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Clin Exp Metastasis ; 28(8): 865-75, 2011 Dec.
Article in English | MEDLINE | ID: mdl-21842413

ABSTRACT

Metastasis is the primary cause of death from many tumors, and novel anti-metastatic therapies are necessary. Recently, we showed that metastatic tumors down-regulate key oxidative phosphorylation (OXPHOS) genes in favor of glycolysis, a further enhancement of the Warburg effect. Therefore, we sought to determine if restriction of glycolysis using 2-deoxy-D-glucose (2DG) would lead to increased utilization of OXPHOS and inhibition of the metastatic phenotype. Noncytotoxic concentrations of 2DG dose-dependently inhibited in vitro migration and invasion in the highly metastatic DLM8-luc-M1 osteosarcoma (OS) cell line, as well as other metastatic human, canine, and murine cancer cells of different histotypes. This was associated with cytoskeletal rearrangement and inhibition of cathepsin L expression. A dose-dependent shift toward OXPHOS was confirmed by demonstrating increased oxygen utilization and decreased lactate production in 2DG treated cells. Finally, 2DG treatment significantly delayed metastasis and prolonged survival in an orthotopic postsurgical OS model. In conclusion, this work suggests that forcing cells away from glycolysis may inhibit key components of the metastatic phenotype, providing a novel avenue for metastasis prevention.


Subject(s)
Antimetabolites/pharmacology , Bone Neoplasms/prevention & control , Deoxyglucose/pharmacology , Glycolysis/drug effects , Osteosarcoma/drug therapy , Oxidative Phosphorylation/drug effects , Animals , Blotting, Western , Bone Neoplasms/metabolism , Bone Neoplasms/secondary , Cathepsin L/metabolism , Cell Adhesion/drug effects , Cell Movement/drug effects , Cell Proliferation/drug effects , Dogs , Female , Fluorescent Antibody Technique , Humans , In Vitro Techniques , Mice , Mice, Inbred C3H , Osteosarcoma/metabolism , Osteosarcoma/pathology , Oxygen Consumption/drug effects , Phenotype , Survival Rate , Tumor Cells, Cultured
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