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1. Meningioma transcriptomic landscape demonstrates novel subtypes with regional associated biology and patient outcome.

2. Phase separation of YAP-MAML2 differentially regulates the transcriptome

6. A paracrine circuit of IL-1[beta]/IL-1R1 between myeloid and tumor cells drives genotype-dependent glioblastoma progression

8. ERK signaling promotes resistance to TRK kinase inhibition in NTRK fusion-driven glioma mouse models

10. Meningioma transcriptomic landscape demonstrates novel subtypes with regional associated biology and patient outcome.

13. MODL-41. LOSS OF DISTAL CHROMOSOME 6Q AND ASSOCIATED PDE10A INDUCES AN AGGRESSIVE GLIOMA PHENOTYPE BY FACILITATING PRONEURAL TO MESENCHYMAL TRANSITION

14. PATH-49. COMPREHENSIVE RNA-SEQ ANALYSIS REVEALS NOVEL SUBTYPES OF MENINGIOMAS AND PREDICTS PATIENT OUTCOME.

17. Phase separation of YAP-MAML2 differentially regulates the transcriptome.

18. TRKing down drug resistance in NTRK fusion‐positive cancers†.

20. Glioma-derived IL-33 orchestrates an inflammatory brain tumor microenvironment that accelerates glioma progression

22. Haploinsufficiency of phosphodiesterase 10A activates PI3K/AKT signaling independent of PTEN to induce an aggressive glioma phenotype

25. MODL-36. EXPRESSION OF YAP1-MAML2 AND CONSTITUTIVELY ACTIVE YAP1 DRIVE THE FORMATION OF MENINGIOMA-LIKE TUMORS IN MICE THAT RESEMBLE NF2-MUTANT MENINGIOMAS

26. Oncogenic role of a developmentally regulated NTRK2 splice variant

29. A paracrine circuit of IL-1β/IL-1R1 between myeloid and tumor cells drives glioblastoma progression

30. Oncogenic role of a developmentally regulatedNTRK2splice variant

35. Additional file 1 of C11orf95-RELA fusion drives aberrant gene expression through the unique epigenetic regulation for ependymoma formation

39. Anti-PD-L1 antibody direct activation of macrophages contributes to a radiation-induced abscopal response in glioblastoma

41. Cooperation of oncolytic virotherapy with VEGF-neutralizing antibody treatment in IDH wildtype glioblastoma dependends on MMP9

42. Platelet-derived growth factor beta is a potent inflammatory driver in paediatric high-grade glioma

43. Comparison of tumor-associated YAP1 fusions identifies a recurrent set of functions critical for oncogenesis

44. Genetic driver mutations introduced in identical cell‐of‐origin in murine glioblastoma reveal distinct immune landscapes but similar response to checkpoint blockade

45. Multimodalsingle‐cellanalysis reveals distinct radioresistant stem‐like and progenitor cell populations in murine glioma

47. Anti–PD-L1 antibody direct activation of macrophages contributes to a radiation-induced abscopal response in glioblastoma

50. TMOD-30. CHARACTERIZATION OF AN ALTERNATIVELY SPLICED NTRK2 VARIANT IN GLIOMAS

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