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1.
Biol Res ; 41(3): 317-30, 2008.
Article in English | MEDLINE | ID: mdl-19399344

ABSTRACT

Lactating Wistar rats were fed a liquid diet containing either ethanol [ethanol-fed group (EFG)] or an isocaloric amount of carbohydrate [pair-fed group (PFG)] from day 1 postpartum up to day 14 of lactation, to investigate micro/macronutrient milk composition and the mineral status of pups. EFG presented a reduction of daily milk production and milk composition was significantly higher in protein and lower in carbohydrate, while the lipid content was similar to that of PFG. When compared to PFG, the milk of EFG had a decreased proportion of C22:6 n-3 fatty acid and an increase in medium-chain fatty acids and of several minerals. Pups of EFG showed reduced growth and a lower concentration of Cu and Sr in plasma and lower concentrations of Ca, P and Cl, and higher concentrations of Cd in the brain. We conclude that maternal EtOH intake greatly impairs lactational performance and modifies the mineral status of pups.


Subject(s)
Animals, Suckling/growth & development , Brain Chemistry/drug effects , Ethanol/pharmacology , Liver/chemistry , Milk/drug effects , Minerals/analysis , Animals , Animals, Newborn , Body Weight/drug effects , Dietary Carbohydrates/administration & dosage , Ethanol/administration & dosage , Female , Liver/drug effects , Milk/chemistry , Rats , Rats, Wistar , Time Factors
2.
Biol. Res ; 41(3): 317-330, 2008. tab, graf
Article in English | LILACS | ID: lil-511921

ABSTRACT

Lactating Wistar rats were fed a liquid diet containing either ethanol [ethanol-fed group (EFG)] or an isocaloric amount of carbohydrate [pair-fed group (PFG)] from day 1 postpartum up to day 14 of lactation, to investigate micro/macronutrient milk composition and the mineral status of pups. EFG presented a reduction of daily milk production and milk composition was significantly higher in protein and lower in carbohydrate, while the lipid content was similar to that of PFG. When compared to PFG, the milk of EFG had a decreased proportion of C22:6 n-3 fatty acid and an increase in medium-chain fatty acids and of several minerals. Pups of EFG showed reduced growth and a lower concentration of Cu and Sr in plasma and lower concentrations of Ca, P and Cl, and higher concentrations of Cd in the brain. We conclude that maternal EtOH intake greatly impairs lactational performance and modifies the mineral status of pups.


Subject(s)
Animals , Female , Rats , Animals, Suckling/growth & development , Brain Chemistry/drug effects , Ethanol/pharmacology , Liver/chemistry , Milk/drug effects , Minerals/analysis , Animals, Newborn , Body Weight/drug effects , Dietary Carbohydrates/administration & dosage , Ethanol/administration & dosage , Liver/drug effects , Milk/chemistry , Rats, Wistar , Time Factors
3.
Lipids ; 41(6): 535-41, 2006 Jun.
Article in English | MEDLINE | ID: mdl-16981431

ABSTRACT

The purpose of this study was to evaluate the effects of four isoenergetic diets of differing fat composition on blood lipid profile and adiposity in young rats. Diets containing different lipid sources--partially hydrogenated vegetable oil (PHVO), palm oil (PO), canola oil (CO), and soy oil (SO)--were fed to lactating rats during the 21 days of lactation, and then fed to young males following weaning until the 45th day of life. In vivo lipogenesis rate (LR), lipid content (LC), relative level of FA, and the activity of lipoprotein lipase (LPL) enzyme were measured in epididymal adipose tissue (EPI). Fasting blood lipoproteins and LC in the carcass were also appraised. Body weight of PO and PHVO groups was significantly higher than CO and SO groups from day 14 of lactation to day 45, despite the lower food intake in the PHVO group. PO and PHVO groups presented higher LR and LC in EPI than SO and CO groups. Carcass fat content was significantly higher in PHVO and PO groups than in CO and SO groups. The LPL activity in EPI was unaffected by dietary lipids. PHVO group had increased total cholesterol and TAG concentrations in comparison with the PO group, and significantly lower HDL level compared with the other groups. These results show that the kind of FA in the dietary lipid offered early in life can affect lipid metabolism and adiposity.


Subject(s)
Adiposity/physiology , Dietary Fats/pharmacology , Fatty Acids/physiology , Lipid Metabolism/physiology , Adipose Tissue/chemistry , Animal Nutritional Physiological Phenomena , Animals , Animals, Newborn , Body Weight , Diet , Dietary Fats/metabolism , Eating/physiology , Fatty Acids/chemistry , Female , Lactation/physiology , Male , Maternal Nutritional Physiological Phenomena/physiology , Rats
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