Acute Hyperglycaemia and Oxidative Stress Generation
- 1 August 1997
- journal article
- conference paper
- Published by Wiley in Diabetic Medicine
- Vol. 14 (S3) , S45-S49
- https://doi.org/10.1002/(sici)1096-9136(199708)14:3+<s45::aid-dia444>3.3.co;2-i
Abstract
Oxidative stress is an acknowledged pathogenic mechanism in diabetic complications. Several studies have demonstrated that acute hyperglycaemia can impair the physiological homeostasis of important systems in living organisms and that it may exert these effects via production of free radicals and associated oxidative stress. Acute increases in plasma glucose concentration may increase free radical production by the following mechanisms: labile glycation; auto-oxidation of glucose; and intracellular activation of the polyol pathway, which produces an imbalance in the NADH/NAD(+) ratio and favours the production of free radicals. The hypothesis that free radicals may mediate the effects of acute hyperglycaemia is supported by evidence that antioxidants can counteract some of the effects induced by acute hyperglycaemia, for example, vasoconstriction, activation of coagulation, and the increase in plasma intracellular adhesion molecule-1 concentrations. Direct evidence of an association between oxidative stress and hyperglycaemia has come from studies of induced hyperglycaemia or standardized meal intake. In both diabetic and non-diabetic subjects, hyperglycaemia or meal intake causes a reduction in plasma Total Radical-trapping Antioxidant Parameter (TRAP). This is associated with consumption of protein thiol groups, vitamin C, and uric acid. This may confirm the hypothesis that acute hyperglycaemia provokes oxidative stress, which destroys the natural antioxidant defences found in the plasma. (C) 1997 by John Wiley & Sons, Ltd.Keywords
This publication has 16 references indexed in Scilit:
- Evidence for a hyperglycaemia-dependent decrease of antithrombin III-thrombin complex formation in humansDiabetologia, 1990
- Hyperglycemia may determine fibrinopeptide A plasma level increase in humansMetabolism, 1989
- HYPERGLYCAEMIA AND ABSORPTION OF SULPHONYLUREA DRUGSThe Lancet, 1989
- Blood glucose may condition factor VII levels in diabetic and normal subjectsDiabetologia, 1988
- Serum glucose concentration as a modulator of interdigestive gastric motilityGastroenterology, 1988
- Glucose autoxidation and protein modification. The potential role of ‘autoxidative glycosylation’ in diabetesBiochemical Journal, 1987
- Induced hyperglycemia alters antithrombin III activity but not its plasma concentration in healthy normal subjectsDiabetes, 1987
- Regional cerebral blood flow decreases during chronic and acute hyperglycemia.Stroke, 1987
- Effect of intravenous glucose infusion on renal function in normal man and in insulin-dependent diabeticsDiabetologia, 1981
- Reduced Fibrinogen Survival in Diabetes MellitusJournal of Clinical Investigation, 1979