33 results on '"Hansel, Donna E."'
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2. Data from A Phase II Basket Trial of Dual Anti–CTLA-4 and Anti–PD-1 Blockade in Rare Tumors (DART SWOG 1609) in Patients with Nonpancreatic Neuroendocrine Tumors
3. Supp Figure 2 from Nuclear CD24 Drives Tumor Growth and Is Predictive of Poor Patient Prognosis
4. Supplementary Tables from Androgen Receptor Regulates CD44 Expression in Bladder Cancer
5. Data from Nuclear CD24 Drives Tumor Growth and Is Predictive of Poor Patient Prognosis
6. Supplementary Information from Nuclear CD24 Drives Tumor Growth and Is Predictive of Poor Patient Prognosis
7. Supplementary Figure S1 from The Investigational Aurora Kinase A Inhibitor MLN8237 Induces Defects in Cell Viability and Cell-Cycle Progression in Malignant Bladder Cancer Cells In Vitro and In Vivo
8. Supplementary Figure S2 from The Investigational Aurora Kinase A Inhibitor MLN8237 Induces Defects in Cell Viability and Cell-Cycle Progression in Malignant Bladder Cancer Cells In Vitro and In Vivo
9. Supp Figure 3 from Nuclear CD24 Drives Tumor Growth and Is Predictive of Poor Patient Prognosis
10. Supp Figure 5 from Nuclear CD24 Drives Tumor Growth and Is Predictive of Poor Patient Prognosis
11. Supplementary Figure 5 from Androgen Receptor Regulates CD44 Expression in Bladder Cancer
12. Supplementary Information from Nuclear CD24 Drives Tumor Growth and Is Predictive of Poor Patient Prognosis
13. Supplementary Figure 6 from Androgen Receptor Regulates CD44 Expression in Bladder Cancer
14. Supplementary Figure Legends from The Investigational Aurora Kinase A Inhibitor MLN8237 Induces Defects in Cell Viability and Cell-Cycle Progression in Malignant Bladder Cancer Cells In Vitro and In Vivo
15. Supp Figure 1 from Nuclear CD24 Drives Tumor Growth and Is Predictive of Poor Patient Prognosis
16. Supp Figure 5 from Nuclear CD24 Drives Tumor Growth and Is Predictive of Poor Patient Prognosis
17. Data from Nuclear CD24 Drives Tumor Growth and Is Predictive of Poor Patient Prognosis
18. Supp Figure 1 from Nuclear CD24 Drives Tumor Growth and Is Predictive of Poor Patient Prognosis
19. Supp Figure 3 from Nuclear CD24 Drives Tumor Growth and Is Predictive of Poor Patient Prognosis
20. Supplementary Data from CD24 Offers a Therapeutic Target for Control of Bladder Cancer Metastasis Based on a Requirement for Lung Colonization
21. Data from CD24 Offers a Therapeutic Target for Control of Bladder Cancer Metastasis Based on a Requirement for Lung Colonization
22. Supplementary Data from CD24 Offers a Therapeutic Target for Control of Bladder Cancer Metastasis Based on a Requirement for Lung Colonization
23. Data from CD24 Offers a Therapeutic Target for Control of Bladder Cancer Metastasis Based on a Requirement for Lung Colonization
24. Androgen Receptor Regulates CD44 Expression in Bladder Cancer
25. Abstract IA04: Molecular alterations in variant morphology
26. A Phase II Basket Trial of Dual Anti–CTLA-4 and Anti–PD-1 Blockade in Rare Tumors (DART SWOG 1609) in Patients with Nonpancreatic Neuroendocrine Tumors
27. Nuclear CD24 Drives Tumor Growth and Is Predictive of Poor Patient Prognosis
28. Abstract 11: Arginine deprivation therapy using ADI-PEG20 as a novel therapeutic modality in the treatment of bladder cancer.
29. The Investigational Aurora Kinase A Inhibitor MLN8237 Induces Defects in Cell Viability and Cell-Cycle Progression in Malignant Bladder Cancer Cells In Vitro and In Vivo
30. Abstract 3652: Pegylated arginine deiminase (ADI-PEG20) as a potential therapeutic agent for rarer variants of bladder cancer that are deficient for argininosuccinate synthetase
31. CD24 Offers a Therapeutic Target for Control of Bladder Cancer Metastasis Based on a Requirement for Lung Colonization
32. Abstract 1810: PTEN association with mTOR pathway activation and outcomes in bladder cancer
33. Met Proto-Oncogene and Insulin-Like Growth Factor Binding Protein 3 Overexpression Correlates with Metastatic Ability in Well-Differentiated Pancreatic Endocrine Neoplasms
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