| Literature DB >> 26307681 |
Veerakumar Balasubramaniyan1,2,3, Brian Vaillant1,2, Shuzhen Wang1,2, Joy Gumin4,2, M Elena Butalid5, Ke Sai1,2, Farah Mukheef5, Se Hoon Kim5,2, H W G M Boddeke3, Frederick Lang4,2, Kenneth Aldape6, Erik P Sulman2,7, Krishna P Bhat5,2, Howard Colman1,2,8.
Abstract
Differentiation has been proposed as a therapeutic strategy for glioblastoma (GBM) in part due to observations of stem-like cells in GBM that have been shown to undergo terminal differentiation in response to growth factor withdrawal and BMP activation. However, the effects of long term exposure to serum culture conditions on glioma sphere cultures/glioma stem-like cells (GSCs) have not been examined. Here we show that GSCs retained both neurosphere formation and tumor initiation abilities after short or long term serum exposure. Under these conditions, GSCs expressed both neural lineage and stem cell markers, highlighting the aberrant pseudo-differentiation state. GSCs maintained under adherent serum cultured conditions continued to proliferate and initiate tumor formation with efficiencies similar to GSCs maintained under proliferating (neurosphere) conditions. Proneural (PN) GSCs under serum exposure showed an induction of mesenchymal (MES) gene expression signatures. Our data indicate that exposure to serum containing media result in aberrant differentiation (e.g. toward MES lineage) and activation of alternative oncogenic pathways in GSCs.Entities:
Keywords: glioblastoma; glioma stem-like cells; mesenchymal; serum differentiation; tumorigenicity
Mesh:
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Year: 2015 PMID: 26307681 PMCID: PMC4741584 DOI: 10.18632/oncotarget.5219
Source DB: PubMed Journal: Oncotarget ISSN: 1949-2553
Figure 1In vitro evaluation of stem cell like-characteristics of human GSCs
A. Metagene plots of PN (green) versus MES (red) GSCs in comparison to human normal NSCs and MSCs. B. Bright field microscopic images of neurospheres of GSCs 11, 23, 2, and 20. Scale bar = 50μm. C. Undifferentiated GSC neurospheres stained for NSC marker nestin. Scale bar = 50μm. D. Immunofluorescent analyses of GSCs cultured in media containing retinoic acid or serum. Upper panel shows co-staining for astrocyte marker GFAP (red) and NSC marker nestin (green). Lower panel shows staining for neuronal specific β-III tubulin (green) and astrocytic marker GFAP (red). Scale bar = 100μm. E. Western blot analysis of neural stem cell and lineage markers in PN GSCs cultured in PM, basic media that lacks growth factors, RA, 2% serumor 10% serum. β-actin was used as a loading control.
Figure 2A. Brightfield images of GSC11 showing reformation of neurospheres when culturedin PM after 10 days of differentiation in RA, 2% serum or 10% serum. B. Neurosphere formation efficiency after 13 days differentiation of GSC11and 23 under various differentiation conditions. Long term differentiation in serum was designated as S-45 (cultured for 45-days of10% serum) or S-60 (60 days in 10% serum. After various differentiationparadigms, cells were plated in triplicate into 96-well plates at 10 cells/well. Bar graphs indicate average of three independent experimentsand error bars represent standard deviation of the mean. A two tailed t-test was performed to test for statistical significance. Comparison was made for all differentiation conditions against neurosphere number in PM C. Kaplan Meier curves show the survival of mice implanted with GSC11 or 23 after culturing in PM, RA or 10% serum. n = 4 mice per group.
Figure 3A. Metagene plots of GSCs cultured in PM or 10% FBS for 60 days (S). B. GSEA analysis of genes induced after differentiation in 10% FBS for 60 days versus queried gene lists. The normalized enrichment scores (NES) and p values are shown below each plot. C. Western blotting of GSC23 cultured in PM or S. D. Bar graphs showing percent CD44 expression in GSCs cultured in PM or S as determined by flow cytometry. Error bars indicate standard deviation of three independent experiments. A two tailed t-test was performed to test for statistical significance.
Figure 4A. Kaplan Meier curves show the survival of mice implanted with GSCs after culturing in PM, or S. p values were determined by log rank test. B. Representative IHC images of GSC xenografts are shown. Scale bar = 100 μM.