33 results on '"Lin, Nengming"'
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2. Supplementary Figure 4 from Bortezomib Sensitizes Human Acute Myeloid Leukemia Cells to All-Trans-Retinoic Acid–Induced Differentiation by Modifying the RARα/STAT1 Axis
3. Supplementary Figure 3 from Bortezomib Sensitizes Human Acute Myeloid Leukemia Cells to All-Trans-Retinoic Acid–Induced Differentiation by Modifying the RARα/STAT1 Axis
4. Supplementary Figure 2 from Bortezomib Sensitizes Human Acute Myeloid Leukemia Cells to All-Trans-Retinoic Acid–Induced Differentiation by Modifying the RARα/STAT1 Axis
5. Supplementary Methods and Figure Legend from Bortezomib Sensitizes Human Acute Myeloid Leukemia Cells to All-Trans-Retinoic Acid–Induced Differentiation by Modifying the RARα/STAT1 Axis
6. Supplementary Figure 1 from Bortezomib Sensitizes Human Acute Myeloid Leukemia Cells to All-Trans-Retinoic Acid–Induced Differentiation by Modifying the RARα/STAT1 Axis
7. Supplementary Figure 3 from Bortezomib Sensitizes Human Acute Myeloid Leukemia Cells to All-Trans-Retinoic Acid–Induced Differentiation by Modifying the RARα/STAT1 Axis
8. Supplementary Figure 4 from Bortezomib Sensitizes Human Acute Myeloid Leukemia Cells to All-Trans-Retinoic Acid–Induced Differentiation by Modifying the RARα/STAT1 Axis
9. Table S1 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
10. Figure S1 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
11. Figure S7 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
12. Table S1 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
13. Figure S2 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
14. Figure S6 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
15. Figure S4 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
16. Figure S5 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
17. Figure S2 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
18. Figure S6 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
19. Figure S7 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
20. Support Information from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
21. Figure S3 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
22. Support Information from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
23. Figure S4 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
24. Data from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
25. Figure S1 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
26. Figure S8 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
27. Figure S5 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
28. Figure S3 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
29. Figure S8 from Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
30. Correction: Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
31. Hypoxia-Induced WSB1 Promotes the Metastatic Potential of Osteosarcoma Cells
32. Abstract 4692: ARL4C, a novel ovarian cancer-related gene, its down-regulated predicts poor survival in ovarian cancer.
33. Bortezomib Sensitizes Human Acute Myeloid Leukemia Cells to All-Trans-Retinoic Acid–Induced Differentiation by Modifying the RARα/STAT1 Axis
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