Developmental programming of the metabolic syndrome by maternal nutritional imbalance: how strong is the evidence from experimental models in mammals?
- PMID: 15459241
- PMCID: PMC1665360
- DOI: 10.1113/jphysiol.2004.072009
Developmental programming of the metabolic syndrome by maternal nutritional imbalance: how strong is the evidence from experimental models in mammals?
Abstract
The incidence of the metabolic syndrome, a cluster of abnormalities focusing on insulin resistance and associated with high risk for cardiovascular disease and diabetes, is reaching epidemic proportions. Prevalent in both developed and developing countries, the metabolic syndrome has largely been attributed to altered dietary and lifestyle factors that favour the development of central obesity. However, population-based studies have suggested that predisposition to the metabolic syndrome may be acquired very early in development through inappropriate fetal or neonatal nutrition. Further evidence for developmental programming of the metabolic syndrome has now been suggested by animal studies in which the fetal environment has been manipulated through altered maternal dietary intake or modification of uterine artery blood flow. This review examines these studies and assesses whether the metabolic syndrome can be reliably induced by the interventions made. The validity of the different species, diets, feeding regimes and end-point measures used is also discussed.
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References
-
- Aihie Sayer A, Dunn R, Langley-Evans S, Cooper C. Prenatal exposure to a maternal low protein diet shortens life span in rats. Gerontology. 2001;47:9–14. - PubMed
-
- Arch JR, Stock MJ, Trayhurn P. Leptin resistance in obese humans: does it exist and what does it mean? Int J Obes Relat Metab Disord. 1998;22:1159–1163. - PubMed
-
- Armitage JA, Jensen R, Taylor PD, Poston L. Exposure to a high fat diet during gestation and weaning results in reduced elasticity and endothelial function as well as altered gene expression and fatty acid content of rat aorta. J Soc Gynecol Invest. 2004;11:183A.
-
- Armitage JA, Pearce AD, Sinclair AJ, Vingrys AJ, Weisinger RS, Weisinger HS. Increased blood pressure later in life may be associated with perinatal n-3 fatty acid deficiency. Lipids. 2003;38:459–464. - PubMed
-
- Athauda NRKB, Athauda SBP, Segal MB, Preston JE. Effects of maternal dietary protein restriction on body weight and organ growth in rat offspring. J Physiol. 2004;555.P
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