47 results on '"Miyo, Masaaki"'
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2. Data from Targeting MUC1-C Inhibits TWIST1 Signaling in Triple-Negative Breast Cancer
3. Data from Targeting MUC1-C Inhibits TWIST1 Signaling in Triple-Negative Breast Cancer
4. Supplemental Figures S1-S13 and Tables S1-S3 from Targeting MUC1-C Inhibits TWIST1 Signaling in Triple-Negative Breast Cancer
5. Table S1 from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
6. Data from MUC1-C Integrates Chromatin Remodeling and PARP1 Activity in the DNA Damage Response of Triple-Negative Breast Cancer Cells
7. Figure S2 and Legend from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
8. Figure S2 and Legend from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
9. Figure S5 and Legend from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
10. The proteasome activities of LPACs and non-LPACs. from Cancer Stem-like Properties in Colorectal Cancer Cells with Low Proteasome Activity
11. Data from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
12. Data from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
13. Figure S1 and Legend from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
14. Figure S5 and Legend from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
15. Figure S3 and Legend from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
16. The list of universally elevated genes in LPACs of all cell lines using microarray analysis. from Cancer Stem-like Properties in Colorectal Cancer Cells with Low Proteasome Activity
17. Data from MUC1-C Activates the NuRD Complex to Drive Dedifferentiation of Triple-Negative Breast Cancer Cells
18. Analysis of LPACs and non-LPACs based on various stem cell markers. from Cancer Stem-like Properties in Colorectal Cancer Cells with Low Proteasome Activity
19. Supplementary Material from MUC1-C Activates the NuRD Complex to Drive Dedifferentiation of Triple-Negative Breast Cancer Cells
20. The confirmation of stable ZsGreen expression in CRC cell lines. from Cancer Stem-like Properties in Colorectal Cancer Cells with Low Proteasome Activity
21. The validation of over-expression of EID3 and down- regulation of EID3. from Cancer Stem-like Properties in Colorectal Cancer Cells with Low Proteasome Activity
22. Supplementary Figures from MUC1-C Integrates Chromatin Remodeling and PARP1 Activity in the DNA Damage Response of Triple-Negative Breast Cancer Cells
23. Table S2 from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
24. Figure S6 and Legend from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
25. Relationship between EID3 expression and clinicopathological factors in patients with colorectal cancer from Cancer Stem-like Properties in Colorectal Cancer Cells with Low Proteasome Activity
26. Figure S4 and Legend from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
27. Data from MUC1-C Integrates Chromatin Remodeling and PARP1 Activity in the DNA Damage Response of Triple-Negative Breast Cancer Cells
28. Table S2 from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
29. Figure S3 and Legend from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
30. Figure S4 and Legend from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
31. Figure S6 and Legend from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
32. Supplementary Material from MUC1-C Activates the NuRD Complex to Drive Dedifferentiation of Triple-Negative Breast Cancer Cells
33. Data from MUC1-C Activates the NuRD Complex to Drive Dedifferentiation of Triple-Negative Breast Cancer Cells
34. Relationship between EID3 expression and clinicopathological factors in patients with colorectal cancer from Cancer Stem-like Properties in Colorectal Cancer Cells with Low Proteasome Activity
35. Table S1 from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
36. LPACs were not detected transitioning from non-LPACs. from Cancer Stem-like Properties in Colorectal Cancer Cells with Low Proteasome Activity
37. Validation of EID3 expression in LPACs. from Cancer Stem-like Properties in Colorectal Cancer Cells with Low Proteasome Activity
38. Supplementary Figures from MUC1-C Integrates Chromatin Remodeling and PARP1 Activity in the DNA Damage Response of Triple-Negative Breast Cancer Cells
39. Figure S1 and Legend from MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
40. MUC1-C Activates the NuRD Complex to Drive Dedifferentiation of Triple-Negative Breast Cancer Cells
41. Targeting MUC1-C Inhibits TWIST1 Signaling in Triple-Negative Breast Cancer
42. MUC1-C Integrates Chromatin Remodeling and PARP1 Activity in the DNA Damage Response of Triple-Negative Breast Cancer Cells
43. MUC1-C Induces PD-L1 and Immune Evasion in Triple-Negative Breast Cancer
44. Cancer Stem-like Properties in Colorectal Cancer Cells with Low Proteasome Activity
45. Abstract 3960: Identification of osteosarcoma cancer stem cells using an imaging system for proteasome activity
46. Abstract 3883: Thyroid cancer cells with low proteasome activity have therapeutic resistance
47. Abstract 3028: Optical imaging of cancer stem-like cells in cervical cancer
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