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Published on: December 6, 2016
Phenotype of ventilatory control in children with moderate to severe persistent asthma and obstructive sleep apnea
Zhihui He1,2, Keren Armoni Domany2,3, Leonardo Nava-Guerra4
1Department of Pediatric Respiration, Chongqing Ninth People's Hospital, Chongqing, China.
Insights
Asthmatic children with obstructive sleep apnea (OSA) exhibit altered ventilatory control, characterized by increased plant gain and decreased controller gain, correlating with OSA severity and impaired lung function.
Area of Science:
- Pediatric Pulmonology
- Sleep Medicine
- Respiratory Physiology
Background:
- Obstructive sleep apnea (OSA) is common in children with persistent asthma.
- Ventilatory control mechanisms may be altered in these children.
- Understanding these alterations is crucial for managing co-existing conditions.
Purpose of the Study:
- To investigate ventilatory control in asthmatic children with OSA.
- To explore relationships between ventilatory control, OSA severity, and pulmonary function.
Main Methods:
- Study included 134 children (5-18 years) with persistent asthma and snoring.
- Ventilatory control (plant gain, controller gain) assessed using mathematical modeling of sigh-induced ventilatory responses.
- Pulmonary function tests and polysomnography were performed.
Main Results:
- Children with OSA had significantly higher plant gain compared to those without OSA.
- Plant gain negatively correlated with forced expiratory volume in 1 second and FEV1/FVC ratio.
- Plant gain positively correlated with OSA severity.
Conclusions:
- Asthmatic children with OSA and abnormal lung function show increased plant gain and decreased controller gain.
- These findings suggest diminished lung capacity to maintain blood gas homeostasis in this population.
Study Objectives:
To examine the role of ventilatory control in asthmatic children with obstructive sleep apnea (OSA) and the relationships between measures of ventilatory control, OSA severity, and pulmonary function.
Methods:
Five- to 18-year-old children with persistent asthma and nightly snoring were enrolled in the study. Children had physical examination, pulmonary function test, and polysomnography. Loop and controller gains were derived from 5 min segments which included a sigh during nonrapid eye movement sleep by applying a mathematical model that quantifies ventilatory control from the ensuing responses to the sighs. Plant gain was derived from 5 min segments of spontaneous breathing (i.e. without sighs). Nonparametric statistical tests were used for group comparisons. Cluster analysis was performed using Bayesian profile regression.
Results:
One hundred thirty-four children were included in the study, 77 with and 57 without OSA. Plant gain was higher in children with OSA than in those without OSA (p = 0.002). A negative correlation was observed between plant gain and forced expiratory volume in 1 second (p = 0.048) and the ratio of f forced expiratory volume to forced vital capacity (p = 0.02). Plant gain correlated positively with severity of OSA. Cluster analysis demonstrated that children with more severe OSA and abnormal lung function had higher plant gain and a lower controller gain compared with the rest of the population.
Conclusions:
Children with OSA and persistent asthma with abnormal lung function have phenotypic characteristics which consist of diminished capacity of the lungs to maintain blood gas homeostasis reflected by an increase in plant gain and decreased chemoreceptor sensitivity.
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