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Updated: Jul 10, 2026

Drug-Induced Sleep Endoscopy (DISE) with Target Controlled Infusion (TCI) and Bispectral Analysis in Obstructive Sleep Apnea
Published on: December 6, 2016
Obstructive sleep apnea and endothelial function in school-aged nonobese children: effect of adenotonsillectomy
David Gozal1, Leila Kheirandish-Gozal, Laura D Serpero
1Kosair Children's Hospital Research Institute, University of Louisville School of Medicine, 570 S Preston St, Suite 204, Louisville, KY 40202, USA. david.gozal@louisville.edu
Insights
Pediatric obstructive sleep apnea (OSA) causes endothelial dysfunction, which improves after treatment. This improvement is particularly effective in children without a family history of cardiovascular disease.
Area of Science:
- Pediatric Cardiology
- Sleep Medicine
- Vascular Biology
Background:
- Obstructive sleep apnea (OSA) in children is linked to cardiovascular issues like hypertension.
- The presence and reversibility of endothelial dysfunction in pediatric OSA are not well understood.
Purpose of the Study:
- To investigate endothelial function in children with OSA.
- To determine if adenotonsillectomy reverses endothelial dysfunction in pediatric OSA.
Main Methods:
- Assessed endothelial function using cuff-occlusion tests in children with OSA and controls.
- Measured plasma levels of soluble CD40 ligand, ADMA, and nitrotyrosine.
- Repeated assessments 4-6 months post-adenotonsillectomy.
Main Results:
- Children with OSA exhibited blunted postocclusive hyperemia, indicating impaired endothelial function.
- Adenotonsillectomy normalized endothelial function in most OSA patients.
- Higher soluble CD40 ligand levels in OSA children decreased post-treatment, correlating with improved hyperemia.
- No significant differences in ADMA or nitrotyrosine levels were observed between groups.
Conclusions:
- Endothelial dysfunction is present in pediatric OSA and is reversible with treatment.
- Treatment effectiveness is better in children without a family history of cardiovascular disease.
- Soluble CD40 ligand levels may serve as a biomarker for endothelial dysfunction and treatment response in pediatric OSA.
Background:
Obstructive sleep apnea (OSA) in children is associated with cardiovascular morbidity such as systemic and pulmonary hypertension. However, it remains unclear whether endothelial dysfunction occurs in pediatric OSA and whether it is reversible on effective treatment of OSA.
Methods And Results:
Consecutive nonobese children (aged 6 to 11 years) who were diagnosed with OSA after overnight polysomnography and control children matched on the basis of age, gender, ethnicity, and body mass index underwent blood draw the next morning for soluble CD40 ligand, asymmetric dimethylarginine (ADMA), and nitrotyrosine levels, as well as 2 iterations of 60-second cuff-occlusion tests for assessment of endothelial function. These tests were repeated 4 to 6 months after adenotonsillectomy. OSA children showed blunted reperfusion kinetics after release of occlusion, which completely normalized in 20 of 26 patients after adenotonsillectomy. All 6 children in whom no improvements occurred had a strong family history of cardiovascular disease (versus 2 of the remaining 20 patients; P<0.04). Plasma nitrotyrosine and ADMA levels were similar in OSA and control children; however, soluble CD40 ligand levels were higher in OSA children and were reduced after treatment, particularly in those with normalized hyperemic responses.
Conclusions:
Postocclusive hyperemia is consistently blunted in children with OSA, and such altered endothelial function is reversible 4 to 6 months after treatment, particularly if a family history of cardiovascular disease is not present. Although no evidence for either nitric oxide-dependent oxidative/nitrosative stress or for the increased presence of the circulating nitric oxide synthase inhibitor ADMA was found in children with OSA, soluble CD40 ligand levels were increased in OSA and reflected the changes in endothelial function after treatment.
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