648 results on '"Jeremy N Rich"'
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2. SATB2 drives glioblastoma growth by recruiting CBP to promote FOXM1 expression in glioma stem cells
3. Tumour-associated macrophages secrete pleiotrophin to promote PTPRZ1 signalling in glioblastoma stem cells for tumour growth
4. Transferrin receptor-1 and ferritin heavy and light chains in astrocytic brain tumors: Expression and prognostic value.
5. Lgr5 Marks Post-Mitotic, Lineage Restricted Cerebellar Granule Neurons during Postnatal Development.
6. Cadherin-11 regulates motility in normal cortical neural precursors and glioblastoma.
7. Multiplex flow cytometry barcoding and antibody arrays identify surface antigen profiles of primary and metastatic colon cancer cell lines.
8. Lyn facilitates glioblastoma cell survival under conditions of nutrient deprivation by promoting autophagy.
9. Direct in vivo evidence for tumor propagation by glioblastoma cancer stem cells.
10. Targeting A20 decreases glioma stem cell survival and tumor growth.
11. c-Myc is required for maintenance of glioma cancer stem cells.
12. Lysine catabolism reprograms tumour immunity through histone crotonylation
13. A neurodevelopmental epigenetic programme mediated by SMARCD3–DAB1–Reelin signalling is hijacked to promote medulloblastoma metastasis
14. WDR5 represents a therapeutically exploitable target for cancer stem cells in glioblastoma
15. Targeting Microglial Metabolic Rewiring Synergizes with Immune-Checkpoint Blockade Therapy for Glioblastoma
16. Failure of human rhombic lip differentiation underlies medulloblastoma formation
17. β2-Microglobulin Maintains Glioblastoma Stem Cells and Induces M2-like Polarization of Tumor-Associated Macrophages
18. Brain cancer stem cells: resilience through adaptive plasticity and hierarchical heterogeneity
19. Human plasma-like medium facilitates metabolic tracing and enables upregulation of immune signaling pathways in glioblastoma explants
20. Supplemental Figure S4 from Targeting Microglial Metabolic Rewiring Synergizes with Immune-Checkpoint Blockade Therapy for Glioblastoma
21. Supplementary Figures and Legends from Transcription Elongation Machinery Is a Druggable Dependency and Potentiates Immunotherapy in Glioblastoma Stem Cells
22. Data from Transcription Elongation Machinery Is a Druggable Dependency and Potentiates Immunotherapy in Glioblastoma Stem Cells
23. Data from Targeting Microglial Metabolic Rewiring Synergizes with Immune-Checkpoint Blockade Therapy for Glioblastoma
24. Table S3 from Transcription Elongation Machinery Is a Druggable Dependency and Potentiates Immunotherapy in Glioblastoma Stem Cells
25. Table S2 from Targeting Microglial Metabolic Rewiring Synergizes with Immune-Checkpoint Blockade Therapy for Glioblastoma
26. Supplementary Data from Type I Interferon Regulates a Coordinated Gene Network to Enhance Cytotoxic T Cell–Mediated Tumor Killing
27. Data from Glioma Stem Cell–Specific Superenhancer Promotes Polyunsaturated Fatty-Acid Synthesis to Support EGFR Signaling
28. Data from CRISPR Screening of CAR T Cells and Cancer Stem Cells Reveals Critical Dependencies for Cell-Based Therapies
29. Supplementary figures and legends from Targeting Glioblastoma Stem Cells through Disruption of the Circadian Clock
30. Data from Type I Interferon Regulates a Coordinated Gene Network to Enhance Cytotoxic T Cell–Mediated Tumor Killing
31. Supplementary Table 1 from CRISPR Screening of CAR T Cells and Cancer Stem Cells Reveals Critical Dependencies for Cell-Based Therapies
32. Supplementary Data 1 from The Meningioma Enhancer Landscape Delineates Novel Subgroups and Drives Druggable Dependencies
33. Supplementary Information from The Meningioma Enhancer Landscape Delineates Novel Subgroups and Drives Druggable Dependencies
34. Supplementary Tables from Type I Interferon Regulates a Coordinated Gene Network to Enhance Cytotoxic T Cell–Mediated Tumor Killing
35. Supplementary methods from Targeting Glioblastoma Stem Cells through Disruption of the Circadian Clock
36. Supplementary Table 2 from The RNA m6A Reader YTHDF2 Maintains Oncogene Expression and Is a Targetable Dependency in Glioblastoma Stem Cells
37. Supplementary Methods, Figures 1 - 11 from Chromosomal Instability Affects the Tumorigenicity of Glioblastoma Tumor-Initiating Cells
38. Supplementary Table 3 from The RNA m6A Reader YTHDF2 Maintains Oncogene Expression and Is a Targetable Dependency in Glioblastoma Stem Cells
39. Supplementary Data from CRISPR Screening of CAR T Cells and Cancer Stem Cells Reveals Critical Dependencies for Cell-Based Therapies
40. Data from Targeting Glioblastoma Stem Cells through Disruption of the Circadian Clock
41. Supplementary reagents from Targeting Glioblastoma Stem Cells through Disruption of the Circadian Clock
42. Data from The RNA m6A Reader YTHDF2 Maintains Oncogene Expression and Is a Targetable Dependency in Glioblastoma Stem Cells
43. Supplementary Methods 2 from Glioma Stem Cell–Specific Superenhancer Promotes Polyunsaturated Fatty-Acid Synthesis to Support EGFR Signaling
44. Supplementary Data from The RNA m6A Reader YTHDF2 Maintains Oncogene Expression and Is a Targetable Dependency in Glioblastoma Stem Cells
45. Data from The Meningioma Enhancer Landscape Delineates Novel Subgroups and Drives Druggable Dependencies
46. Supplementary Table 1 from The RNA m6A Reader YTHDF2 Maintains Oncogene Expression and Is a Targetable Dependency in Glioblastoma Stem Cells
47. Related Article from Molecular Targeting of Neural Cancer Stem Cells: TTAGGG, You're It!
48. Supplementary Figure S1 from Pharmacological Targeting of the Histone Chaperone Complex FACT Preferentially Eliminates Glioblastoma Stem Cells and Prolongs Survival in Preclinical Models
49. Figure S3 from A Three-Dimensional Organoid Culture System Derived from Human Glioblastomas Recapitulates the Hypoxic Gradients and Cancer Stem Cell Heterogeneity of Tumors Found In Vivo
50. Supplemental Materials & Methods from Pharmacological Targeting of the Histone Chaperone Complex FACT Preferentially Eliminates Glioblastoma Stem Cells and Prolongs Survival in Preclinical Models
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