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Reactive Oxygen Species in the Vasculature

Hypertension · 2003 · Vol. 42(6) · pp. 1075–1081
Yoshihiro TaniyamaKathy K. Griendling

Abstract

Accumulating evidence indicates that reactive oxygen species (ROS) play major roles in the initiation and progression of cardiovascular dysfunction associated with diseases such as hyperlipidemia, diabetes mellitus, hypertension, ischemic heart disease, and chronic heart failure. ROS produced by migrating inflammatory cells as well as vascular cells (endothelial cells, vascular smooth muscle cells, and adventitial fibroblasts) have distinct functional effects on each cell type. These include cell growth, apoptosis, migration, inflammatory gene expression, and matrix regulation. ROS, by regulating vascular cell function, can play a central role in normal vascular physiology, and can contribute substantially to the development of vascular disease.

Nitric Oxide and Endothelin EffectsEicosanoids and Hypertension PharmacologyNeutrophil, Myeloperoxidase and Oxidative MechanismsReactive oxygen speciesVascular smooth muscleVascular diseaseBiologyHyperlipidemiaCell biologyHeart failureApoptosisDiabetes mellitusDisease

MeSH terms

Cardiovascular DiseasesClinical Trials as TopicEndothelium, VascularHumansMuscle, Smooth, VascularSuperoxidesReactive Oxygen SpeciesOxidative Stress

Funding

  • Japan Heart Foundation
  • National Institutes of Health
  • Bayer Yakuhin
Citations
1,059
FWCI
25.12
field-weighted impact
References
86
Percentile
100%
vs. same field & year
Citations per year
References
Mechanisms Underlying Endothelial Dysfunction in Diabetes Mellitus
Circulation Research · 2001 · 1,189 citations
NAD(P)H Oxidase
Circulation Research · 2000 · 2,875 citations
Free Radicals in the Physiological Control of Cell Function
Physiological Reviews · 2002 · 9,768 citations
Role of xanthine oxidoreductase and NAD(P)H oxidase in endothelial superoxide production in response to oscillatory shear stress
American Journal of Physiology-Heart and Circulatory Physiology · 2003 · 456 citations
NF-κB regulation in the immune system
Nature reviews. Immunology · 2002 · 3,982 citations
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