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Differentiation and Imaging of Brown Adipocytes from the Stromal Vascular Fraction of Interscapular Adipose Tissue from Newborn Mice
Published on: February 3, 2023
Determinants of adiposity during preweaning postnatal growth in appropriately grown and growth-restricted term
Neena Modi1, E Louise Thomas, Tracey A M Harrington
1Faculty of Medicine, Imperial College London, Chelsea & Westminster Hospital, London SW10 9NH, UK. n.modi@imperial.ac.uk
Insights
Infant adiposity increased with accelerated linear growth, regardless of growth status. Exclusively breast-fed growth-restricted infants showed the highest adiposity at 6 weeks.
Area of Science:
- Pediatric endocrinology
- Growth and development
- Body composition analysis
Background:
- Adipose tissue distribution and quantity are key indicators of health risks in children and adults.
- Intrauterine growth restriction and rapid postnatal growth are associated with increased morbidity.
- Infant diet and growth patterns influence long-term health outcomes.
Purpose of the Study:
- To investigate adipose tissue content and distribution in infants.
- To correlate these with intrauterine growth restriction, postnatal growth, and infant diet.
- To understand the role of adipose tissue in catch-up growth.
Main Methods:
- Magnetic resonance imaging (MRI) was used to measure adipose tissue at 6 weeks of age.
- Infants were categorized as appropriately grown for gestational age (AGA) or growth-restricted (GR).
- Measurements included weight, length, head circumference, and adipose tissue at birth and 6 weeks.
Main Results:
- Growth-restricted (GR) infants achieved catch-up head growth and adiposity by 6 weeks, but not complete catch-up in length and weight.
- Accelerated linear growth, irrespective of AGA/GR status, significantly increased adiposity (r = 0.57).
- Exclusively breast-fed GR infants exhibited the highest adiposity (33.5%) at 6 weeks. Reduced birth adiposity predicted accelerated postnatal head growth.
Conclusions:
- Increased adiposity is closely linked to accelerated linear growth in infants.
- Low birth adiposity may promote head growth during catch-up.
- Adipose tissue appears to play a role in the signaling mechanisms of catch-up growth.
Abstract:
The distribution and quantity of adipose tissue are markers of morbidity risk in children and adults. Poor intrauterine growth and accelerated postnatal growth are believed to add to these risks. The aim of this study was to assess adipose tissue content and distribution at birth and 6 wk in relation to intrauterine growth restriction, postnatal growth, and infant diet. We measured weight, length, and head circumference and adipose content and distribution using magnetic resonance imaging at 6 wk of age in appropriately grown for gestational age (AGA) and growth-restricted (GR) infants and compared this with birth data. By 6 wk, GR infants showed complete catch-up in comparison to AGA infants in relation to head growth and adiposity. Catch-up in length and weight was not complete. Accelerated linear growth, but not accelerated weight gain, was associated with a highly significant increase in adiposity (r = 0.57, p = 0.001) regardless of AGA/GR status. The highest adiposity at 6 wk, allowing for baseline variables and linear growth, was seen in exclusively breast-fed GR infants (mean, 95% confidence interval: 33.5%, 29.51-37.5). Adipose tissue distribution remained constant and was unrelated to growth and diet. Reduced birth adiposity (B = -0.185, p = 0.003), but not low birth head size (B = 0.32, p = 0.093), was a significant predictor of accelerated postnatal head growth (R(2) = 0.29, adjusted R(2) = 0.23, p = 0.012). Increasing adiposity appears to be an inevitable accompaniment of accelerated linear growth. Low total adipose tissue quantity at birth appears to direct nutrition toward head growth. Adipose tissue may be involved in the signaling of catch-up growth.
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