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In response to homocysteine induced toxicity in human umbilical vein endothelial cells, minimal changes in the concentration of cellular protein thiols but substantial changes in the concentration of intracellular soluble thiols were observed. The latter correlated closely with changes in cellular glutathione levels.

No correlation existed between cellular glutathione levels and cell viability, whereas a close correlation between NAD+ levels and cell viability was demonstrated. Large decreases in cellular NAD+ occurred in response to homocysteine induced toxicity which were accompanied by the production of single stranded DNA. 3-Aminobenzamide, an inhibitor of poly (ADP-ribose) polymerase preserved cell viability and cellular NAD+ levels.

Evidence that DNA synthesis was also compromised was revealed by the decreased capacity of homocysteine treated cells to incorporate deoxyuridine. Radical scavengers were also effective in preventing homocysteine induced toxicity. It is likely that the major threat to cells derives from radicals generated intracellularly. Eicosanoid metabolism and the xanthine oxidase system have been identified as two potential sources of radicals.

About the Authors

Blundell G, Jones BG, Rose FA, Tudball N. Homocysteine mediated endothelial cell toxicity and its amelioration. Atherosclerosis. 1996 May;122(2):163-72. School of Molecular and Medical Biosciences, University of Wales College of Cardiff, UK.

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NAD_Blood_Tests

  • Posted on 04/29/2010 04:13 am
The ratio of lactate to pyruvate reflects the NAD/NADH ratio and is useful in distinguishing primary defects. Measured enzymatically in blood or CSF as an index of defects of glucose oxidation (fed state) or gluconeogenesis (fasted). (Center Inherited Disorders Energy Metabolism at CWR University School of Medicine, Cleveland, Ohio).

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