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2. Extracellular vesicles produced by irradiated endothelial or Glioblastoma stem cells promote tumor growth and vascularization modulating tumor microenvironment

3. Author Correction: Type I IFNs promote cancer cell stemness by triggering the epigenetic regulator KDM1B

4. Type I IFNs promote cancer cell stemness by triggering the epigenetic regulator KDM1B

5. An organoid model of colorectal circulating tumor cells with stem cell features, hybrid EMT state and distinctive therapy response profile

7. A pre-existing population of ZEB2+ quiescent cells with stemness and mesenchymal features dictate chemoresistance in colorectal cancer

8. Supplementary Materials and Methods from Pyrvinium Pamoate Induces Death of Triple-Negative Breast Cancer Stem–Like Cells and Reduces Metastases through Effects on Lipid Anabolism

9. Supplementary Data from Pyrvinium Pamoate Induces Death of Triple-Negative Breast Cancer Stem–Like Cells and Reduces Metastases through Effects on Lipid Anabolism

10. Data from Pyrvinium Pamoate Induces Death of Triple-Negative Breast Cancer Stem–Like Cells and Reduces Metastases through Effects on Lipid Anabolism

11. Supplementary Tables and Figures from Pyrvinium Pamoate Induces Death of Triple-Negative Breast Cancer Stem–Like Cells and Reduces Metastases through Effects on Lipid Anabolism

12. A new bioavailable fenretinide formulation with antiproliferative, antimetabolic, and cytotoxic effects on solid tumors

13. MiR-378a-3p Acts as a Tumor Suppressor in Colorectal Cancer Stem-Like Cells and Affects the Expression of MALAT1 and NEAT1 lncRNAs

15. Additional file 1 of An organoid model of colorectal circulating tumor cells with stem cell features, hybrid EMT state and distinctive therapy response profile

16. The Ultrastructural Analysis of Human Colorectal Cancer Stem Cell-Derived Spheroids and Their Mouse Xenograft Shows That the Same Cells Types Have Different Ratios

17. Additional file 1 of Elesclomol-induced increase of mitochondrial reactive oxygen species impairs glioblastoma stem-like cell survival and tumor growth

19. Type I IFNs promote cancer cell stemness by triggering the epigenetic regulator KDM1B

20. Isolation and preliminary characterization of a human ‘phage display’-derived antibody against neural adhesion molecule-1 antigen interfering with fibroblast growth factor receptor-1 binding

21. MOESM11 of A pre-existing population of ZEB2+ quiescent cells with stemness and mesenchymal features dictate chemoresistance in colorectal cancer

22. Deregulated expression of the imprinted DLK1-DIO3 region in Glioblastoma Stem-like Cells: tumor suppressor role of lncRNA MEG3

25. Pyrvinium Pamoate Induces Death of Triple-Negative Breast Cancer Stem–Like Cells and Reduces Metastases through Effects on Lipid Anabolism

26. Deregulated expression of the imprinted DLK1-DIO3 region in glioblastoma stemlike cells: tumor suppressor role of lncRNA MEG3

27. Mir-370-3p Impairs Glioblastoma Stem-Like Cell Malignancy Regulating a Complex Interplay between HMGA2/HIF1A and the Oncogenic Long Non-Coding RNA (lncRNA) NEAT1

32. Joint action of miR‐126 and MAPK/PI3K inhibitors against metastatic melanoma

33. Two-Step Coimmunoprecipitation (TIP) enables efficient and highly selective isolation of native protein complexes

36. Integrin α7 Is a Functional Marker and Potential Therapeutic Target in Glioblastoma

37. Integrin α7 Is a Functional Marker and Potential Therapeutic Target in Glioblastoma

38. Cancer stem cell-based models of colorectal cancer reveal molecular determinants of therapy resistance

40. Cancer Stem Cell-Based Models of Colorectal Cancer Reveal Molecular Determinants of Therapy Resistance

42. Transferrin receptor 2 is frequently and highly expressed in glioblastomas.

43. Transferrin receptor 2 is frequently and highly expressed in glioblastomas

45. Identity and ranking of colonic mesenchymal stromal cells

46. Transferrin Receptor 2 Is Frequently and Highly Expressed in Glioblastomas

47. Saposin B binds and transfers phospholipids

48. Brain Invasion along Perivascular Spaces by Glioma Cells: Relationship with Blood–Brain Barrier.

49. Transcriptional silencing of the ETS1 oncogene contributes to human granulocytic differentiation.

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