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Updated: Jun 29, 2025

A Minimally Invasive Method for Intratracheal Instillation of Drugs in Neonatal Rodents to Treat Lung Disease
Published on: August 4, 2021
Inhaled bronchodilators for the prevention and treatment of chronic lung disease in preterm infants
Geraldine Ng1, Matteo Bruschettini2,3, John Ibrahim4
1Department of Neonatology, Imperial College Healthcare NHS Trust, Hammersmith Hospital, London, UK.
Insights
Inhaled bronchodilators like salbutamol show little to no difference in preventing mortality or chronic lung disease (CLD) in preterm infants. More research is needed to confirm their role in CLD treatment and prevention.
Area of Science:
- Neonatal Medicine
- Pediatric Pulmonology
- Respiratory Medicine
Background:
- Chronic lung disease (CLD) is a frequent complication in preterm infants, associated with significant respiratory morbidity.
- Bronchodilators are hypothesized to improve respiratory function by dilating airways and reducing resistance.
- Existing evidence on the clinical efficacy of bronchodilators for CLD in preterm infants remains uncertain.
Approach:
- Systematic review and meta-analysis of randomized and quasi-randomized controlled trials.
- Searched multiple databases (CENTRAL, MEDLINE, Embase, CINAHL) and trial registers from 2016 to May 2023.
- Included preterm infants (<32 weeks gestation) receiving bronchodilators for CLD prevention or treatment, compared to placebo or no intervention.
Key Points:
- One trial (173 infants) evaluated salbutamol prophylaxis for CLD, showing low-certainty evidence of little to no difference in mortality or CLD at 28 days compared to placebo.
- Evidence regarding the effect of salbutamol on pneumothorax is very uncertain.
- No eligible trials were found for bronchodilator therapy in the treatment of established CLD in preterm infants.
Conclusions:
- Low-certainty evidence suggests inhaled bronchodilator prophylaxis may not significantly impact mortality or CLD incidence in preterm infants.
- The role of bronchodilators in the treatment of CLD in preterm infants requires further investigation through additional clinical trials.
- Future research should focus on clinical outcomes beyond pulmonary mechanics to fully assess the benefits of inhaled bronchodilators.
Background:
Chronic lung disease (CLD) occurs frequently in preterm infants and is associated with respiratory morbidity. Bronchodilators have the potential effect of dilating small airways with muscle hypertrophy. Increased compliance and tidal volume, and decreased airway resistance, have been documented with the use of bronchodilators in infants with CLD. Therefore, bronchodilators are widely considered to have a role in the prevention and treatment of CLD, but there remains uncertainty as to whether they improve clinical outcomes. This is an update of the 2016 Cochrane review.
Objectives:
To determine the effect of inhaled bronchodilators given as prophylaxis or as treatment for chronic lung disease (CLD) on mortality and other complications of preterm birth in infants at risk for or identified as having CLD.
Search Methods:
An Information Specialist searched CENTRAL, MEDLINE, Embase, CINAHL and three trials registers from 2016 to May 2023. In addition, the review authors undertook reference checking, citation searching and contact with trial authors to identify additional studies.
Selection Criteria:
We included randomised and quasi-randomised controlled trials involving preterm infants less than 32 weeks old that compared bronchodilators to no intervention or placebo. CLD was defined as oxygen dependency at 28 days of life or at 36 weeks' postmenstrual age. Initiation of bronchodilator therapy for the prevention of CLD had to occur within two weeks of birth. Treatment of infants with CLD had to be initiated before discharge from the neonatal unit. The intervention had to include administration of a bronchodilator by nebulisation or metered dose inhaler. The comparator was no intervention or placebo.
Data Collection And Analysis:
We used the standard methodological procedures expected by Cochrane. Critical outcomes included: mortality within the trial period; CLD (defined as oxygen dependency at 28 days of life or at 36 weeks' postmenstrual age); adverse effects of bronchodilators, including hypokalaemia (low potassium levels in the blood), tachycardia, cardiac arrhythmia, tremor, hypertension and hyperglycaemia (high blood sugar); and pneumothorax. We used the GRADE approach to assess the certainty of the evidence for each outcome.
Main Results:
We included two randomised controlled trials in this review update. Only one trial provided useable outcome data. This trial was conducted in six neonatal intensive care units in France and Portugal, and involved 173 participants with a gestational age of less than 31 weeks. The infants in the intervention group received salbutamol for the prevention of CLD. The evidence suggests that salbutamol may result in little to no difference in mortality (risk ratio (RR) 1.08, 95% confidence interval (CI) 0.50 to 2.31; risk difference (RD) 0.01, 95% CI -0.09 to 0.11; low-certainty evidence) or CLD at 28 days (RR 1.03, 95% CI 0.78 to 1.37; RD 0.02, 95% CI -0.13 to 0.17; low-certainty evidence), when compared to placebo. The evidence is very uncertain about the effect of salbutamol on pneumothorax. The one trial with usable data reported that there were no relevant differences between groups, without providing the number of events (very low-certainty evidence). Investigators in this study did not report if side effects occurred. We found no eligible trials that evaluated the use of bronchodilator therapy for the treatment of infants with CLD. We identified no ongoing studies.
Authors' Conclusions:
Low-certainty evidence from one trial showed that inhaled bronchodilator prophylaxis may result in little or no difference in the incidence of mortality or CLD in preterm infants, when compared to placebo. The evidence is very uncertain about the effect of salbutamol on pneumothorax, and neither included study reported on the incidence of serious adverse effects. We identified no trials that studied the use of bronchodilator therapy for the treatment of CLD. Additional clinical trials are necessary to assess the role of bronchodilator agents in the prophylaxis or treatment of CLD. Researchers studying the effects of inhaled bronchodilators in preterm infants should include relevant clinical outcomes in addition to pulmonary mechanical outcomes.
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