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1. Modulating voltage-gated sodium channels to enhance differentiation and sensitize glioblastoma cells to chemotherapy

2. Human glioblastoma-derived cell membrane nanovesicles: a novel, cell-specific strategy for boron neutron capture therapy of brain tumors

5. Chloride intracellular channel 1 activity is not required for glioblastoma development but its inhibition dictates glioma stem cell responsivity to novel biguanide derivatives

6. Ruta graveolens , but Not Rutin, Inhibits Survival, Migration, Invasion, and Vasculogenic Mimicry of Glioblastoma Cells.

10. Domestic Animal Models of Central Nervous System Tumors: Focus on Meningiomas.

12. Patient's dermal fibroblasts as disease markers for visceral myopathy

14. Stem-like signatures in human meningioma cells are under the control of CXCL11/CXCL12 chemokine activity

15. Abstract 4788: Oxidative stress promotes colorectal cancer aggressiveness through transmembrane chloride intracellular channel 1 (tmCLIC1) antioxidant activity

16. Figure S5 from Mutual Influence of ROS, pH, and CLIC1 Membrane Protein in the Regulation of G1–S Phase Progression in Human Glioblastoma Stem Cells

17. Data from Mutual Influence of ROS, pH, and CLIC1 Membrane Protein in the Regulation of G1–S Phase Progression in Human Glioblastoma Stem Cells

18. Supplementary Data from Overexpression of Stromal Cell–Derived Factor 1 and Its Receptor CXCR4 Induces Autocrine/Paracrine Cell Proliferation in Human Pituitary Adenomas

25. Metformin antiproliferative activity is exclusively mediated by the membrane functional expression of the Chloride Intracellular Channel 1 in glioblastoma stem cells

43. Abstract 903: Metformin antitumoral activity is exclusively mediated by the membrane functional expression of the Chloride Intracellular Channel 1 in glioblastoma stem cells

45. Additional file 1 of Chloride intracellular channel 1 activity is not required for glioblastoma development but its inhibition dictates glioma stem cell responsivity to novel biguanide derivatives

46. Autophagy

50. N6-Isopentenyladenosine Hinders the Vasculogenic Mimicry in Human Glioblastoma Cells through Src-120 Catenin Pathway Modulation and RhoA Activity Inhibition

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