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25 results on '"Shengping Yu"'

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1. A Novel Prognostic Signature Based on Glioma Essential Ferroptosis-Related Genes Predicts Clinical Outcomes and Indicates Treatment in Glioma

2. Calcium-Related Gene Signatures May Predict Prognosis and Level of Immunosuppression in Gliomas

3. IKBKE, a prognostic factor preferentially expressed in mesenchymal glioblastoma, modulates tumoral immunosuppression through the STAT3/PD‐L1 pathway

4. Ongoing evolution of response assessment in glioma: Where do we stand?

5. Effect of temozolomide and methylprednisolone on the radiosensitivity in radiotherapy of human brain glioma cells

6. Transcription Factor Signatures May Predict the Prognosis and Status of the Immune Microenvironment of Primary Lower-Grade Gliomas

7. ACT001 reduces the expression of PD-L1 by inhibiting the phosphorylation of STAT3 in glioblastoma

8. Molecular and clinical characterization of Galectin‐9 in glioma through 1,027 samples

9. TMEM158 promotes the proliferation and migration of glioma cells via STAT3 signaling in glioblastomas

10. MXRA5 Is a Novel Immune-Related Biomarker That Predicts Poor Prognosis in Glioma

11. IKBKE, a prognostic factor preferentially expressed in mesenchymal glioblastoma, modulates tumoral immunosuppression through the STAT3/PD‐L1 pathway

12. Jagged1 is Clinically Prognostic and Promotes Invasion of Glioma-Initiating Cells by Activating NF-κB(p65) Signaling

13. NKCC1 promotes EMT‐like process in GBM via RhoA and Rac1 signaling pathways

14. Ongoing evolution of response assessment in glioma: Where do we stand?

15. Three-dimensional hydrogel is suitable for targeted investigation of amoeboid migration of glioma cells

16. The role of miR-451 in the switching between proliferation and migration in malignant glioma cells: AMPK signaling, mTOR modulation and Rac1 activation required

17. Actin cytoskeleton regulator Arp2/3 complex is required for DLL1 activating Notch1 signaling to maintain the stem cell phenotype of glioma initiating cells

18. Notch1 signaling pathway promotes invasion, self-renewal and growth of glioma initiating cells via modulating chemokine system CXCL12/CXCR4

19. Arg kinase mediates CXCL12/CXCR4-induced invadopodia formation and invasion of glioma cells

20. Autophagy suppresses self-renewal ability and tumorigenicity of glioma-initiating cells and promotes Notch1 degradation

21. Invasion and Anti-Invasion Research of Glioma Cells in An Improved Model of Organotypic Brain Slice Culture

22. Notch1 is a prognostic factor that is distinctly activated in the classical and proneural subtype of glioblastoma and that promotes glioma cell survival via the NF-κB(p65) pathway

23. Expression of the Arp2/3 complex in human gliomas and its role in the migration and invasion of glioma cells

24. Expression and Distribution Characteristics of Human Ortholog of Mammalian Enabled (hMena) in Glioma

25. Store-operated Ca2+ entry regulates glioma cell migration and invasion via modulation of Pyk2 phosphorylation

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