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  • Comparison of spheroids formed by rat glioma stem cells and neural stem cells reveals differences in glucose metabolism and promising therapeutic applications.

Comparison of spheroids formed by rat glioma stem cells and neural stem cells reveals differences in glucose metabolism and promising therapeutic applications.

The Journal of biological chemistry (2012-07-12)
Marie Morfouace, Lisenn Lalier, Muriel Bahut, Virginie Bonnamain, Philippe Naveilhan, Catherine Guette, Lisa Oliver, Naig Gueguen, Pascal Reynier, Francois M Vallette
ABSTRACT

Cancer stem cells (CSCs) are thought to be partially responsible for cancer resistance to current therapies and tumor recurrence. Dichloroacetate (DCA), a compound capable of shifting metabolism from glycolysis to glucose oxidation, via an inhibition of pyruvate dehydrogenase kinase was used. We show that DCA is able to shift the pyruvate metabolism in rat glioma CSCs but has no effect in rat neural stem cells. DCA forces CSCs into oxidative phosphorylation but does not trigger the production of reactive oxygen species and consecutive anti-cancer apoptosis. However, DCA, associated with etoposide or irradiation, induced a Bax-dependent apoptosis in CSCs in vitro and decreased their proliferation in vivo. The former phenomenon is related to DCA-induced Foxo3 and p53 expression, resulting in the overexpression of BH3-only proteins (Bad, Noxa, and Puma), which in turn facilitates Bax-dependent apoptosis. Our results demonstrate that a small drug available for clinical studies potentiates the induction of apoptosis in glioma CSCs.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
DCA Deblock (0.36M dichloroacetic acid in toluene)
Supelco
Dichloroacetic acid, PESTANAL®, analytical standard
Sigma-Aldrich
Dichloroacetic acid, ReagentPlus®, ≥99%
Sigma-Aldrich
Anti-Actin Antibody, clone C4, clone C4, Chemicon®, from mouse