Early weight gain trajectories and body composition in infancy in infants born very preterm
Victoria A A Beunders1, Jorine A Roelants1, Jessie M Hulst2
1Department of Pediatrics, Division of Neonatology, Erasmus MC-Sophia's Children's Hospital, Rotterdam, The Netherlands.
Insights
Postnatal weight gain in preterm infants impacts body composition. Weight gained at home showed the strongest association with increased fat mass in infancy.
Area of Science:
- Neonatal research
- Pediatric nutrition
- Growth and development
Background:
- Rapid early growth in preterm infants raises concerns about excessive fat mass gain.
- This can influence later cardiometabolic health in infants born preterm.
Purpose of the Study:
- To investigate the association between postnatal weight gain trajectories and infant body composition.
- Focus on infants born very preterm.
Main Methods:
- Studied infants born <30 weeks gestation.
- Assessed weight Z-score trajectories during NICU, level-II hospital, and at home.
- Measured body composition at 2 and 6 months corrected age using air-displacement plethysmography.
Main Results:
- Most infants did not recover initial weight Z-score loss but had body composition within term reference values.
- Weight gain during NICU stay was not linked to fat mass.
- Weight gain at home was most strongly associated with increased fat mass at 2 and 6 months corrected age.
Conclusions:
- Postnatal weight gain patterns in preterm infants are linked to specific body composition parameters.
- Weight gain occurring after hospital discharge (at home) is a key factor influencing fat mass accumulation in infancy.
Background:
Concerns are raised about the influence of rapid growth on excessive fat mass (FM) gain in early life and later cardiometabolic health of infants born preterm.
Objectives:
To study the association between postnatal weight gain trajectories and body composition in infancy in infants born very preterm.
Methods:
In infants born <30 weeks gestation, we evaluated associations between weight Z-score trajectories for three consecutive timeframes (NICU stay, level-II hospital stay and at home) and body composition, measured at 2 and 6 months corrected age by air-displacement plethysmography.
Results:
Of 120 infants included, median gestational age at birth was 27+5 (interquartile range 26+1 ;28+5 ) and birth weight 1015 g (801;1250). The majority of infants did not make up for their initial loss of weight Z-score, but growth and later body composition were within term reference values. Weight gain during NICU stay was not associated with fat mass (absolute, %FM or FM index) in infancy. Weight gain during NICU and level II hospital stay was weakly associated with higher absolute lean mass (LM), but not after adjustment for length (LM index). Weight gain in the level-II hospital was positively associated with fat mass parameters at 2 months but not at 6 months. Strongest associations were found between weight gain at home and body composition (at both time points), especially fat mass.
Conclusions:
Weight gain in different timeframes after preterm birth is associated with distinct parameters of body composition in infancy, with weight gain at home being most strongly related to fat mass.
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