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Published on: May 8, 2018
Fetal size and eating behaviour in childhood: a prospective cohort study
Wietske A Ester1,2, Pauline W Jansen3,4, Hans W Hoek1,2,5
1Parnassia Psychiatric Institute, The Hague, The Netherlands.
Insights
Fetal growth and birth size influence childhood eating behaviors. Larger fetal size is linked to increased food responsiveness and reduced satiety, potentially contributing to obesity risk.
Area of Science:
- Pediatric obesity research
- Developmental origins of health and disease (DOHaD)
- Nutritional sciences
Background:
- Adverse intrauterine environments are linked to adult obesity.
- Limited understanding of how fetal growth and birth size impact childhood eating behaviors.
Purpose of the Study:
- To investigate the association between fetal and birth size and eating behavior in children.
- To explore the role of intrauterine influences on appetite and satiety regulation.
Main Methods:
- Prospective cohort study (Generation R) with 4350 mother-child dyads.
- Assessment of fetal and birth size measurements.
- Maternal reporting of child eating behavior at age 4 years using the Child Eating Behaviour Questionnaire.
- Measurement of child body mass index (BMI) at age 2 years.
Main Results:
- Higher birth weight correlated with lower satiety responsiveness and higher food responsiveness and enjoyment of food at age 4.
- Increased fetal growth from late pregnancy to birth was associated with decreased satiety responsiveness.
- Children with the highest birth weight exhibited higher food approach and lower food avoidance behaviors.
- Child BMI partially mediated the relationship, but direct effects of birth weight on appetitive traits persisted.
Conclusions:
- Fetal size, particularly being large in utero, is associated with eating behaviors that may promote obesity.
- Findings highlight intrauterine influences on appetite and satiety.
- Contributes to understanding the complex etiology of obesity.
Background:
Although studies showed that an adverse intrauterine environment increases the obesity risk in adulthood, little is known about consequences of fetal growth and birth size for eating behaviour. We examined whether fetal and birth size are associated with childhood eating behaviour.
Methods:
Participants were 4350 mother-child dyads of the prospective cohort study Generation R. We assessed the relation between fetal and birth size measurements with child eating behaviour at age 4 years by maternal report on the Child Eating Behaviour Questionnaire. Child body mass index (BMI) was measured at age 2 years.
Results:
Per one standard deviation (SD) larger birthweight, children scored lower on Satiety Responsiveness [-0.29 points; 95% confidence interval (CI): -0.39; -0.18], higher on Food Responsiveness (0.28 points; 95% CI: 0.17; 0.39) and on Enjoyment of Food (0.21 points; 95% CI: 0.12; 0.31) at age 4 years. Similar associations were found in late pregnancy. Per one SD increase in fetal growth from late pregnancy to birth, children scored lower on Satiety Responsiveness (-0.15 points; 95% CI: -0.26; -0.04). Children within the 10% highest birthweight scored higher on food approach and lower on food avoidant scales, whereas associations in children within the 10% lowest birthweights were absent. Although child BMI partly mediated the association, direct effects of birthweight on appetitive traits remained.
Conclusions:
This study indicates that fetal size, especially being large in utero, is associated with obesity-inducing eating behaviour. Our findings point to intrauterine influences on appetite and satiety, and contribute to understanding the complex aetiology of obesity.
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