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Hydrogen peroxide regulation of endothelial function: Origins, mechanisms, and consequences

Cardiovascular Research · 2005 · Vol. 68(1) · pp. 26–36
Hua Cai

Abstract

Increased production of reactive oxygen species (ROS) has been implicated in the pathogenesis of cardiovascular diseases. Enzymatic systems such as the mitochondrial respiratory chain, vascular NAD(P)H oxidases, xanthine oxidase, and uncoupled endothelial nitric oxide synthase (eNOS) produce superoxide anion (O2*-) in vascular cells. While some O2(*-) rapidly degrades by reacting with nitric oxide (NO*), the O2*- signal preserved by dismutation into hydrogen peroxide (H2O2) exerts prolonged signaling effects. This review focuses on patterns and mechanisms whereby H2O2 modulates different aspects of endothelial cell function including endothelial cell growth and proliferation, endothelial apoptosis, endothelium-dependent vasorelaxation, endothelial cytoskeletal reorganization and barrier dysfunction, endothelial inflammatory responses, and endothelium-regulated vascular remodeling. These modulations of endothelial cell function may at least partially underlie H2O2 contribution to the development of vascular disease.

Nitric Oxide and Endothelin EffectsNeutrophil, Myeloperoxidase and Oxidative MechanismsEicosanoids and Hypertension PharmacologySuperoxideCell biologyNitric oxideEndothelial stem cellEndotheliumXanthine oxidaseReactive oxygen speciesEnosEndothelial dysfunctionNitric Oxide Synthase Type III

MeSH terms

AnimalsCardiovascular DiseasesCell DivisionEndothelium, VascularHumansHydrogen PeroxideVasodilationOxidantsApoptosisCell ProliferationNitric Oxide Synthase Type III

Funding

  • American Diabetes Association
  • American Heart Association
  • University of Chicago
Citations
561
FWCI
14.63
field-weighted impact
References
146
Percentile
99%
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Citations per year
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References
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Trends in Pharmacological Sciences · 2003 · 687 citations
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American Journal of Physiology-Heart and Circulatory Physiology · 2003 · 456 citations
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