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Updated: Sep 21, 2025

Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
Postnatal Serum Total Thyroxine Level Associated with Short- and Long-Term Anthropometric Outcomes in Very Preterm
Yen-Ju Chen1,2, Wei-Ying Chu3, Yu-Wen Pan1,2
1Department of Pediatrics, National Cheng Kung University Hospital, College of Medicine, National Cheng-Kung University, Tainan 704302, Taiwan.
Insights
Postnatal thyroxine (TT4) levels in very preterm infants (VPIs) correlate with short-term weight gain. Higher TT4 levels are linked to reduced overweight risk at 24 months corrected age, suggesting TT4
Area of Science:
- Neonatology
- Endocrinology
- Pediatric Growth
Background:
- Very preterm infants (VPIs) often have low thyroxine (T4) levels despite normal thyroid-stimulating hormone (TSH).
- The role of postnatal T4 supplementation in VPIs with transiently low T4 and normal TSH remains debated.
- Limited research exists on the association between postnatal T4 concentrations and VPI growth outcomes.
Purpose of the Study:
- To investigate the association between postnatal total T4 (TT4) serum concentration and short- and long-term growth outcomes in VPIs.
- To clarify the impact of early-life thyroxine levels on infant development.
- To inform clinical decisions regarding thyroid hormone management in VPIs.
Main Methods:
- Retrospective cohort study of 334 surviving VPIs born between August 2007 and July 2016.
- Exposure: Postnatal TT4 concentration at 1 month of age.
- Outcomes: Body weight changes over 28 days and anthropometric measurements at 24 months corrected age; exclusion of infants with hormonal replacement, severe brain injury, congenital anomalies, or cerebral palsy.
Main Results:
- Postnatal TT4 concentration showed a significant association with positive body weight increments (25.7 g per 1 μg/dL) and body weight z-score (0.039 per 1 μg/dL) within 28 days.
- Higher postnatal TT4 levels were associated with lower body mass index (-0.136) and BMI z-score (-0.097) at 24 months corrected age.
- Infants with TT4 > 6.4 ug/dL had significantly lower odds of being overweight (OR: 0.365).
Conclusions:
- Postnatal thyroxine concentration is positively associated with short-term body weight gain in VPIs.
- Higher early postnatal TT4 levels are linked to reduced risk of overweight status in later childhood.
- Findings suggest a role for monitoring and potentially managing TT4 levels in VPIs for optimal growth trajectories.
Abstract:
Thyroxine (T4) importantly regulates the growth of newborns. Compared to fetuses with equivalent gestational ages, very preterm infants (VPIs) often experience relatively low thyroxinemia, with a normal thyroid-stimulating hormone (TSH) concentration < 10 μIU/mL. However, there is continued debate regarding postnatal thyroxine supplementation for VPIs with normal TSH and transitionally low thyroxinemia. Little research has explored the role of the postnatal total T4 (TT4) serum concentration on the growth of VPIs. In this study, we aim to clarify whether the postnatal thyroxine concentration is associated with the short- and long-term growth outcomes of VPIs. A total of 334 surviving VPIs in our previously reported cohort, born in the period August 2007−July 2016, were enrolled. The exposure variable was the postnatal TT4 concentration at 1 month old. The primary outcomes were body weight increments over 28 days after the screening and anthropometric outcomes at the corrected age of 24 months old. Infants with any hormonal replacement, severe brain injury, congenital anomaly, or cerebral palsy were excluded. In total, 290 (86.8%) VPIs were included for analysis. In the 28 days after thyroid function screening, the TT4 concentration was found to have a significant association with positive increments in body weight (mean increment: 25.7 g per 1 μg/dL; p < 0.001) and a positive body weight z-score (mean increment: 0.039 per 1 μg/dL; p = 0.037), determined by generalized estimating equation analysis. At the corrected age of 24 months old, a higher postnatal TT4 concentration was associated with a lower body mass index (mean coefficient: −0.136; 95% CI: −0.231 to −0.041, p = 0.005) and lower body mass index z-score (mean coefficient: −0.097; 95% CI: −0.170 to −0.024, p = 0.009). Infants with a TT4 concentration > 6.4 ug/dL had significantly lower odds of overweight status (odds ratio: 0.365; 95% CI: 0.177 to 0.754, p = 0.006). We conclude that the postnatal TT4 concentration is associated with a positive increment in body weight in the short term. At the same time, the postnatal TT4 concentration is associated with lower odds of overweight status after long-term follow-up.
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