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Adenotonsillectomy-related changes in systemic inflammation among children with obstructive sleep apnea
Chung-Guei Huang1,2,3, Jen-Fu Hsu4,5, Li-Pang Chuang5,6,7
1Department of Laboratory Medicine, Linkou Chang Gung Memorial Hospital, Taoyuan, Taiwan, ROC.
Insights
Adenotonsillectomy improves pediatric obstructive sleep apnea (OSA) and inflammation. Interleukin-8 (IL-8) and C-C chemokine ligand 5 (CCL5) mediate the surgery's effects on OSA severity by influencing tonsil size.
Area of Science:
- Pediatric Sleep Medicine
- Otolaryngology
- Immunology
Background:
- Adenotonsillar hypertrophy is a primary cause of pediatric obstructive sleep apnea (OSA).
- Adenotonsillectomy is effective in reducing OSA and systemic inflammation.
- The role of systemic inflammation in mediating adenotonsillectomy's effects on OSA remains unclear.
Purpose of the Study:
- To investigate the relationship between anatomical changes, OSA severity, and systemic inflammation markers after adenotonsillectomy in children.
- To determine if systemic inflammation influences the outcomes of adenotonsillectomy for pediatric OSA.
Main Methods:
- A study involving 74 children with OSA undergoing adenotonsillectomy.
- Analysis of changes in tonsil size, OSA-18 scores, polysomnographic parameters, and 27 systemic inflammatory biomarkers.
- Statistical analysis to assess associations and mediation effects.
Main Results:
- Adenotonsillectomy significantly improved OSA-18 scores, polysomnography results, and 20 of 27 inflammatory biomarkers.
- Significant associations were found between tonsil size changes and AHI, IL-8, and IL-10.
- Interleukin-8 (IL-8) and C-C chemokine ligand 5 (CCL5) levels mediated the relationship between tonsil size reduction and AHI improvement.
Conclusions:
- Systemic inflammation is both a complication of OSA and a mediator of surgical outcomes.
- Targeting IL-8 and CCL5 may offer new therapeutic strategies for reducing tonsil size and OSA severity.
Background:
Adenotonsillar hypertrophy is the most common cause of pediatric obstructive sleep apnea (OSA). Although adenotonsillectomy considerably reduces OSA and systemic inflammation, whether and how systemic inflammation influences the effects of adenotonsillectomy on OSA has yet to be determined.
Methods:
This study investigated the associations between changes in anatomical variables, % changes in subjective OSA-18 questionnaire scores, % changes in 11 polysomnographic parameters, and % changes in 27 systemic inflammatory biomarkers in 74 children with OSA.
Results:
Fifty-six (75.6%) boys and 18 (24.4%) girls with the mean age of 7.4 ± 2.2 years and apnea-hypopnea index (AHI) of 14.2 ± 15.9 events/h were included in the statistical analysis. The mean period between before and after adenotonsillectomy was 5.6 ± 2.6 months. After adenotonsillectomy, the OSA-18 score, eight of 11 polysomnographic parameters, and 20 of 27 inflammatory biomarkers significantly improved (all p < 0.005). Notably, there were significant associations between change in tonsil size and % change in AHI ( r = 0.23), change in tonsil size and % changes in interleukin-8 (IL-8) ( r = 0.34), change in tonsil size and % change in and IL-10 ( r = -0.36), % change in IL-8 and % change in C-C chemokine ligand 5 (CCL5) ( r = 0.30), and % change in CCL5 and % change in AHI ( r = 0.38) (all p < 0.005). Interestingly, % change in IL-8 and % change in CCL5 serially mediated the relationship between change in tonsil size and % change in AHI (total effect: β = 16.672, standard error = 8.274, p = 0.048).
Conclusion:
These preliminary findings suggest that systemic inflammation is not only a complication of OSA but also that it mediates the surgical effects, which may open avenues for potential interventions to reduce tonsil size and OSA severity through the regulation of IL-8 and CCL5.
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