Scinovex
articleTop 10% cited

Free radicals mediate endothelial cell dysfunction caused by elevated glucose

American Journal of Physiology-Heart and Circulatory Physiology · 1992 · Vol. 263(2) · pp. H321–H326
Belay TesfamariamRichard A. Cohen

Abstract

Impaired endothelium-dependent relaxation occurs in diabetic rabbit aorta and normal aorta exposed to elevated concentrations of glucose and is prevented by cyclooxygenase inhibitors. The role of free radicals in the endothelial cell impairment was examined with free radical scavengers and in aortas from rabbits fed with probucol (1% wt/wt, a lipid-soluble antioxidant). Rings of aorta suspended for measurement of isometric tension were incubated for 6 h in control (5.5 mM) or elevated (44 mM) glucose. Impairment of endothelium-dependent relaxation to acetylcholine caused by exposure to elevated glucose was prevented by superoxide dismutase, catalase, deferoxamine, or allopurinol and did not occur in aortas from probucol-fed rabbits. Similarly, impairment of acetylcholine relaxations in aortas from alloxan-induced diabetic rabbits was restored to normal by superoxide dismutase. Oxygen-derived free radicals generated by xanthine oxidase also caused impaired acetylcholine relaxations. Exposure of aortic segments to elevated glucose or to xanthine oxidase caused a significant increase in release of immunoreactive prostanoids. These data indicate that the endothelial cell dysfunction caused by elevated glucose is mediated by free radicals that are likely generated through the increased cyclooxygenase catalysis occurring in the endothelium. Treatment with antioxidants protects against impaired endothelium-dependent relaxations caused by elevated glucose.

Nitric Oxide and Endothelin EffectsAntioxidant Activity and Oxidative StressAdvanced Glycation End Products researchSuperoxide dismutaseInternal medicineProbucolChemistryEndocrinologyXanthine oxidaseEndotheliumEndothelial dysfunctionRadicalAllopurinol

MeSH terms

AnimalsAortaBlood GlucoseDiabetes Mellitus, ExperimentalEndothelium, VascularFree RadicalsMaleOxygenProbucolProstaglandinsRabbitsVasodilationFree Radical Scavengers
Citations
560
FWCI
9.07
field-weighted impact
References
21
Percentile
98%
vs. same field & year
Citations per year
Cited by
The Effect of Short-Term Hyperglycemia on the Innate Immune System
The American Journal of the Medical Sciences · 2016 · 438 citations
Endothelial dysfunction in diabetes
British Journal of Pharmacology · 2000 · 1,158 citations
Role of Oxidative Modifications in Atherosclerosis
Physiological Reviews · 2004 · 2,584 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.