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Hyperglycemic Pseudohypoxia and Diabetic Complications

Diabetes · 1993 · Vol. 42(6) · pp. 801–813
Joseph R. WilliamsonKatherine ChangMyrto FrangosKhalid S. HasanYasuo IdoTakahiko KawamuraJens Randel NyengaardMaria Van den EndenCharles KiloRonald G. Tilton

Abstract

Vasodilation and increased blood flow are characteristic early vascular responses to acute hyperglycemia and tissue hypoxia. In hypoxic tissues these vascular changes are linked to metabolic imbalances associated with impaired oxidation of NADH to NAD+ and the resulting increased ratio of NADH/NAD+. In hyperglycemic tissues these vascular changes also are linked to an increased ratio of NADH/NAD+, in this case because of an increased rate of reduction of NAD+ to NADH. Several lines of evidence support the likelihood that the increased cytosolic ratio of free NADH/NAD+ caused by hyperglycemia, referred to as pseudohypoxia because tissue partial pressure oxygen is normal, is a characteristic feature of poorly controlled diabetes that mimics the effects of true hypoxia on vascular and neural function and plays an important role in the pathogenesis of diabetic complications. These effects of hypoxia and hyperglycemia-induced pseudohypoxia on vascular and neural function are mediated by a branching cascade of imbalances in lipid metabolism, increased production of superoxide anion, and possibly increased nitric oxide formation.

Adipose Tissue and MetabolismHeart Rate Variability and Autonomic ControlHigh Altitude and HypoxiaNAD+ kinaseEndocrinologyHypoxia (environmental)Internal medicineNitric oxideVasodilationDiabetes mellitusSuperoxidePathogenesisChemistry

MeSH terms

AnimalsHypoxiaDiabetes MellitusHumansHyperglycemiaDiabetes Complications
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References
Nitric oxide as a secretory product of mammalian cells
The FASEB Journal · 1992 · 4,383 citations
Free radicals mediate endothelial cell dysfunction caused by elevated glucose
American Journal of Physiology-Heart and Circulatory Physiology · 1992 · 560 citations
Selective inhibition of the inducible nitric oxide synthase by aminoguanidine
European Journal of Pharmacology · 1993 · 727 citations
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