Literature DB >> 27141887

Cancer metabolism: a therapeutic perspective.

Ubaldo E Martinez-Outschoorn1, Maria Peiris-Pagés2,3, Richard G Pestell1, Federica Sotgia2,3,4, Michael P Lisanti2,3.   

Abstract

Awareness that the metabolic phenotype of cells within tumours is heterogeneous - and distinct from that of their normal counterparts - is growing. In general, tumour cells metabolize glucose, lactate, pyruvate, hydroxybutyrate, acetate, glutamine, and fatty acids at much higher rates than their nontumour equivalents; however, the metabolic ecology of tumours is complex because they contain multiple metabolic compartments, which are linked by the transfer of these catabolites. This metabolic variability and flexibility enables tumour cells to generate ATP as an energy source, while maintaining the reduction-oxidation (redox) balance and committing resources to biosynthesis - processes that are essential for cell survival, growth, and proliferation. Importantly, experimental evidence indicates that metabolic coupling between cell populations with different, complementary metabolic profiles can induce cancer progression. Thus, targeting the metabolic differences between tumour and normal cells holds promise as a novel anticancer strategy. In this Review, we discuss how cancer cells reprogramme their metabolism and that of other cells within the tumour microenvironment in order to survive and propagate, thus driving disease progression; in particular, we highlight potential metabolic vulnerabilities that might be targeted therapeutically.

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Year:  2016        PMID: 27141887     DOI: 10.1038/nrclinonc.2016.60

Source DB:  PubMed          Journal:  Nat Rev Clin Oncol        ISSN: 1759-4774            Impact factor:   66.675


  226 in total

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Review 9.  Targeting the metabolic microenvironment of tumors.

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Journal:  Cancer Cell       Date:  2015-01-12       Impact factor: 31.743

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  329 in total

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3.  Cancer metabolism: a therapeutic perspective.

Authors:  Ubaldo E Martinez-Outschoorn; Maria Peiris-Pagés; Richard G Pestell; Federica Sotgia; Michael P Lisanti
Journal:  Nat Rev Clin Oncol       Date:  2017-01-17       Impact factor: 66.675

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Review 6.  Mechanisms of Normal Tissue Injury From Irradiation.

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9.  Effects of a monocarboxylate transport 1 inhibitor, AZD3965, on retinal and visual function in the rat.

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10.  The Role of H2S in the Metabolism of Glucose and Lipids.

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