Faculty of Medicine, Institute for Applied Molecular Medicine (IMMA), CEU San Pablo University, 28668 Madrid, Spain.
Faculty of Experimental Sciences, Universidad Francisco de Vitoria, 28223 Madrid, Spain.
Cells. 2021 Jan 20;10(2):202. doi: 10.3390/cells10020202.
Glioblastoma (GBM) is the most aggressive primary brain tumor, with a median survival at diagnosis of 16-20 months. Metabolism represents a new attractive therapeutic target; however, due to high intratumoral heterogeneity, the application of metabolic drugs in GBM is challenging. We characterized the basal bioenergetic metabolism and antiproliferative potential of metformin (MF), dichloroacetate (DCA), sodium oxamate (SOD) and diazo-5-oxo-L-norleucine (DON) in three distinct glioma stem cells (GSCs) (GBM18, GBM27, GBM38), as well as U87MG. GBM27, a highly oxidative cell line, was the most resistant to all treatments, except DON. GBM18 and GBM38, Warburg-like GSCs, were sensitive to MF and DCA, respectively. Resistance to DON was not correlated with basal metabolic phenotypes. In combinatory experiments, radiomimetic bleomycin exhibited therapeutically relevant synergistic effects with MF, DCA and DON in GBM27 and DON in all other cell lines. MF and DCA shifted the metabolism of treated cells towards glycolysis or oxidation, respectively. DON consistently decreased total ATP production. Our study highlights the need for a better characterization of GBM from a metabolic perspective. Metabolic therapy should focus on both glycolytic and oxidative subpopulations of GSCs.
胶质母细胞瘤(GBM)是最具侵袭性的原发性脑肿瘤,诊断后的中位生存期为 16-20 个月。代谢代表了一个新的有吸引力的治疗靶点;然而,由于肿瘤内异质性高,代谢药物在 GBM 中的应用具有挑战性。我们在三种不同的神经胶质瘤干细胞(GSCs)(GBM18、GBM27、GBM38)以及 U87MG 中,对二甲双胍(MF)、二氯乙酸(DCA)、草氨酸钠(SOD)和重氮-5-氧代-L-正亮氨酸(DON)的基础生物能量代谢和抗增殖潜力进行了特征描述。GBM27 是一种高度氧化的细胞系,对所有治疗均具有耐药性,除 DON 外。GBM18 和 GBM38 是具有 Warburg 样特征的 GSCs,分别对 MF 和 DCA 敏感。对 DON 的耐药性与基础代谢表型无关。在联合实验中,类放射菌素博来霉素与 MF、DCA 和 DON 在 GBM27 中以及在所有其他细胞系中与 DON 一起表现出具有治疗相关性的协同作用。MF 和 DCA 分别将处理细胞的代谢向糖酵解或氧化转移。DON 始终降低总 ATP 产生。我们的研究强调了从代谢角度更好地描述 GBM 的必要性。代谢治疗应侧重于 GSCs 的糖酵解和氧化亚群。