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Published on: April 7, 2020
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.
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.
Abstract:
Background/Objectives: Smith-Magenis Syndrome (SMS) is a rare neurodevelopmental disorder characterized by severe sleep disturbances and an advanced melatonin rhythm. Current treatments, mainly exogenous melatonin and β-blockers, have not been evaluated in children. This study aimed to characterize the clinical, sleep, and chronobiological profiles of children with SMS under treatment and to assess the effects of melatonin and β-blockers. Methods: In this prospective, single-center study, 20 children with genetically confirmed SMS (aged 5-13 years; 55% female) underwent 15-day home actimetry and 48 h hospitalization, during which questionnaires, polysomnography (PSG), and salivary melatonin/cortisol profiling were performed. Melatonin and psychostimulants were discontinued 36 h before hospitalization. Results: Overall, 95% of children received melatonin and 20% β-blockers. Despite treatment, insomnia was reported in 90%, excessive daytime sleepiness in 65%, and learning problems in 90%. On actimetry, melatonin improved the mean nocturnal awakening duration (1.4 vs. 2.3 min, p = 0.040), wake-up time (06:50 vs. 06:11, p = 0.004), and longest continuous sleep episode (398 vs. 317 min, p = 0.040), but had little effect on the total sleep time, efficiency, and midpoint of sleep. Very high daytime salivary melatonin persisted (median peak 169.50 pg/mL) despite the last exogenous melatonin intake being more than 48 h prior to sampling, suggesting possible iatrogenic accumulation. The median peak in melatonin occurred at 11:57 and that in cortisol at 08:22. In children with β-blockers, there was a tendency toward an earlier melatonin peak but also toward delayed sleep onset, increased nocturnal awakenings, and reduced total sleep. Conclusions: Children with SMS showed persistent sleep difficulties and an advanced circadian phase despite sleep treatments. Exogenous melatonin provides partial benefit but may lead to daytime accumulation, while β-blockers may have adverse sleep effects despite beneficial effects on melatonin peak secretion, warranting further study.
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