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10. Supplementary Figure S5 from Global Increase of p16INK4a in APC-Deficient Mouse Liver Drives Clonal Growth of p16INK4a-Negative Tumors

11. Supplementary Table S3 from Global Increase of p16INK4a in APC-Deficient Mouse Liver Drives Clonal Growth of p16INK4a-Negative Tumors

12. Supplementary Figure Legends S1-S5 from Global Increase of p16INK4a in APC-Deficient Mouse Liver Drives Clonal Growth of p16INK4a-Negative Tumors

13. Data from Global Increase of p16INK4a in APC-Deficient Mouse Liver Drives Clonal Growth of p16INK4a-Negative Tumors

15. Inhibition der Protein Tyrosin Phosphatase PTP1B mit dem small-molecule-Inhibitor Claramine verhindert das EGF-stimulierte Wachstum von Glioblastomzellen

16. De novo variants in ATP2B1 lead to neurodevelopmental delay

18. Viability of Glioblastoma Cells and Fibroblasts in the Presence of Imidazole-Containing Compounds

22. Dynamic Network Reconstruction from Gene Expression Data Describing the Effect of LiCl Stimulation on Hepatocytes

23. RNA sequencing of glioblastoma tissue slice cultures reveals the effects of treatment at the transcriptional level

25. Deep sequencing and automated histochemistry of human tissue slice cultures improve their usability as preclinical model for cancer research

28. Surfactant protein C, a modulator of paravascular brain waste clearance, is associated with perineuronal nets and shows age-dependent changes of brain content and characteristic deposits in wildtype and 3xTg mice

34. Erythrocytes Prevent Degradation of Carnosine by Human Serum Carnosinase

36. The expression of prolactin and its cathepsin D-mediated cleavage in the bovine corpus luteum vary with the estrous cycle

41. Antifibrotic Effects of Amyloid-Beta and Its Loss in Cirrhotic Liver

43. RNA sequencing of glioblastoma tissue slice cultures reveals the effects of treatment at the transcriptional level.

44. Non‐enzymatic reaction of carnosine and glyceraldehyde‐3‐phosphate accompanies metabolic changes of the pentose phosphate pathway

45. Carnosine steigert die Effektivität der Behandlungvon primären Glioblastom-Zellkulturen mitTemozolomid und Bestrahlung

49. The anti-neoplastic effect of carnosine on glioblastoma cells is accompanied by enhanced promoter acetylation of the pyruvate dehydrogenase kinase 4 gene

50. Carnosine may improve the efficiency of standard treatment of glioblastoma with temozolomide and irradiation

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