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2. Proteoglycans in Glioma Stem Cells

9. Data from ADAMDEC1 Maintains a Growth Factor Signaling Loop in Cancer Stem Cells

10. Figure S6 from ADAMDEC1 Maintains a Growth Factor Signaling Loop in Cancer Stem Cells

11. Table S1 from ADAMDEC1 Maintains a Growth Factor Signaling Loop in Cancer Stem Cells

14. HECTD1 is both a positive regulator and substrate of caspase-3 activity during apoptotic cell death

15. Zeb1 modulates hematopoietic stem cell fates required for suppressing acute myeloid leukemia

24. STEM-07. THE ATYPICAL METALLOPROTEINASE ADAMDEC1 MAINTAINS A NOVEL FGF MEDIATED SIGNALLING NETWORK IN GLIOBLASTOMA CANCER STEM CELLS

25. ADAMDEC1 Maintains a Growth Factor Signaling Loop in Cancer Stem Cells

26. ADAMDEC1 Maintains a Growth Factor Signaling Loop in Cancer Stem Cells

28. The metalloproteinase ADAMDEC1 maintains a novel growth factor signalling loop in glioblastoma cancer stem cells

30. ADAMDEC1 maintains a novel growth factor signaling loop in cancer stem cells

32. Serglycin as a potential biomarker for glioma : association of serglycin expression, extent of mast cell recruitment and glioblastoma progression

33. Infiltrative and drug‐resistant slow‐cycling cells support metabolic heterogeneity in glioblastoma

34. STEM-09. TREATMENT-RESISTANT SLOW-CYCLING CELLS SUPPORT METABOLIC HETEROGENEITY AND ADAPTABILITY IN GLIOBLASTOMA

35. ADAMDEC1 and FGF2/FGFR1 signaling constitute a positive feedback loop to maintain GBM cancer stem cells.

38. Isolating and Culturing of Precursor Cells from the Adult Human Brain.

39. Serglycin as a potential biomarker for glioma: association of serglycin expression, extent of mast cell recruitment and glioblastoma progression.

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