30 results on '"Paramio, Jesús M."'
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2. Modulation of tumor microenvironment by targeting histone acetylation in bladder cancer
3. Tackling tumor microenvironment through epigenetic tools to improve cancer immunotherapy
4. Figure S1 from IKKβ-Mediated Resistance to Skin Cancer Development Is Ink4a/Arf-Dependent
5. Supplementary Table 1 from IKKβ-Mediated Resistance to Skin Cancer Development Is Ink4a/Arf-Dependent
6. Supplementary Information from IKKβ-Mediated Resistance to Skin Cancer Development Is Ink4a/Arf-Dependent
7. Data from IKKβ-Mediated Resistance to Skin Cancer Development Is Ink4a/Arf-Dependent
8. Supplementary Methods and References from A Transposon-based Analysis Reveals RASA1 Is Involved in Triple-Negative Breast Cancer
9. Supplementary Tables S1-S7 from A Transposon-based Analysis Reveals RASA1 Is Involved in Triple-Negative Breast Cancer
10. Supplementary Data from BMP4 Induces M2 Macrophage Polarization and Favors Tumor Progression in Bladder Cancer
11. Data from A Transposon-based Analysis Reveals RASA1 Is Involved in Triple-Negative Breast Cancer
12. Supp Table S3 from In Vivo Disruption of an Rb–E2F–Ezh2 Signaling Loop Causes Bladder Cancer
13. Supplementary Figures 1-4 from Spontaneous Squamous Cell Carcinoma Induced by the Somatic Inactivation of Retinoblastoma and Trp53 Tumor Suppressors
14. Supplementary Legends 1-2 from Deregulated Activity of Akt in Epithelial Basal Cells Induces Spontaneous Tumors and Heightened Sensitivity to Skin Carcinogenesis
15. Data from Akt Activation Synergizes with Trp53 Loss in Oral Epithelium to Produce a Novel Mouse Model for Head and Neck Squamous Cell Carcinoma
16. Data from Spontaneous Squamous Cell Carcinoma Induced by the Somatic Inactivation of Retinoblastoma and Trp53 Tumor Suppressors
17. Supplementary Figure 1 from Deregulated Activity of Akt in Epithelial Basal Cells Induces Spontaneous Tumors and Heightened Sensitivity to Skin Carcinogenesis
18. Supplementary Figures 1-10 from Akt Activation Synergizes with Trp53 Loss in Oral Epithelium to Produce a Novel Mouse Model for Head and Neck Squamous Cell Carcinoma
19. Supplementary Information from In Vivo Disruption of an Rb–E2F–Ezh2 Signaling Loop Causes Bladder Cancer
20. Data from In Vivo Disruption of an Rb–E2F–Ezh2 Signaling Loop Causes Bladder Cancer
21. Supplementary Data - Gene List from Spontaneous Squamous Cell Carcinoma Induced by the Somatic Inactivation of Retinoblastoma and Trp53 Tumor Suppressors
22. Supplementary Figure 2 from Deregulated Activity of Akt in Epithelial Basal Cells Induces Spontaneous Tumors and Heightened Sensitivity to Skin Carcinogenesis
23. Supplementary Table 1 from Deregulated Activity of Akt in Epithelial Basal Cells Induces Spontaneous Tumors and Heightened Sensitivity to Skin Carcinogenesis
24. PARP inhibition promotes endothelial‐like traits in melanoma cells and modulates pericyte coverage dynamics during vasculogenic mimicry
25. BlaDimiR: A Urine-based miRNA Score for Accurate Bladder Cancer Diagnosis and Follow-up
26. Pten and p53 Loss in the Mouse Lung Causes Adenocarcinoma and Sarcomatoid Carcinoma
27. Analysis of Exosomal Cargo Provides Accurate Clinical, Histologic and Mutational Information in Non-Small Cell Lung Cancer
28. IKKα Induces Epithelial–Mesenchymal Changes in Mouse Skin Carcinoma Cells That Can Be Partially Reversed by Apigenin
29. Genomic Landscape of Vinflunine Response in Metastatic Urothelial Cancer
30. Toward Tumor Fight and Tumor Microenvironment Remodeling: PBA Induces Cell Cycle Arrest and Reduces Tumor Hybrid Cells’ Pluripotency in Bladder Cancer
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