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Strategies for preventing bronchopulmonary dysplasia
1Children's Hospital and Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts 02115, USA. linda.vanmarter@harvard.edu
Insights
Preventing bronchopulmonary dysplasia (BPD) in premature infants remains a challenge. While Vitamin A is the only proven treatment, ongoing research explores new respiratory technologies and protective molecules for BPD prevention.
Area of Science:
- Neonatology
- Pulmonary Biology
- Perinatal Medicine
Background:
- Bronchopulmonary dysplasia (BPD) has evolved, now primarily affecting extremely preterm infants.
- Understanding prenatal origins of BPD is crucial for developing effective prevention strategies.
- Current BPD prevention primarily focuses on respiratory management, with limited success.
Purpose of the Study:
- To review recent advancements in potential BPD preventive treatments.
- To discuss controversies and challenges in BPD prevention strategies.
- To highlight areas for future research in BPD prevention.
Main Methods:
- Review of recent reports on BPD preventive treatments.
- Analysis of clinical trials and meta-analyses.
- Discussion of observational and laboratory data supporting new trials.
Main Results:
- No single preventive strategy has shown conclusive benefit to date.
- Promising but unproven treatments include high-frequency oscillatory ventilation, permissive hypercapnia, and inhaled nitric oxide.
- Vitamin A is the only proven safe and effective preventive treatment for BPD.
Conclusions:
- Further randomized clinical trials are needed for various respiratory support methods and postnatal treatments.
- Ongoing research is essential for protective molecules like superoxide dismutase, inositol, and alpha-1 proteinase inhibitor.
- Future BPD prevention may involve directed cytokine and genetic therapies.
Purpose Of Review:
Neonatologists and pulmonary biologists have long sought preventive treatments for bronchopulmonary dysplasia (BPD). The purpose of this review is to highlight recent reports of a number of potential treatments intended to prevent BPD and to discuss the controversies surrounding preventive strategies.
Recent Findings:
The evolution of BPD from a disorder of pulmonary injury affecting moderately preterm infants, to one characterized by a developmental pulmonary arrest among survivors of extreme prematurity has important implications for BPD prevention. Recent recognition that the pathogenesis of BPD might have prenatal origins raises new challenges and opportunities for studies of BPD prevention; however, most current preventive strategies for BPD focus on respiratory management. Neither past nor current clinical trials have shown a conclusive benefit of a single preventive treatment strategy. Promising but still largely unproven preventive respiratory treatments include: high frequency oscillatory ventilation, permissive hypercapnea, and inhaled nitric oxide. Observational and recent laboratory data support the need for randomized clinical trials of continuous positive airway pressure versus mechanical ventilation. Additionally, clinical trials are needed to address the deficit in our knowledge of the potential benefits and risks of postnatal low dose corticosteroid treatment. Further study of superoxide dismutase, inositol, and alpha-1 proteinase inhibitor also are warranted on the basis of recent clinical trials or meta-analyses.
Summary:
Only Vitamin A has proven a safe and effective preventive treatment for BPD. Additional studies of respiratory technologies, management strategies, and protective molecules are needed. Directed cytokine and genetic therapies are on the horizon.
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