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Sleep Respiratory Disturbances in Girls with Rett Syndrome
Xinyan Zhang1, Marcel Smits2, Leopold Curfs3
1NeuroDiderot-INSERM, Université de Paris, 75019 Paris, France.
Insights
Disordered breathing during sleep, specifically obstructive sleep apnea, is common in Rett Syndrome (RTT) and occurs independently of clinical features. This condition leads to hypoxemia throughout sleep in RTT patients.
Area of Science:
- Neurology
- Sleep Medicine
- Genetics
Background:
- Rett Syndrome (RTT) is a rare neurodevelopmental disorder.
- Disordered breathing during wakefulness is a known feature of RTT.
- Breathing patterns during sleep in RTT patients are not well understood, with conflicting reports.
Purpose of the Study:
- To investigate sleep-disordered breathing (SDB) in Rett Syndrome.
- To explore the relationship between SDB and clinical features, genetics, age, and sleep phase in RTT.
- To determine if SDB is an independent clinical feature in RTT.
Main Methods:
- Overnight polysomnography (PSG) was conducted on 11 female RTT subjects.
- Sleep macrostructure, respiratory indexes (AHI), and oxygen saturation (SpO2) were analyzed.
- Statistical analyses included comparisons between groups and correlation with age and clinical features.
Main Results:
- Over 70% of RTT subjects exhibited obstructive sleep apnea (OSA).
- OSA was present in both REM and NREM sleep and was unrelated to clinical features or age.
- Significant hypoxemia was observed throughout nocturnal sleep in RTT patients.
Conclusions:
- Disordered breathing during sleep, particularly OSA, is prevalent in RTT.
- Sleep-disordered breathing appears to be an independent clinical feature in Rett Syndrome.
- Hypoxemia during sleep is a significant concern in RTT patients.
Abstract:
Individuals with Rett Syndrome (RTT), a rare neurodevelopmental disorder, present disordered breathing during wakefulness. Whilst findings on breathing during sleep are contradictory, the relation between sleep breathing and their clinical features, genetic characteristics, age, and sleep phase is rarely investigated, which is the objective of this study. Overnight polysomnography (PSG) was performed. Sleep macrostructure parameters were compared between the RTT subjects with and without sleep-disordered breathing (SDB). The association between the apnea-hypopnea index (AHI) with age at PSG was tested. Particularly for RTT subjects with SDB, the respiratory indexes in REM and NREM sleep were compared. Stratified analyses per clinical characteristics, genetic characteristics, and clinical features' severity were performed. Non-parametric statistics were applied. A sample of 11 female RTT subjects, aged 8.69 ± 5.29 years with ten confirmed with MECP2 mutations, were studied. The average AHI was 3.94 ± 1.19/h TST, of which eight (72.73%) had obstructive sleep apnea, i.e., six in 1/h TST ≤ AHI ≤ 5/h TST, and two in AHI > 5/h TST. The mean SpO2% was 81.00 ± 35.15%. The AHI was not significantly correlated with their age at PSG (rs = -0.15, p = 0.67). Sleep macrostructure in SDB-absent and SDB-present groups was not different. Respiratory indexes in those with obstructive sleep apnea showed no difference between REM and NREM sleep nor any of the strata. In our clinical sample, more than half of the RTT subjects with MECP2 mutations had obstructive sleep apnea in both NREM and REM sleep which was unrelated to their clinical features. Our results also indicated hypoxemia throughout nocturnal sleep in RTT. To conclude, our results suggest that disordered breathing during sleep is prevalently present in RTT as an independent clinical feature.
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