Targeting Metabolic Remodeling in Glioblastoma Multiforme

被引:119
作者
Wolf, Amparo [1 ]
Agnihotri, Sameer [1 ]
Guha, Abhijit [1 ,2 ]
机构
[1] Univ Toronto, Hosp Sick Children, Res Inst, Arthur & Sonia Labatt Brain Tumor Res Ctr, Toronto, ON M5G 1L7, Canada
[2] Univ Toronto, Toronto Western Hosp, Div Neurosurg, Toronto, ON M5T 2S8, Canada
关键词
Tumor Metabolism; Aerobic Glycolysis; Warburg Effect; Glioblastoma Multiforme; INTEGRATED GENOMIC ANALYSIS; HIGH AEROBIC GLYCOLYSIS; FATTY-ACID SYNTHASE; PYRUVATE-KINASE M2; CODON; 132; MUTATION; HUMAN-BRAIN-TUMORS; HEXOKINASE-II; GLIOMA-CELLS; CANCER-CELLS; MITOCHONDRIAL HEXOKINASE;
D O I
10.18632/oncotarget.190
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
A key aberrant biological difference between tumor cells and normal differentiated cells is altered metabolism, whereby cancer cells acquire a number of stable genetic and epigenetic alterations to retain proliferation, survive under unfavorable microenvironments and invade into surrounding tissues. A classic biochemical adaptation is the metabolic shift to aerobic glycolysis rather than mitochondrial oxidative phosphorylation, regardless of oxygen availability, a phenomenon termed the "Warburg Effect". Aerobic glycolysis, characterized by high glucose uptake, low oxygen consumption and elevated production of lactate, is associated with a survival advantage as well as the generation of substrates such as fatty acids, amino acids and nucleotides necessary in rapidly proliferating cells. This review discusses the role of key metabolic enzymes and their association with aerobic glycolysis in Glioblastoma Multiforme (GBM), an aggressive, highly glycolytic and deadly brain tumor. Targeting key metabolic enzymes involved in modulating the "Warburg Effect" may provide a novel therapeutic approach either singularly or in combination with existing therapies in GBMs.
引用
收藏
页码:552 / 562
页数:11
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