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Published on: June 15, 2020
Relationship of Circadian Blood Pressure Dysregulation With Left Ventricular Structure and Function in Children With
Abigail M Witter1, David F Smith2,3,4,5, Md Tareq Ferdous Khan6
1University of Cincinnati College of Medicine, Cincinnati, Ohio, USA.
Insights
Children with obstructive sleep apnea (OSA) show altered blood pressure rhythms linked to heart changes. Reduced blood pressure dipping in OSA patients indicates diastolic dysfunction, highlighting OSA severity
Area of Science:
- Pediatric Cardiology
- Sleep Medicine
- Cardiovascular Physiology
Background:
- Obstructive sleep apnea (OSA) in children is known to disrupt circadian blood pressure (BP) patterns.
- The relationship between these BP rhythm alterations and cardiac structural and functional changes in pediatric OSA remains incompletely understood.
Purpose of the Study:
- To investigate the association between circadian BP dysregulation and cardiac structural and functional changes in children with OSA.
- To determine if OSA severity influences these associations.
Main Methods:
- A cross-sectional, observational study involving children aged 5-14 years with OSA and healthy controls.
- Participants underwent polysomnography, 24-hour ambulatory BP monitoring, and echocardiography.
- Analysis included regression and mediation to assess relationships between circadian BP parameters (e.g., nocturnal dipping) and cardiac metrics.
Main Results:
- Earlier diastolic BP and BP velocity peaks correlated with impaired left ventricular relaxation and increased left atrial pressure in children with OSA.
- Reduced nocturnal BP dipping was observed in the OSA group and was associated with diastolic dysfunction.
- Obstructive apnea-hypopnea index (OSA severity) was a significant factor in multiple analyses, mediating the link between OSA and left ventricular function.
Conclusions:
- Circadian BP dysregulation, specifically altered timing and reduced nocturnal dipping, is associated with diastolic dysfunction in pediatric OSA.
- The severity of OSA plays a crucial role in these cardiovascular alterations.
- These findings underscore the importance of addressing OSA in children to prevent cardiac complications.
Abstract:
Obstructive sleep apnea (OSA) in children alters circadian blood pressure (BP) rhythms. We hypothesised that circadian BP dysregulation in paediatric OSA is associated with structural and functional cardiac changes. This was a single-centre, cross-sectional, observational study of children 5-14 years with OSA and healthy controls. Participants underwent polysomnography, 24-h ambulatory BP monitoring, and echocardiography. Circadian BP parameters included times arrived at BP and BP velocity peaks and nadirs, and nocturnal BP dipping. Regression and mediation analyses assessed the relationship between circadian BP parameters and cardiac structure and function. There were 100 children with OSA and 94 controls enrolled with mean ± SD obstructive apnea hypopnea index (OAHI) of 8.2 ± 9.0 and 0.3 ± 0.3 respectively. Earlier diastolic BP and BP velocity peaks were associated with decreased left ventricular relaxation (e' velocity) and increased left atrial pressure (E/e' ratio). Diastolic nocturnal dipping was greater in controls than in the OSA group. Lower nocturnal dipping was also associated with decreased left ventricular relaxation and increased left atrial pressure. Systolic BP dipping was negatively associated with isovolumetric relaxation time. OAHI was a significant covariate in many models. Diastolic nocturnal dipping was a significant mediator in the associations between OAHI and left ventricular relaxation. Circadian BP parameters were not significantly associated with pulmonary artery pressure or cardiac geometry. Shifts in circadian BP parameters and reduced BP dipping were associated with diastolic dysfunction in children; OSA severity influenced many associations highlighting the relevance of OSA severity to cardiac function. Trial Registration: ClinicalTrials.gov identifier: NCT00059111, NCT01837459.
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