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Updated: May 19, 2026

Surfactant Depletion Combined with Injurious Ventilation Results in a Reproducible Model of the Acute Respiratory Distress Syndrome (ARDS)
Published on: April 7, 2021
The role of surfactant in respiratory distress syndrome
Christopher Cheng-Hwa Ma1, Sze Ma
1King's College London School of Medicine, London SE1 IUL, UK.
Insights
Surfactant replacement therapy is crucial for preterm infants with respiratory distress syndrome (RDS). Advancements in surfactant types and administration methods offer improved prevention and treatment strategies for RDS.
Area of Science:
- Neonatal Medicine
- Pulmonary Biology
Background:
- Respiratory distress syndrome (RDS) in preterm infants is characterized by insufficient lung surfactant production.
- Surfactant replacement therapy is a key intervention for managing RDS.
Purpose of the Study:
- To review the role of surfactant in preventing and managing RDS.
- To compare different surfactant types, doses, and administration methods.
- To discuss recent developments in surfactant therapy.
Main Methods:
- A comprehensive PubMed literature search was conducted up to March 2012.
- Keywords included various surfactant types (natural, animal-derived, synthetic, protein-containing, protein-free) and related terms.
Main Results:
- Natural or animal-derived surfactants are currently preferred over protein-free synthetic surfactants.
- Protein-containing synthetic surfactants show promise in matching natural surfactant efficacy without side effects.
- Optimized administration techniques like nasal CPAP and selective dosing improve outcomes.
Conclusions:
- Ongoing research into surfactant structure and administration promises better RDS management.
- Non-invasive aerosolized surfactant delivery is under investigation.
- Advancements offer a hopeful outlook for treating neonatal respiratory distress syndrome.
Abstract:
The key feature of respiratory distress syndrome (RDS) is the insufficient production of surfactant in the lungs of preterm infants. As a result, researchers have looked into the possibility of surfactant replacement therapy as a means of preventing and treating RDS. We sought to identify the role of surfactant in the prevention and management of RDS, comparing the various types, doses, and modes of administration, and the recent development. A PubMed search was carried out up to March 2012 using phrases: surfactant, respiratory distress syndrome, protein-containing surfactant, protein-free surfactant, natural surfactant, animal-derived surfactant, synthetic surfactant, lucinactant, surfaxin, surfactant protein-B, surfactant protein-C.Natural, or animal-derived, surfactant is currently the surfactant of choice in comparison to protein-free synthetic surfactant. However, it is hoped that the development of protein-containing synthetic surfactant, such as lucinactant, will rival the efficacy of natural surfactants, but without the risks of their possible side effects. Administration techniques have also been developed with nasal continuous positive airway pressure (nCPAP) and selective surfactant administration now recommended; multiple surfactant doses have also reported better outcomes. An aerosolised form of surfactant is being trialled in the hope that surfactant can be administered in a non-invasive way. Overall, the advancement, concerning the structure of surfactant and its mode of administration, offers an encouraging future in the management of RDS.
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