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3. CBF1 is clinically prognostic and serves as a target to block cellular invasion and chemoresistance of EMT-like glioblastoma cells

6. [Noise in animal housing--a review with special reference to pig housing]

9. Methodical integration of assembly specific influences concerning high-voltage components into the virtual validation process.

15. Tacedinaline (CI-994), a class I HDAC inhibitor, targets intrinsic tumor growth and leptomeningeal dissemination in MYC-driven medulloblastoma while making them susceptible to anti-CD47-induced macrophage phagocytosis via NF-kB-TGM2 driven tumor inflammation.

16. Grace Notes: feasibility of a manualized intervention to advance spiritual well-being for clients with acquired brain injury.

17. The HHIP-AS1 lncRNA promotes tumorigenicity through stabilization of dynein complex 1 in human SHH-driven tumors.

18. The long non-coding RNA HOTAIRM1 promotes tumor aggressiveness and radiotherapy resistance in glioblastoma.

19. A Cell-Based MAPK Reporter Assay Reveals Synergistic MAPK Pathway Activity Suppression by MAPK Inhibitor Combination in BRAF -Driven Pediatric Low-Grade Glioma Cells.

20. N-Myc-induced metabolic rewiring creates novel therapeutic vulnerabilities in neuroblastoma.

21. Design, synthesis and biological evaluation of β-peptoid-capped HDAC inhibitors with anti-neuroblastoma and anti-glioblastoma activity.

22. Targeting HSP90 dimerization via the C terminus is effective in imatinib-resistant CML and lacks the heat shock response.

23. Alkoxyurea-Based Histone Deacetylase Inhibitors Increase Cisplatin Potency in Chemoresistant Cancer Cell Lines.

24. Establishment and application of a novel patient-derived KIAA1549:BRAF-driven pediatric pilocytic astrocytoma model for preclinical drug testing.

25. Design, synthesis and 3D-QSAR studies of novel 1,4-dihydropyridines as TGFβ/Smad inhibitors.

26. Effects of postretrieval-extinction learning on return of contextually controlled cued fear.

27. Structure and function of the molecular chaperone Hsp104 from yeast.

31. The LCADP classification of clinical lab data processing--an update.

32. The current status of laboratory data processing.

33. What pathologists should know and be able to do in laboratory data processing and computers: peripheral devices and storages.

35. What every pathologist should know and be able to do in laboratory data processing and computers: systems analysis and planning.

36. A definition and classification of clinical laboratory data processing.

37. So a laboratory computer system sounds like a good idea?

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