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ROS homeostasis and metabolism: a dangerous liason in cancer cells

Cell Death and Disease · 2016 · Vol. 7(6) · pp. e2253–e2253
Emiliano PanieriMassimo Santoro

Abstract

Tumor cells harbor genetic alterations that promote a continuous and elevated production of reactive oxygen species. Whereas such oxidative stress conditions would be harmful to normal cells, they facilitate tumor growth in multiple ways by causing DNA damage and genomic instability, and ultimately, by reprogramming cancer cell metabolism. This review outlines the metabolic-dependent mechanisms that tumors engage in when faced with oxidative stress conditions that are critical for cancer progression by producing redox cofactors. In particular, we describe how the mitochondria has a key role in regulating the interplay between redox homeostasis and metabolism within tumor cells. Last, we will discuss the potential therapeutic use of agents that directly or indirectly block metabolism.

Glutathione Transferases and PolymorphismsCancer, Hypoxia, and MetabolismGenomics, phytochemicals, and oxidative stressOxidative stressCancer cellHomeostasisReactive oxygen speciesReprogrammingMitochondrionCell biologyBiologyMetabolismOxidative phosphorylation

MeSH terms

AnimalsHomeostasisHumansMitochondriaNeoplasmsOxidation-ReductionReactive Oxygen SpeciesMetabolic Networks and Pathways

Funding

  • Ministero della Salute
  • Associazione Italiana per la Ricerca sul Cancro
Citations
1,124
FWCI
59.53
field-weighted impact
References
171
Percentile
100%
vs. same field & year
Citations per year
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