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J Nutr Biochem ; 14(11): 648-55, 2003 Nov.
Article in English | MEDLINE | ID: mdl-14629896

ABSTRACT

Dietary copper deficiency is known to adversely affect the circulatory system of fructose-fed rats. Part of the problem may lie in the effect of copper deficiency on intermediary metabolism. To test this, weanling male Long-Evans rats were fed for 4 or 8 weeks on sucrose-based diets containing low or adequate copper content. Copper deficient rats had significantly lower plasma and tissue copper as well as lower plasma copper, zinc-superoxide dismutase activity. Copper deficient rats also had a significantly higher heart:body weight ratio when compared to pair-fed controls. Direct measurement of glycolysis and pentose phosphate pathway flux in erythrocytes using (13)C NMR showed no differences in carbon flux from glucose or fructose to pyruvate but a significantly higher flux through the lactate dehydrogenase locus in copper deficient rats (approximately 1.3 times, average of glucose and glucose + fructose measurements). Copper-deficient animals had significantly higher erythrocyte concentrations of glucose, fructose, glyceraldehyde 3-phosphate and NAD(+). Liver metabolite levels were also affected by copper deficiency being elevated in glycogen and fructose 1-phosphate content. The results show small changes in carbohydrate metabolism of copper deficient rats.


Subject(s)
Carbohydrates/blood , Copper/deficiency , Erythrocytes/metabolism , Animals , Blood Glucose/metabolism , Body Weight , Carbohydrates/analysis , Copper/administration & dosage , Copper/analysis , Diet , Fructose/blood , Glyceraldehyde 3-Phosphate/blood , Glycolysis , Heart/anatomy & histology , Liver/chemistry , Magnetic Resonance Spectroscopy , Male , NAD/blood , Organ Size , Pentose Phosphate Pathway , Rats , Rats, Long-Evans , Superoxide Dismutase/blood , Weaning
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