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4. Targeting GBM with an Oncolytic Picornavirus SVV-001 alone and in combination with fractionated Radiation in a Novel Panel of Orthotopic PDX models

9. Epigenetic Alterations of Repeated Relapses in Patient-matched Childhood Ependymomas

10. Publisher Correction: Epigenetic alterations of repeated relapses in patient-matched childhood ependymomas

12. Direct Implantation of Patient Brain Tumor Cells into Matching Locations in Mouse Brains for Patient-Derived Orthotopic Xenograft Model Development

18. EXTH-56. TARGETING GBM WITH AN ONCOLYTIC PICORNAVIRUS SVV-001 ALONE AND IN COMBINATION WITH FRACTIONATED RADIATION IN A NOVEL PANEL OF ORTHOTOPIC PDX MODELS

19. EPCO-39. ADAPTIVE CONVERGENCE OF METHYLOMES REVEALS EPIGENETIC DRIVERS AND BOOSTERS OF REPEATED RELAPSES IN PATIENT-MATCHED CHILDHOOD EPENDYMOMAS AND IDENTIFIES TARGETS FOR ANTI-RECURRENCE THERAPIES

22. EPEN-02. Adaptive Convergence of Methylomes Reveals Epigenetic Drivers and Boosters of Repeated Relapses in Patient-matched Childhood Ependymomas and Identifies Targets for Anti-Recurrence Therapies

23. MEDB-08. Inhibition of different mitotic targets demonstrated distinct DNA damage and cell death response in p53-mutant medulloblastoma

24. Synergistic anti-tumor efficacy of mutant isocitrate dehydrogenase 1 inhibitor SYC-435 with standard therapy in patient-derived xenograft mouse models of glioma

25. Additional file 1 of Etomoxir, a carnitine palmitoyltransferase 1 inhibitor, combined with temozolomide reduces stemness and invasiveness in patient-derived glioblastoma tumorspheres

26. Additional file 2 of Etomoxir, a carnitine palmitoyltransferase 1 inhibitor, combined with temozolomide reduces stemness and invasiveness in patient-derived glioblastoma tumorspheres

27. Therapeutic effects of etomoxir in combination with temozolomide against human glioblastoma tumorspheres

31. A lignan from Alnus japonica inhibits glioblastoma tumorspheres by suppression of FOXM1

33. Spatial Dissection of Invasive Front from Tumor Mass Enables Discovery of Novel microRNA Drivers of Glioblastoma Invasion

34. Adaptive Convergence of Methylomes Reveals Epigenetic Drivers and Boosters of Repeated Relapses in Patient-matched Childhood Ependymomas and Identifies Targets for Anti-Recurrence Therapies

37. EMBR-23. KIF11 DEPENDENCY ON P53 MUTATIONAL STATUS IN MEDULLOBLASTOMA

40. Corrigendum to “Impact of SCID mouse gender on tumorigenicity, xenograft growth and drug-response in a large panel of orthotopic PDX models of pediatric brain tumors” [Cancer Lett. 493 (2020) 197–206]

41. Additional file 14 of Co-expression of cancer driver genes: IDH-wildtype glioblastoma-derived tumorspheres

42. Additional file 4 of Co-expression of cancer driver genes: IDH-wildtype glioblastoma-derived tumorspheres

44. Additional file 6 of Co-expression of cancer driver genes: IDH-wildtype glioblastoma-derived tumorspheres

45. Additional file 8 of Co-expression of cancer driver genes: IDH-wildtype glioblastoma-derived tumorspheres

46. Additional file 5 of Co-expression of cancer driver genes: IDH-wildtype glioblastoma-derived tumorspheres

47. Additional file 9 of Co-expression of cancer driver genes: IDH-wildtype glioblastoma-derived tumorspheres

48. Additional file 2 of Co-expression of cancer driver genes: IDH-wildtype glioblastoma-derived tumorspheres

49. Additional file 3 of Co-expression of cancer driver genes: IDH-wildtype glioblastoma-derived tumorspheres

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