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Association of adenotonsillectomy with asthma outcomes in children: a longitudinal database analysis
Rakesh Bhattacharjee1, Beatrix H Choi2, David Gozal1
1Sections of Pediatric Pulmonology and Pediatric Sleep Medicine, Department of Pediatrics, University of Chicago, Chicago, Illinois, United States of America.
Insights
Adenotonsillectomy (AT) significantly improved asthma outcomes in children with obstructive sleep apnea (OSA). This common procedure reduced asthma exacerbations, emergency visits, and hospitalizations, suggesting a link between airway inflammation and asthma control.
Area of Science:
- Pediatric Pulmonology
- Sleep Medicine
- Otolaryngology
Background:
- Childhood asthma and obstructive sleep apnea (OSA) share common pathways of airway inflammation.
- Adenotonsillectomy (AT) is a primary treatment for pediatric OSA, but its effect on asthma is not well-established.
Purpose of the Study:
- To investigate the association between AT and asthma outcomes in children.
- To determine if AT reduces the need for asthma medications and healthcare utilization.
Main Methods:
- Retrospective analysis of the 2003-2010 MarketScan database.
- Comparison of asthma outcomes in 13,506 children with asthma who underwent AT versus 27,012 matched controls without AT.
- Assessment of asthma exacerbations, medication use, emergency room visits, and hospitalizations before and after AT.
Main Results:
- AT was associated with significant reductions in acute asthma exacerbations (30.2%), acute status asthmaticus (37.9%), asthma-related emergency room visits (25.6%), and asthma-related hospitalizations (35.8%).
- AT led to significant decreases in prescriptions for bronchodilators, inhaled corticosteroids, leukotriene receptor antagonists, and systemic corticosteroids.
- No significant improvements were observed in the control group without AT.
Conclusions:
- Adenotonsillectomy is linked to substantial improvements in asthma control and reduced medication needs in children.
- These findings suggest that addressing adenotonsillar tissue morbidity via AT may be a key strategy for managing childhood asthma.
- Further validation through prospective clinical trials is warranted.
Background:
Childhood asthma and obstructive sleep apnea (OSA), both disorders of airway inflammation, were associated in recent observational studies. Although childhood OSA is effectively treated by adenotonsillectomy (AT), it remains unclear whether AT also improves childhood asthma. We hypothesized that AT, the first line of therapy for childhood OSA, would be associated with improved asthma outcomes and would reduce the usage of asthma therapies in children.
Methods And Findings:
Using the 2003-2010 MarketScan database, we identified 13,506 children with asthma in the United States who underwent AT. Asthma outcomes during 1 y preceding AT were compared to those during 1 y following AT. In addition, 27,012 age-, sex-, and geographically matched children with asthma without AT were included to examine asthma outcomes among children without known adenotonsillar tissue morbidity. Primary outcomes included the occurrence of a diagnostic code for acute asthma exacerbation (AAE) or acute status asthmaticus (ASA). Secondary outcomes included temporal changes in asthma medication prescriptions, the frequency of asthma-related emergency room visits (ARERs), and asthma-related hospitalizations (ARHs). Comparing the year following AT to the year prior, AT was associated with significant reductions in AAE (30.2%; 95% CI: 25.6%-34.3%; p<0.0001), ASA (37.9%; 95% CI: 29.2%-45.6%; p<0.0001), ARERs (25.6%; 95% CI: 16.9%-33.3%; p<0.0001), and ARHs (35.8%; 95% CI: 19.6%-48.7%; p = 0.02). Moreover, AT was associated with significant reductions in most asthma prescription refills, including bronchodilators (16.7%; 95% CI: 16.1%-17.3%; p<0.001), inhaled corticosteroids (21.5%; 95% CI: 20.7%-22.3%; p<0.001), leukotriene receptor antagonists (13.4%; 95% CI: 12.9%-14.0%; p<0.001), and systemic corticosteroids (23.7%; 95% CI: 20.9%-26.5%; p<0.001). In contrast, there were no significant reductions in these outcomes in children with asthma who did not undergo AT over an overlapping follow-up period. Limitations of the MarketScan database include lack of information on race and obesity status. Also, the MarketScan database does not include information on children with public health insurance (i.e., Medicaid) or uninsured children.
Conclusions:
In a very large sample of privately insured children, AT was associated with significant improvements in several asthma outcomes. Contingent on validation through prospectively designed clinical trials, this study supports the premise that detection and treatment of adenotonsillar tissue morbidity may serve as an important strategy for improving asthma control. Please see later in the article for the Editors' Summary.
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