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

Pediatric Research
|July 22, 2006
PubMed

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.