Clinical, Sleep, and Chronobiological Characteristics of Children with Smith-Magenis Syndrome Under Treatment for

Marion Comajuan1,2, Aurore Guyon1,2, Véronique Raverot3

  • 1Service d'Epileptologie Clinique, des Troubles du Sommeil et de Neurologie Fonctionnelle de L'enfant, Hospices Civiles de Lyon, 69677 Bron, France.

PubMed

Insights

Children with Smith-Magenis Syndrome (SMS) experience persistent sleep issues and advanced circadian rhythms despite treatments like melatonin and beta-blockers. Melatonin offers some sleep benefits but may accumulate during the day, while beta-blockers might negatively impact sleep.

Area of Science:

  • Neuroscience
  • Pediatrics
  • Chronobiology

Background:

  • Smith-Magenis Syndrome (SMS) is a rare neurodevelopmental disorder.
  • Key features include severe sleep disturbances and advanced melatonin rhythm.
  • Current treatments for SMS sleep issues lack pediatric evaluation.

Purpose of the Study:

  • Characterize clinical, sleep, and chronobiological profiles in children with SMS.
  • Evaluate the effects of melatonin and beta-blockers on sleep and circadian rhythms.
  • Assess treatment efficacy and potential side effects in pediatric SMS patients.

Main Methods:

  • Prospective, single-center study of 20 genetically confirmed SMS children (5-13 years).
  • 15-day home actimetry, 48-hour hospitalization with polysomnography (PSG), and salivary melatonin/cortisol profiling.
  • Discontinuation of melatonin and psychostimulants 36 hours prior to hospitalization.

Main Results:

  • 95% of children used melatonin; 20% used beta-blockers, yet 90% reported insomnia.
  • Melatonin improved nocturnal awakenings and wake-up time but had minimal impact on total sleep.
  • Persistent high daytime melatonin levels suggested potential accumulation; beta-blockers showed mixed results on sleep and melatonin secretion.

Conclusions:

  • Children with SMS exhibit persistent sleep difficulties and advanced circadian phase despite treatment.
  • Exogenous melatonin offers partial sleep benefits but may accumulate, while beta-blockers may adversely affect sleep.
  • Further research is needed to optimize SMS sleep and circadian rhythm management.

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