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NAD(P)H Oxidase

Circulation Research · 2000 · Vol. 86(5) · pp. 494–501
Kathy K. GriendlingDan C. SorescuMasuko Ushio‐Fukai

Abstract

Reactive oxygen species have emerged as important molecules in cardiovascular function. Recent work has shown that NAD(P)H oxidases are major sources of superoxide in vascular cells and myocytes. The biochemical characterization, activation paradigms, structure, and function of this enzyme are now partly understood. Vascular NAD(P)H oxidases share some, but not all, characteristics of the neutrophil enzyme. In response to growth factors and cytokines, they produce superoxide, which is metabolized to hydrogen peroxide, and both of these reactive oxygen species serve as second messengers to activate multiple intracellular signaling pathways. The vascular NAD(P)H oxidases have been found to be essential in the physiological response of vascular cells, including growth, migration, and modification of the extracellular matrix. They have also been linked to hypertension and to pathological states associated with uncontrolled growth and inflammation, such as atherosclerosis.

Nitric Oxide and Endothelin EffectsAdenosine and Purinergic SignalingNeutrophil, Myeloperoxidase and Oxidative MechanismsNAD+ kinaseSuperoxideNAD(P)H oxidaseReactive oxygen speciesBiochemistryIntracellularExtracellularNADPH oxidaseChemistryCell biology

MeSH terms

ArteriesArteriosclerosisHumansMyocardiumReactive Oxygen SpeciesNADPH Oxidases

Funding

  • National Institutes of Health
Citations
2,875
FWCI
80.42
field-weighted impact
References
94
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100%
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