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Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
The Uterine Environment and Childhood Obesity Risk: Mechanisms and Predictions
Andreea Cristian1,2, Jane L Tarry-Adkins1, Catherine E Aiken3,4
1Department of Obstetrics and Gynaecology, University of CambridgeThe Rosie HospitalandNIHR Cambridge Biomedical Research Centre, Box 223, Cambridge, CB2 0SW, UK.
Insights
Suboptimal prenatal conditions can program children for obesity. Research is needed to understand these developmental programming mechanisms and intervene in the cycle of childhood obesity.
Area of Science:
- Developmental biology
- Pediatric health
- Metabolic programming
Background:
- Childhood obesity is a significant global health concern.
- Intrauterine environments may influence long-term metabolic health and obesity risk.
- Understanding developmental origins of obesity is crucial.
Purpose of the Study:
- To review the mechanisms linking suboptimal intrauterine environments to childhood obesity.
- To explore factors influencing developmental programming of obesity.
- To identify research needs for intervention.
Main Methods:
- Review of observational studies and animal models.
- Analysis of factors like birth weight, maternal stress, and genetics.
- Examination of epigenetic and appetite regulation mechanisms.
Main Results:
- Maternal factors (obesity, insulin resistance) and environmental exposures are linked to increased childhood obesity risk.
- Animal models suggest epigenetic changes and altered adipose tissue development.
- Human studies face challenges in disentangling genetic and postnatal environmental influences.
Conclusions:
- Suboptimal intrauterine environments interact with genetic and postnatal factors to increase obesity risk.
- Maternal metabolic health is a key factor in fetal programming.
- Intervention strategies are needed to break the transgenerational cycle of childhood obesity.
Purpose Of Review:
Childhood obesity is a growing health problem in many populations, hence the urgent need to unravel the underlying mechanisms. Some evidence suggests that exposure to suboptimal intrauterine environments can program foetal metabolic health, with adverse consequences in later life, including susceptibility to childhood obesity.
Findings:
Factors such as high and low foetal birth weight, excessive gestational-weight-gain, maternal stress and smoking are all associated with increased risk of childhood obesity in observational studies. Animal models, where both genetic background and the postnatal environment can be carefully controlled, suggest that several different mechanisms, including epigenetic changes, dysregulation of adipose tissue development and programming of appetite, may be key drivers of developmental programming of childhood obesity. However, the influence of genetics and the post-natal environment are much more difficult to disentangle as independent effects in human studies, which are also complicated by low follow-up rates. Suboptimal intrauterine environments interact with maternal and foetal genetics and with the postnatal environment to contribute to the risk of childhood obesity. Maternal metabolic challenges, for example obesity and insulin resistance, contribute to the risk of foetal overgrowth and subsequent adiposity in childhood. To protect the long-term health of populations, research focusing on effective means of identifying and intervening in the transgenerational cycle of childhood obesity is required.
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