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PMID: 23819696 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Supplementation of the maternal diet during pregnancy with chocolate and fructose interacts with the high-fat diet of the young to facilitate the onset of metabolic disorders in rat offspring.

Clinical and experimental pharmacology & physiology ·Vol. 40 ·No. 9 ·2013-09-00 ·Pages 652-61

Zhang ZY, Dai YB, Wang HN, Wang MW

Abstract

Obesity and non-alcoholic fatty liver disease are the most common metabolic disorders in society today. Previously, we found that supplementing the maternal diet during pregnancy with chocolate and fructose has negative effects on the well-being of the offspring that were ameliorated if the offspring were fed a normal diet during postnatal life. In the present study, we investigated whether feeding offspring a high-fat diet would augment the maternal programming effects and whether extra protein supply can correct the low birth weight resulting from the chocolate-supplemented maternal diet. Pregnant Sprague-Dawley rats were divided into three groups and fed either standard chow (normal nutrition; NN), chocolate- and fructose-supplemented standard chow with casein sodium (overnutrition; ON) or the supplemented standard chow without casein sodium (malnutrition; MN) throughout pregnancy. Male offspring were weaned on either standard or high-fat chow. Dams in the MN group exhibited moderate weight gain, consumed 50% less protein (P < 0.001) but more carbohydrates during gestation and delivered pups with a 12% lower birth weight (P < 0.05) than pups in the NN group, results that are consistent with previous findings. When fed on a high-fat diet after birth, pups from dams in the MN group (MNHD) had 30% more body fat (P = 0.023) and liver triglyceride (TG) levels that were double (P < 0.01) those in offspring in the other groups, leading to fatty livers in these offspring at 14 weeks of age. Hepatic expression of the PPARα, ApoB100, MTTP, CPT1 and SREBP1c genes was significantly downregulated in the MNHD group (P < 0.05 for all), indicating changes in lipid metabolism. Although dams in the ON group exhibited marked gestational weight gain (P < 0.01), they gave birth to normal weight pups that only manifested mild increases in body fat and liver TG content (P < 0.05), without significant changes in the expression of most genes when fed with the high-fat diet. The results suggest that the extra protein supply in the form of casein sodium was able to correct some negative programming effects of the chocolate and fructose supplementation of the maternal diet, which, in conjunction with a high-fat diet in the offspring, may facilitate the onset of metabolic disorders, with impaired liver gene expression possibly a key contributor.

Keywords
chocolate fat metabolism fructose liver impairment maternal supplemental diet metabolic programming rat
MeSH Terms
Animals Body Weight/physiology Cacao/adverse effects Diet, High-Fat/adverse effects Dietary Supplements/adverse effects Fatty Liver/chemically induced,physiopathology Female Fructose/adverse effects Infant, Low Birth Weight/physiology Liver/physiopathology Male Maternal Nutritional Physiological Phenomena/physiology Metabolic Diseases/chemically induced,physiopathology Non-alcoholic Fatty Liver Disease Obesity/chemically induced,pathology Pregnancy Prenatal Exposure Delayed Effects/physiopathology Rats Rats, Sprague-Dawley
Chemicals
Fructose
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Zhang Zhi-Yun
The National Center for Drug Screening, State Key Laboratory of Drug Research, Shanghai, China.
Dai Yun-Bin
Wang Hao-Nan
Wang Ming-Wei
Article Info
Journal
Clinical and experimental pharmacology & physiology
Abbr.
Clin Exp Pharmacol Physiol
ISSN
1440-1681
Published
2013-09-00
Pages
652-61
Language
English
Region
Australia
NLM ID
0425076
Subset
IM
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