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Medicine and Health Sciences Commons

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Oncology

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Thomas Jefferson University

Bodine Journal

AMPK

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Full-Text Articles in Medicine and Health Sciences

Control Of Glycolytic Flux By Ampk And P53-Mediated Signaling Pathways In Tumor Cells Grown At Low Ph, D. B. Leeper, E. E. Mendoza, J. Caro, R. Burd Dec 2010

Control Of Glycolytic Flux By Ampk And P53-Mediated Signaling Pathways In Tumor Cells Grown At Low Ph, D. B. Leeper, E. E. Mendoza, J. Caro, R. Burd

Bodine Journal

Introduction: Tumor cells grow in nutrient and oxygen deprived microenvironments and adapt to the suboptimal growth conditions by altering metabolic pathways. This adaptation process characteristically results in a tumor phenotype that displays upregulated Hif-1α anaerobic glycolysis, chronic acidification, reduced rate of overall protein synthesis, lower rate of cell proliferation and aggressive invasive characteristics. Most transplantable tumors exhibit a pHe of 6.7- 7.0; the DB-1 melanoma xenografts used here have a pHe=6.7. Understanding tumor cell reaction to the microenvironment is a critical factor in predicting the tumor response to radiotherapy. The glucose regulatory molecule, 6-Phosphofructo-2-Kinase/Fructose-2,6- Biphosphatase Isoform-3 (PFKFB3), is a bifunctional …


Control Of Glycolytic Flux By Ampk And P53-Mediated Signaling Pathways In Tumor Cells Adapted To Grow At Low Ph, E. E. Mendoza, J. Caro, D. B. Leeper, R. Burd Dec 2010

Control Of Glycolytic Flux By Ampk And P53-Mediated Signaling Pathways In Tumor Cells Adapted To Grow At Low Ph, E. E. Mendoza, J. Caro, D. B. Leeper, R. Burd

Bodine Journal

Introduction: Tumor cells grow in nutrient and oxygen deprived microenvironments and adapt to the suboptimal growth conditions by altering metabolic pathways. This adaptation process characteristically results in a tumor phenotype that displays anaerobic glycolysis, chronic acidification and aggressive tumor characteristics. Understanding the tumor cell reaction to the microenvironment is a critical factor in predicting the tumor response to hyperthermia. The glucose regulatory molecule, 6-Phosphofructo-2-Kinase/Fructose-2,6-Biphosphatase Isoform-3 (PFKFB3), is a bifunctional enzyme central to glycolytic flux and downstream of the metabolic stress sensor AMP-activated protein kinase (AMPK), which has been shown to activate an isoform of Phosphofructokinase (PFK-2).

Society for Thermal Medicine …