Maternal obesity and fetal metabolic programming: a fertile epigenetic soil

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Maternal obesity and fetal metabolic programming: a fertile epigenetic soil.

The incidence of obesity and overweight has reached epidemic levels in the United States and developed countries worldwide. Even more alarming is the increasing prevalence of metabolic diseases in younger children and adolescents. Infants born to obese, overweight, and diabetic mothers (even when normal weight) have increased adiposity and are at increased risk of later metabolic disease. In ad...

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Maternal Obesity, Metabolic Health, and Prenatal Programming of Offspring Obesity

Children born to overweight and obese women, as compared to those of normal weight women, have greater risk for becoming obese themselves and suffering comorbid metabolic health problems. Evidence is accumulating that this increased susceptibility is at least partially attributed to a prenatal programming effect, whereby obesogenic factors in the intrauterine environment alter fetal development...

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Maternal Obesity and the Fetal Origins of the Metabolic Syndrome

Over recent decades there has been a rapid rise in metabolic disorders throughout the world. Whilst lifestyle and societal habits have contributed to the obesity epidemic, there is now increasing evidence that the early developmental environment of an infant can play a pivotal role in the 'programming' of an adverse physiological phenotype in later life. Clinical evidence highlights that matern...

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Dietary Proteins, Developmental Programming, and Potential Implication in Maternal Obesity

Background: Proteins are known mainly based on their metabolic and nutritional functions including protein synthesis and a source of energy. In spite of various physiological properties attributed to proteins, their functions have neither been addressed by assessing quality of proteins nor by nutrition and dietetic practices. Methods: Studies were included if they were randomized animal studies...

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Impact of maternal obesity on fetal programming of cardiovascular disease.

The in utero environment is a key determinant of long-term health outcomes; poor maternal metabolic state and placental insufficiency are strongly associated with these long-term health risks. Human epidemiological studies link maternal obesity and offspring cardiovascular disease in later life, but mechanistic studies in animal models are limited. Here, we review the literature pertaining to m...

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ژورنال

عنوان ژورنال: American Journal of Physiology-Regulatory, Integrative and Comparative Physiology

سال: 2010

ISSN: 0363-6119,1522-1490

DOI: 10.1152/ajpregu.00310.2010