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II. Cytochrome<i>P</i>-450 enzymes and oxidative stress

Graham RobertsonIsabelle LeclercqGeoffrey C. Farrell

Abstract

Oxidative stress is present in the liver of humans with steatosis and nonalcoholic steatohepatitis (NASH) and is a plausible mediator of cellular injury, inflammatory recruitment, and fibrogenesis. CYPs 2E1 and 4A are the microsomal oxidases involved with fatty acid oxidation. Both enzymes can reduce molecular oxygen to produce prooxidant species, which, if not countered efficiently by antioxidants, create oxidative stress. In this theme article, we present the evidence that, in the context of hepatic steatosis, CYPs 2E1 and 4A could generate the "second hit" of cellular injury, particularly when antioxidant reserves are depleted, and propose ways in which this could contribute to the pathogenesis of NASH.

Liver Disease Diagnosis and TreatmentDiet, Metabolism, and DiseaseAlcohol Consumption and Health EffectsOxidative stressSteatosisContext (archaeology)AntioxidantEnzymeOxidative phosphorylationLipid peroxidationBiochemistryChemistryCytochrome

MeSH terms

AnimalsCytochrome P-450 Enzyme SystemFatty LiverHepatitisMixed Function OxygenasesLiverOxidoreductasesUp-RegulationOxidative StressCytochrome P-450 CYP2E1Cytochrome P-450 CYP4A
Citations
349
FWCI
9.09
field-weighted impact
References
34
Percentile
99%
vs. same field & year
Citations per year
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