Cannabinoids induce glioma stem-like cell differentiation and inhibit gliomagenesis
Tania Aguado1, Arkaitz Carracedo, Boris Julien
1Department of Biochemistry and Molecular Biology I, School of Biology, Complutense University, 28040 Madrid, Spain.
Abstract:
Glioma stem-like cells constitute one of the potential origins of gliomas, and therefore, their elimination is an essential factor for the development of efficient therapeutic strategies. Cannabinoids are known to exert an antitumoral action on gliomas that relies on at least two mechanisms: induction of apoptosis of transformed cells and inhibition of tumor angiogenesis. However, whether cannabinoids target human glioma stem cells and their potential impact in gliomagenesis are unknown. Here, we show that glioma stem-like cells derived from glioblastoma multiforme biopsies and the glioma cell lines U87MG and U373MG express cannabinoid type 1 (CB(1)) and type 2 (CB(2)) receptors and other elements of the endocannabinoid system. In gene array experiments, CB receptor activation altered the expression of genes involved in the regulation of stem cell proliferation and differentiation. The cannabinoid agonists HU-210 and JWH-133 promoted glial differentiation in a CB receptor-dependent manner as shown by the increased number of S-100beta- and glial fibrillary acidic protein-expressing cells. In parallel, cannabinoids decreased the cell population expressing the neuroepithelial progenitor marker nestin. Moreover, cannabinoid challenge decreased the efficiency of glioma stem-like cells to initiate glioma formation in vivo, a finding that correlated with decreased neurosphere formation and cell proliferation in secondary xenografts. Gliomas derived from cannabinoid-treated cancer stem-like cells were characterized with a panel of neural markers and evidenced a more differentiated phenotype and a concomitant decrease in nestin expression. Overall, our results demonstrate that cannabinoids target glioma stem-like cells, promote their differentiation, and inhibit gliomagenesis, thus giving further support to their potential use in the management of malignant gliomas.
Insights
Cannabinoids target glioma stem-like cells by promoting differentiation and inhibiting tumor formation. This research supports cannabinoids as a potential therapy for malignant gliomas.
Area of Science:
- Neuro-oncology
- Cancer Stem Cell Biology
- Pharmacology
Background:
- Glioma stem-like cells are key drivers of glioma development and therapeutic resistance.
- Cannabinoids exhibit anti-glioma effects via apoptosis induction and anti-angiogenesis.
- The specific impact of cannabinoids on human glioma stem cells remains largely unexplored.
Purpose of the Study:
- To investigate whether cannabinoids target human glioma stem-like cells.
- To determine the effect of cannabinoids on glioma stem cell differentiation and gliomagenesis.
- To explore the potential of cannabinoids as a therapeutic strategy for malignant gliomas.
Main Methods:
- Analysis of cannabinoid receptor expression in glioma stem-like cells.
- Gene array experiments to assess gene expression changes upon cannabinoid receptor activation.
- Treatment of glioma stem-like cells with cannabinoid agonists (HU-210, JWH-133).
- In vivo and in vitro assays to evaluate glioma formation, neurosphere formation, and cell differentiation.
Main Results:
- Glioma stem-like cells express cannabinoid receptors (CB1 and CB2).
- Cannabinoid agonists promote glial differentiation (increased S-100beta, GFAP) and decrease progenitor markers (nestin).
- Cannabinoid treatment reduces glioma stem-like cell tumorigenicity in vivo, correlating with decreased neurosphere formation and proliferation.
Conclusions:
- Cannabinoids directly target glioma stem-like cells.
- Cannabinoids induce differentiation and inhibit the gliomagenic potential of these cells.
- These findings support the therapeutic application of cannabinoids in managing malignant gliomas.
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