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Published on: August 24, 2019
Functional residual capacity and passive compliance measurements after antenatal steroid therapy in preterm infants
C McEvoy1, S Bowling, K Williamson
1Department of Pediatrics, Division of Neonatology, Sacred Heart Hospital, University of Florida, Pensacola, Florida, USA. mcevoyc@ohsu.edu
Insights
Antenatal corticosteroids significantly improve lung function in preterm infants. Treated infants showed higher functional residual capacity (FRC) and respiratory compliance, potentially reducing respiratory distress syndrome risk.
Area of Science:
- Neonatology
- Pulmonology
- Pharmacology
Background:
- Antenatal corticosteroids are known to enhance lung maturation in preterm animal models.
- Previous studies have not fully investigated the impact of antenatal steroids on lung volumes in preterm infants.
Purpose of the Study:
- To compare functional residual capacity (FRC) and respiratory mechanics in preterm infants treated with antenatal steroids versus untreated infants.
- To test the hypothesis that antenatal steroids increase FRC in preterm infants.
Main Methods:
- Prospective study of 20 treated and 20 matched untreated preterm infants (25-34 weeks gestation).
- Functional residual capacity (FRC) measured using nitrogen washout.
- Passive respiratory mechanics assessed with single-breath occlusion technique.
Main Results:
- Steroid-treated infants had significantly higher FRC (29.5 vs. 19.3 mL/kg; P < 0.001).
- Passive respiratory system compliance was also significantly increased in treated infants (P < 0.05).
Conclusions:
- A full course of antenatal steroids significantly improves FRC and passive respiratory system compliance in preterm infants.
- These pulmonary function improvements may contribute to a reduced risk of respiratory distress syndrome.
Abstract:
Studies in preterm animal models have shown that antenatal corticosteroids enhance lung maturation by improving a variety of physiologic variables, including lung volumes. Changes in lung volume of preterm infants treated with a full course of antenatal steroids have not been investigated. We hypothesized that a full course of antenatal steroids would significantly increase functional residual capacity (FRC) in treated vs. untreated preterm infants. The objective of our study was to compare FRC and respiratory mechanics in steroid treated vs. untreated preterm infants. FRC and passive respiratory mechanics were prospectively studied within 36 hr of life in 20 infants (25-34 weeks of gestation) who had received a full course of antenatal steroids and in 20 matched untreated preterm infants. FRC was measured with the nitrogen washout method, and respiratory mechanics with the single-breath occlusion technique. Preterm infants who received steroids (n = 20; mean birth weight = 1,230 g; gestational age = 28.8 weeks) had a significantly higher FRC (29.5 vs. 19.3 mL/kg; P < 0.001) than untreated infants (n = 20; birth weight = 1,202 g; gestational age = 28.5 weeks). Passive respiratory system compliance was also increased in treated vs. untreated infants (P < 0.05). In conclusion, FRC and passive respiratory system compliance were significantly improved in preterm infants (25-34 weeks gestation) treated with a full course of antenatal steroids, compared to matched untreated infants. Although this study was not randomized, it confirms that antenatal steroids have important effects on pulmonary function that may contribute to a decreased risk of respiratory distress syndrome in treated preterm infants.
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