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Keyword [Glioblastoma]
Result: 21 - 40 | Page: 2 of 10
21. Apoptosis-inducing Therapy For Glioblastoma And The Underlying Molecular Mechanism
22. Study On Molecular Mechanism Of Resistance To TRAIL-induced Apoptosis In Glioblastoma Cells And Glioblastoma Stem Cells
23. Single Minded 2-s(SIM2-s) Gene Is Expressed In Human GBM Cells And Involved In GBM Invasion
24. Rho-kinase Inhibitor, Fasudil, Suppresses Glioblastoma Cell Line Progression In Vitro And In Vivo
25. IL-6 Augments The Invasiveness Of Human Glioblastoma Multiforme Cells Via Up-regulation Of MMP-2 And Fascin-1
26. Antitumor Treatment Efficiency By Targeting Epidermal Growth Factor Receptor And Vascular Endothelial Growth Factor Receptor-2 In An Orthotopic Human Glioblastoma Model
27. Using Bioinformatics Method, Impact Of Id2 On Chemosensitivity In Human Glioblastoma
28. Study On The Role For Autophagy-related Gene/Beclin 1 In The Apoptosis Of Malignant Glioma Cells
29. Metabolic Patterns, Bioactive Form And Major Molecular Target Of Resveratrol In Human Primary Brain Tumors: Relevance With Anticancer Effacacy
30. Design And Targeted Delivery Of The Specific Peptide Inhibitors Of P53-MDM2
31. Suppression Of ABC Transporters Enhancing The Inhibitory Effect Of Imatinib On The Rat C6 Glioma Cells Proliferation
32. The Radiosensitization Effects Of γ-Secretase Inhibitor-Ⅰ On Glioblastoma Cells
33. Expression Of Ativin A/Follistatin In Glioblastoma And The Effect On U87MG In Vitro
34. A Conditional Replication-competent Adenovirus Mediated By Cox-2 Promoter To Target The Brain Glioblastoma
35. The Culture Of Glioblastoma-Derived Stem Cells And The Studies On The Mechanism Of TRAIL Resistance
36. Expression And Function Of MDM4 In Glioblastoma Of Brain
37. Expression Of Med19 In Astrocytic Tumors And Role Of Altered Med19 On The Oncogenic Behavior Of Malignant Astrocytomas
38. Effects Of IL-6 And Hypoxia On Glioblastoma Invasion And Migration And The Mechanical Study
39. Experimental Therapy Of Human Glioblastoma Via Targeting 14-3-3zeta
40. Induction Of Apoptosis And Sensitization To Temozolomide By Resveratrol In Glioblastoma And The Underlying Molecular Mechanisms
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