Early Neural and Vascular Dysfunctions in Diabetic Rats Are Largely Sequelae of Increased Sorbitol Oxidation
- 1 January 2010
- journal article
- research article
- Published by Mary Ann Liebert Inc in Antioxidants and Redox Signaling
- Vol. 12 (1), 39-51
- https://doi.org/10.1089/ars.2009.2502
Abstract
These experiments were undertaken to assess the importance of cytoplasmic (c) sorbitol oxidation versus mitochondrial (m) pyruvate oxidation in mediating neural and vascular dysfunction attributable to hyperglycemia in diabetic rats. Increased oxidation of sorbitol is coupled to enzymatic reduction of free oxidized NAD+c to reduced NADHc, manifested by an increased ratio of NADH to NAD+c. Likewise, increased oxidation of pyruvate is coupled to reduction of NAD+m to NADHm, which increases the NADH/NAD+m ratio. Specific inhibitors of sorbitol production or sorbitol oxidation normalized: increased diabetic nerve NADH/NAD+c, impaired nerve-conduction velocity, and vascular dysfunction in sciatic nerve, retina, and aorta; however, they had little or no impact on increased NADH/NAD+m. These observations provide, for the first time, strong in vivo evidence for the primacy of sorbitol oxidation versus. pyruvate oxidation in mediating the metabolic imbalances, impaired nerve conduction, and vascular dysfunction evoked by diabetes. These findings are consistent with (a) the fact that oxidation of sorbitol produces “prooxidant” NADHc uncoupled from subsequent production of “antioxidant” pyruvate required for reoxidation of NADHc to NAD+c by lactate dehydrogenase, and (b) the hypothesis that neural and vascular dysfunction in early diabetes are caused primarily by increased NADHc, which fuels superoxide production by NADH-driven oxidases. Antioxid. Redox Signal. 12, 39–51.Keywords
This publication has 54 references indexed in Scilit:
- Aldose reductase mediates myocardial ischemia-reperfusion injury in part by opening mitochondrial permeability transition poreAmerican Journal of Physiology-Heart and Circulatory Physiology, 2009
- Contribution of polyol pathway to arteriolar dysfunction in hyperglycemia. Role of oxidative stress, reduced NO, and enhanced PGH2/TXA2 mediationAmerican Journal of Physiology-Heart and Circulatory Physiology, 2007
- Pyridine Nucleotide Redox Abnormalities in DiabetesAntioxidants and Redox Signaling, 2007
- The role of mitochondria in protection of the heart by preconditioningBiochimica et Biophysica Acta (BBA) - Bioenergetics, 2007
- Reexamining the Hyperglycemic Pseudohypoxia Hypothesis of Diabetic OculopathyInvestigative Opthalmology & Visual Science, 2006
- An aldose reductase inhibitor reverses early diabetes‐induced changes in peripheral nerve function, metabolism, and antioxidative defenseThe FASEB Journal, 2001
- Increased retinal endothelial cell monolayer permeability induced by the diabetic milieu: role of advanced non‐enzymatic glycation and polyol pathway activationDiabetes/Metabolism Research and Reviews, 2001
- NADH: sensor of blood flow need in brain, muscle, and other tissuesThe FASEB Journal, 2001
- Diabetes-Induced Changes in Retinal NAD-Redox StatusPharmacology, 2001
- Diabetes-induced glomerular dysfunction: Links to a more reduced cytosolic ratio of NADH/NAD+Kidney International, 1992