Stimulant medication effects on growth and bone age in children with attention-deficit/hyperactivity disorder: a

Alison S Poulton1, Quoc Bui, Elaine Melzer

  • 1aSydney Medical School Nepean, University of Sydney bDepartment of Medical Imaging, Nepean Blue Mountains Local Health District, Nepean Hospital, Penrith, New South Wales, Australia.

Insights

Stimulant medications for attention-deficit/hyperactivity disorder (ADHD) slow growth but do not delay bone maturation in children. Baseline leptin levels, not medication dose, predicted maturation rate.

Area of Science:

  • Pediatric Endocrinology
  • Neurodevelopmental Disorders

Background:

  • Stimulant medications are standard ADHD treatments.
  • Known side effects include transient weight loss and growth deceleration.
  • Impact on physical maturation remains unclear.

Purpose of the Study:

  • To investigate the effect of stimulant medication on physical maturation in children with ADHD.
  • To compare bone age progression between ADHD patients and healthy siblings over three years.

Main Methods:

  • Longitudinal study of children with ADHD (patients) and healthy siblings (controls) over 3 years.
  • Blind assessment of bone age using Tanner and Whitehouse version 3 by two radiologists.
  • Titration of dexamphetamine or methylphenidate as clinically indicated.
  • Serial biochemistry and dual-energy X-ray absorptiometry in a subgroup.

Main Results:

  • Patients exhibited slower growth (height and weight) compared to controls (P<0.005).
  • No significant difference in bone age progression (RUS score) between groups (P=0.27).
  • Significant reduction in body fat and leptin levels observed in patients on medication (P<0.001).
  • Height z-score changes were influenced by medication dose (P=0.024).
  • Maturation rate was predicted by baseline leptin, not medication dose (P=0.035).

Conclusions:

  • Stimulant medication for ADHD does not appear to delay physical maturation.
  • Slower growth rates in treated children are not indicative of delayed bone age.
  • Baseline leptin levels may play a role in predicting maturation rate.

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