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Published on: April 13, 2010
Determinants of bronchial responsiveness at school age in prematurely born children
K Nikolajev1, K Heinonen, H Koskela
1Department of Pediatrics, University of Kuopio, Kuopio, Finland. kari.nikolajev@kuh.fi
Insights
Intrauterine growth retardation (IUGR) and prematurity do not predict abnormal bronchial responsiveness to cold air challenges in children. Respiratory infections and ENT surgeries were linked to increased cold air responsiveness.
Area of Science:
- Pediatric Pulmonology
- Respiratory Physiology
Background:
- Childhood asthma prevalence is rising, necessitating research into early life factors influencing bronchial hyperresponsiveness.
- Multiple pregnancies are associated with higher rates of intrauterine growth retardation (IUGR) and prematurity, which may impact respiratory health.
- Isocapnic hyperventilation of cold air (IHCA) is a validated method for assessing bronchial responsiveness.
Purpose of the Study:
- To investigate the association between intrauterine growth retardation (IUGR) and bronchial responsiveness to cold air in children.
- To explore the influence of perinatal factors, respiratory infections, and ear, nose, and throat (ENT) surgeries on cold air responsiveness.
Main Methods:
- A cohort of 63 children born to multiple pregnancies, aged 8-15 years, underwent bronchial challenge testing using IHCA.
- Children were categorized based on birth weight (IUGR vs. appropriate for gestational age - AGA) and IHCA test results (responders vs. non-responders).
- Perinatal data, history of respiratory infections, and ENT surgeries were collected and analyzed for correlations with bronchial responsiveness.
Main Results:
- Overall, 25% of children were classified as cold air responders, exhibiting a significant fall in FEV(1) after IHCA.
- No significant differences in IHCA responsiveness were found between children with IUGR and AGA infants.
- However, a history of respiratory infections and prior ENT surgeries were significantly associated with increased cold air responsiveness.
Conclusions:
- Intrauterine growth retardation and prematurity are not independently associated with abnormal bronchial responsiveness to cold air in children.
- Post-neonatal respiratory infections and a history of ENT surgeries may be linked to heightened bronchial responsiveness in this pediatric cohort.
- Further research is warranted to elucidate the mechanisms underlying the association between infections, ENT procedures, and cold air responsiveness.
Abstract:
The bronchial challenge test using isocapnic hyperventilation of cold air (IHCA) was used to evaluate bronchial responsiveness in 63 offspring of multiple pregnancies when they were 8-15 years old. At birth, 27 (43%) children had had intrauterine growth retardation (IUGR, birth weight <-2 SD, or birth weight difference between twin pairs >1.3 SD). The median birth weight was 2,050 g (range, 800-3, 150), and the median gestational age was 35 weeks (range, 28-38). None of the children had asthma or suffered from asthma-like symptoms. In the interpretation of the IHCA test, a fall of 9% or more in the forced expiratory volume in 1 sec (FEV(1)) was considered as abnormal, and these children were classified as "cold air responders." The number of responders was 16 (25%); their baseline FEV(1)/forced vital capacity ratio (FEV(1)/FVC) and forced expiratory flow between 25-75% FVC (FEF(25-75)), but not FEV(1) were significantly lower than the corresponding values in nonresponders. No differences were found in perinatal or neonatal factors between responders or nonresponders. Eight (30%) of the 27 IUGR and 8 (22%) of the 36 appropriate for gestational age (AGA) children were IHCA responders. In particular, IUGR was not correlated with maximal FEV(1) falls following the IHCA test. Respiratory infections after the neonatal period were equally common in IUGR and AGA children; but infections were associated with subsequent IHCA responsiveness. Adenoidectomy, tonsillectomy, and/or myringotomy had been performed significantly more often in the responders than in the nonresponders. At least one of the above invasive procedures had been performed in 20 (32%) of the children; this group was termed the "ENT (ear, nose, throat) surgery group." Fifty-six percent of the responders, but only 26% of the nonresponders, belonged to the ENT surgery group (P = 0.02). We conclude that intrauterine growth retardation or prematurity is not associated with abnormal cold air responsiveness in the IHCA test.
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