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1. The patatin-like protein PlpD forms structurally dynamic homodimers in the Pseudomonas aeruginosa outer membrane

4. Probabilistic model checking of cancer metabolism

5. Cysteine is a limiting factor for glioma proliferation and survival

6. Metabolic biomarkers of radiotherapy response in plasma and tissue of an IDH1 mutant astrocytoma mouse model

7. IDH1 mutations induce organelle defects via dysregulated phospholipids

8. Metabolic plasticity of IDH1-mutant glioma cell lines is responsible for low sensitivity to glutaminase inhibition

9. Reversing Epigenetic Gene Silencing to Overcome Immune Evasion in CNS Malignancies

10. BCAbox Algorithm Expands Capabilities of Raman Microscope for Single Organelles Assessment

11. Order-disorder transitions govern kinetic cooperativity and allostery of monomeric human glucokinase.

13. Advances in measuring cancer cell metabolism with subcellular resolution

14. Supplemental Methods from Targeting Glycolysis through Inhibition of Lactate Dehydrogenase Impairs Tumor Growth in Preclinical Models of Ewing Sarcoma

15. Supplemental Figures 1-14 from Targeting Glycolysis through Inhibition of Lactate Dehydrogenase Impairs Tumor Growth in Preclinical Models of Ewing Sarcoma

16. Data from Targeting Glycolysis through Inhibition of Lactate Dehydrogenase Impairs Tumor Growth in Preclinical Models of Ewing Sarcoma

17. Supplemental Table 1 from Targeting Glycolysis through Inhibition of Lactate Dehydrogenase Impairs Tumor Growth in Preclinical Models of Ewing Sarcoma

18. Data from Novel Targeting of Transcription and Metabolism in Glioblastoma

19. IDH-mutated gliomas promote epileptogenesis through d-2-hydroxyglutarate-dependent mTOR hyperactivation

20. Single cell metabolism: current and future trends

21. Targeting the Sphingolipid Rheostat in Gliomas

22. Magnetic resonance spectroscopy for the study of cns malignancies

23. IDH1 mutations induce organelle defects via dysregulated phospholipids

24. CSIG-40. STEAROYL-COA DESATURASE 1 (SCD1) IS REQUIRED FOR WNT SIGNALING TO INDUCE AN APOPTOSIS IN IDH MUTANT GLIOMA

25. TMET-36. ACID CERAMIDASE INHIBITION EXPLOITS SPHINGOLIPID VULNERABILITIES IN IDH MUTANT GLIOMAS

26. Metabolic plasticity of IDH1-mutant glioma cell lines is responsible for low sensitivity to glutaminase inhibition

27. IDH mutation in glioma: molecular mechanisms and potential therapeutic targets

28. CBMS-5 STEAROYL-COA DESATURASE INHIBITOR INDUCES APOPTOSIS VIA ENHANCING LIPOLYSIS IN IDH MUTANT GLIOMA

29. PATH-45. APOLLO: RAMAN-BASED PATHOLOGY OF MALIGNANT GLIOMA

31. Cysteine is a limiting factor for glioma proliferation and survival

32. DDDR-09. TARGETED DYSREGULATION OF SPHINGOLIPID RHEOSTAT BALANCE IN IDH1MUT GLIOMAS TRIGGERS PRO-APOPTOTIC METABOLIC AND SIGNALING ACTIVITY

33. BIOM-60. APOLLO: RAMAN-BASED PATHOLOGY OF MALIGNANT GLIOMA

34. Cryo-EM structures reveal multiple stages of bacterial outer membrane protein folding

35. Reversing Epigenetic Gene Silencing to Overcome Immune Evasion in CNS Malignancies

36. Retinoid receptor turnover mediated by sumoylation, ubiquitination and the valosin-containing protein is disrupted in glioblastoma

37. Cysteine is a limiting factor for glioma proliferation and survival

38. Sphingolipid Pathway as a Source of Vulnerability in IDH1mut Glioma

39. Glutaminase-1 (GLS1) inhibition limits metastatic progression in osteosarcoma

40. Protein phosphatase 2A inhibition enhances radiation sensitivity and reduces tumor growth in chordoma

41. TAMI-53. CYSTEINE IS A LIMITING FACTOR FOR GLIOMA PROLIFERATION AND SURVIVAL

42. NCMP-07. IDH MUTANT GLIOMAS PROMOTE EPILEPTOGENESIS VIA D-2-HYDROXYGLUTARATE DEPENDENT MTOR HYPER-ACTIVATION

43. DDRE-19. SPHINGOSINE KINASE 1 AS A THERAPEUTIC TARGET FOR IDH1-R132H mut GLIOMA

44. TAMI-37. STEAROYL-COA DESATURASE 1 IS ESSENTIAL FOR THE GROWTH OF IDH MUTANT GLIOMA

45. Hypoxia in the glioblastoma microenvironment: shaping the phenotype of cancer stem-like cells

46. Metabolic reprogramming associated with aggressiveness occurs in the G-CIMP-high molecular subtypes of IDH1(mut) lower grade gliomas

47. Towards Single Organelle Lipidomics in Live Cells

48. Metabolic Plasticity of IDH1- Mutant Glioma Cell Lines Is Responsible for Low Sensitivity to Glutaminase Inhibition

49. Detection of Metabolic Changes Induced via Drug Treatments in Live Cancer Cells and Tissue Using Raman Imaging Microscopy

50. DDRE-16. CYSTEINE IS AN ESSENTIAL AMINO ACID IN GLIOMAS

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