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Response of urinary malondialdehyde to factors that stimulate lipid peroxidation in vivo
1Department of Nutritional Sciences, University of Guelph, Ontario, Canada.
Abstract:
Malondialdehyde (MDA) derivatives occur as normal constituents of rat and human urine. In a previous study, it was found that MDA excretion in rats is responsive to MDA intake and to certain factors that increase lipid peroxidation in vivo: vitamin E deficiency, iron administration and a high concentration of cod liver oil (CLO) fatty acids in the tissues. In the present study, the effect on MDA excretion of several additional dietary and endogenous factors was evaluated. The composition of dietary fatty acids had a major influence on MDA excretion in fed animals, being highest for animals fed n-3 fatty acids (20:5 and 22:6) from CLO, intermediate for those fed n-6 (18:2) acids from corn oil (CO) and lowest for those fed saturated acids from hydrogenated coconut oil (HCO). Diet was the main source of urinary MDA in all groups. Fasting produced a marked increase in urinary MDA, which tended to be higher in rats previously fed CLO. Fasting MDA excretion was not affected by the level of CO in the diet (5, 10 or 15%), indicating that feeding n-6 acids does not increase lipid peroxidation in vivo. Adrenocorticotropic hormone and epinephrine administration increased urinary MDA, further indicating that lipolysis either releases fatty acid peroxides from the tissues or increases the susceptibility of mobilized fatty acids to peroxidation. A decrease in fasting MDA excretion was observed in rats previously fed a high level of antioxidants (vitamin E + BHT + vitamin C) vs a normal level of vitamin E. MDA excretion increased following adriamycin and CCl4 administration.(ABSTRACT TRUNCATED AT 250 WORDS)
Insights
Urinary malondialdehyde (MDA) levels reflect dietary fatty acids, with n-3 fatty acids increasing excretion. Fasting and hormonal stimulation also elevate MDA, suggesting increased lipid peroxidation or release of peroxides.
Area of Science:
- Biochemistry
- Nutrition Science
- Toxicology
Background:
- Malondialdehyde (MDA) derivatives are normal urinary constituents.
- Previous studies linked rat MDA excretion to intake and lipid peroxidation factors like vitamin E deficiency.
Purpose of the Study:
- To evaluate the effect of dietary and endogenous factors on urinary MDA excretion.
- To investigate the influence of fatty acid composition, fasting, and hormonal stimulation on MDA levels.
Main Methods:
- Rats were fed diets varying in fatty acid composition (n-3, n-6, saturated).
- Studies involved fasting, administration of hormones (ACTH, epinephrine), and antioxidants.
- Effects of adriamycin and CCl4 on MDA excretion were also assessed.
Main Results:
- Dietary fatty acid composition significantly influenced MDA excretion, with n-3 fatty acids (cod liver oil) yielding the highest levels.
- Fasting markedly increased urinary MDA, particularly in rats previously fed cod liver oil.
- Hormonal stimulation (ACTH, epinephrine) increased MDA excretion, suggesting lipolysis-related peroxidation.
- High antioxidant intake reduced fasting MDA excretion.
Conclusions:
- Dietary fatty acids, especially n-3, are a primary determinant of urinary MDA.
- Fasting and hormonal stress can increase MDA excretion, potentially via enhanced lipid peroxidation.
- Antioxidants can mitigate fasting-induced MDA excretion.
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