-cell lymphoblastic lymphomas
34. Role of Cannabinoid Receptor CB2 in HER2 Pro-oncogenic Signaling in Breast Cancer
35. Patterns of Differentially Expressed circRNAs in Human Thymocytes
36. More Insights on the Use of γ-Secretase Inhibitors in Cancer Treatment
37. Genetic Material Manipulation and Modification by Optical Trapping and Nanosurgery-A Perspective
38. Transient exposure to miR-203 expands the differentiation capacity of pluripotent stem cells
39. Genetic Material Manipulation and Modification by Optical Trapping and Nanosurgery-A Perspective
40. Transient exposure to miR-203 enhances the differentiation capacity of established pluripotent stem cells
41. Genetic Material Manipulation and Modification by Optical Trapping and Nanosurgery-A Perspective
42. A novel microRNA-based strategy to expand the differentiation potency of stem cells
43. FADD in Cancer: Mechanisms of Altered Expression and Function, and Clinical Implications
44. S194-P-FADD as a marker of aggressiveness and poor prognosis in human T-cell lymphoblastic lymphoma
45. S194-P-FADD as a marker of aggressiveness and poor prognosis in human T-cell lymphoblastic lymphoma
46. Exploiting the passenger ACO1-deficiency arising from 9p21 deletions to kill T-cell lymphoblastic neoplasia cells
47. FADD in cancer: Mechanisms of altered expression and function, and clinical implications
48. Detection of novel fusion-transcripts by RNA-Seq in T-cell lymphoblastic lymphoma
49. The use of PanDrugs to prioritize anticancer drug treatments in a case of T-ALL based on individual genomic data
50. More Insights on the Use of γ‐Secretase Inhibitors in Cancer Treatment.
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