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Updated: Sep 26, 2025

Intratracheal Instillation of Stem Cells in Term Neonatal Rats
Published on: May 4, 2020
Moving bronchopulmonary dysplasia research from the bedside to the bench
Margaret Gilfillan1, Vineet Bhandari2
1Division of Neonatology, St. Christopher's Hospital for Children/Drexel University College of Medicine, Philadelphia, Pennsylvania.
Insights
Bronchopulmonary dysplasia (BPD) remains a challenge despite advances in infant respiratory care. Understanding the molecular pathways of BPD is crucial for developing effective treatments to improve lung development and repair.
Area of Science:
- Neonatal Medicine
- Pulmonary Biology
- Developmental Biology
Background:
- Advances in respiratory management have improved survival for extremely preterm infants.
- Bronchopulmonary dysplasia (BPD) incidence has not decreased, posing significant morbidity and mortality risks.
- BPD arises from disrupted pulmonary airspace and vascular development, exacerbated by preterm birth and mechanical ventilation.
Purpose of the Study:
- To review established clinical observations in BPD.
- To identify critical knowledge gaps in BPD pathophysiology and treatment.
- To discuss controversial topics and evaluate animal models for BPD research.
Main Methods:
- Literature review of clinical observations and research findings.
- Analysis of genetic and environmental factors influencing BPD.
- Evaluation of existing animal models for BPD research.
Main Results:
- Despite identified factors, effective therapeutic strategies for BPD are limited.
- Molecular pathways underlying BPD are not fully understood.
- Current understanding hinders the development of treatments to preserve lung development or enhance repair.
Conclusions:
- Further preclinical research is needed to elucidate BPD molecular pathways.
- Addressing knowledge gaps is essential for developing novel BPD therapies.
- A deeper understanding of BPD pathophysiology is required to improve outcomes for affected infants.
Abstract:
Although advances in the respiratory management of extremely preterm infants have led to improvements in survival, this progress has not yet extended to a reduction in the incidence of bronchopulmonary dysplasia (BPD). BPD is a complex multifactorial condition that primarily occurs due to disturbances in the regulation of normal pulmonary airspace and vascular development. Preterm birth and exposure to invasive mechanical ventilation also compromises large airway development, leading to significant morbidity and mortality. Although both predisposing and protective genetic and environmental factors have been frequently described in the clinical literature, these findings have had limited impact on the development of effective therapeutic strategies. This gap is likely because the molecular pathways that underlie these observations are yet not fully understood, limiting the ability of researchers to identify novel treatments that can preserve normal lung development and/or enhance cellular repair mechanisms. In this review article, we will outline various well-established clinical observations while identifying key knowledge gaps that need to be filled with carefully designed preclinical experiments. We will address these issues by discussing controversial topics in the pathophysiology, the pathology, and the treatment of BPD, including an evaluation of existing animal models that have been used to answer important questions.
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