Target intelligence / Profile preview

Pulmonary surfactant lipid-protein complex (SP-B and SP-C) (PS)

Target
PS
Molecular classification
Other, Lipoprotein complex, Amphipathic protein-lipid assembly
01

Overview

Pulmonary surfactant is a vital lipoprotein complex composed of approximately 90% lipids and 10% proteins, specifically Surfactant Proteins B (SP-B) and C (SP-C). It forms a surface-active monolayer at the alveolar air-liquid interface, which is essential for reducing surface tension and preventing alveolar collapse during expiration (StatPearls, 2023). SP-B is a small, hydrophobic protein required for the formation of lamellar bodies and the structural organization of the surfactant film, while SP-C enhances the rate of lipid adsorption and film stability (PubMed, 2001; UniProt, 2024). Clinical deficiency of this system, most notably in premature infants, results in Neonatal Respiratory Distress Syndrome (nRDS), characterized by high surface tension, lung collapse, and impaired gas exchange (NIH, 2022). Therapeutic intervention involves the administration of exogenous surfactants, such as Poractant alfa or Beractant, which utilize the biophysical properties of SP-B and SP-C to restore pulmonary mechanics (PubMed, 2015). These treatments are delivered intratracheally and are critical for improving survival and reducing the severity of lung injury in neonates and potentially in cases of acute respiratory distress.

Other names
Lung surfactantAlveolar surfactantPulmonary surfactant systemSP-B/SP-C lipid monolayerSurface active agent
02

Mechanism of action

Exogenous surfactant replaces deficient endogenous surfactant; the hydrophobic proteins SP-B and SP-C within the drug facilitate the rapid spreading, adsorption, and stabilization of phospholipids into a functional monolayer at the air-liquid interface, which lowers surface tension and prevents alveolar collapse (NIH, 2022; PubMed, 2001).

03

Biological functions

OtherImmune responseReduction of alveolar surface tensionPrevention of alveolar collapseMaintenance of lung compliance
04

Disease associations

OtherInfectionNeonatal Respiratory Distress Syndrome (nRDS)Acute Respiratory Distress Syndrome (ARDS)Surfactant metabolism dysfunction
05

Safety considerations

Transient airway obstruction during administrationBradycardiaOxygen desaturationPulmonary hemorrhageRisk of pulmonary air leaks
06

Interacting drugs

Poractant alfa

4 more in the full profile.

07

Biomarkers

Lecithin/sphingomyelin (L/S) ratioLamellar body countPhosphatidylglycerol levelsSurfactant protein B (SP-B) concentration

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