Size at birth, infant growth, and age at pubertal development in boys and girls

Julie Jessen Hvidt1, Nis Brix1, Andreas Ernst1

  • 1Department of Public Health, Section for Epidemiology, Aarhus University, Aarhus, Denmark.

Clinical Epidemiology
|October 2, 2019
PubMed

Insights

Small size at birth and rapid infant growth are linked to earlier puberty, especially in girls. This study examined birth size and infant growth

Area of Science:

  • Pediatric endocrinology
  • Human growth and development
  • Reproductive health

Background:

  • Birth size and infant growth are critical determinants of childhood development.
  • Pubertal timing is influenced by various factors, including genetics and environment.
  • Understanding these influences is crucial for assessing normal development and identifying potential health risks.

Purpose of the Study:

  • To investigate the association between birth size and infant growth patterns with the age of pubertal development indicators in boys and girls.
  • To test the hypothesis that restricted fetal growth and accelerated infant growth lead to earlier pubertal timing.

Main Methods:

  • A large cohort of 15,822 boys and girls provided longitudinal data on pubertal development via questionnaires.
  • Birth weight and gestational age were used to calculate birth weight Z-scores.
  • Infant weight Z-score changes were analyzed, and associations with pubertal timing were estimated using regression models.

Main Results:

  • Girls born small-for-gestational age (SGA) experienced earlier puberty onset for most markers compared to appropriate-for-gestational age (AGA) girls.
  • Girls born large-for-gestational age (LGA) showed delayed pubertal markers compared to AGA girls.
  • Rapid infant growth (increased weight Z-score) was associated with earlier pubertal development in both sexes.

Conclusions:

  • Small size at birth and accelerated infant growth are significantly associated with earlier pubertal age.
  • These associations were most pronounced and consistent in girls.
  • Findings highlight the role of early-life growth trajectories in pubertal timing.
Abstract

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