Surfactant protein A concentrations in tracheal aspirate fluid from infants requiring extracorporeal membrane oxygenation

To understand the lung abnormalities leading to respiratory failure in infants, we measured 35,000-daiton surfactant protein A concentrations in tracheal aspirate fluid collected dally from 25 infants receiving extracorporeal membrane oxygenation (ECMO). Surfactant protein A concentrations were stan...

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Published inThe Journal of pediatrics Vol. 116; no. 3; pp. 435 - 440
Main Authors Lotze, Andrea, Whitsett, Jeffrey A., Kammerman, Lisa A., Ritter, Michelle, Taylor, George A., Short, Billie Lou
Format Journal Article
LanguageEnglish
Published United States Mosby, Inc 01.03.1990
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Abstract To understand the lung abnormalities leading to respiratory failure in infants, we measured 35,000-daiton surfactant protein A concentrations in tracheal aspirate fluid collected dally from 25 infants receiving extracorporeal membrane oxygenation (ECMO). Surfactant protein A concentrations were standardized per milligrams of total protein present in the aspirate. Among the 23 survivors with complete data, the surfactant protein A concentration increased significantly with time ( p<0.0001). Concurrent increases in lung complicance ( p<0.0001) and radiographic scores ( p<0.0001) were also observed. This increase in surfactant protein A content may reflect lung recovery from barotrauma and oxygen toxic effects or be a response to the primary pulmonary disease process. The two infants who did not survive extracorporeal membrane oxygenation failed to demonstrate these trends.
AbstractList To understand the lung abnormalities leading to respiratory failure in infants, we measured 35,000-dalton surfactant protein A concentrations in tracheal aspirate fluid collected daily from 25 infants receiving extracorporeal membrane oxygenation (ECMO). Surfactant protein A concentrations were standardized per milligrams of total protein present in the aspirate. Among the 23 survivors with complete data, the surfactant protein A concentration increased significantly with time (p less than 0.0001). Concurrent increases in lung compliance (p less than 0.0001) and radiographic scores (p less than 0.0001) were also observed. This increase in surfactant protein A content may reflect lung recovery from barotrauma and oxygen toxic effects or be a response to the primary pulmonary disease process. The two infants who did not survive extracorporeal membrane oxygenation failed to demonstrate these trends.
To understand the lung abnormalities leading to respiratory failure in infants, we measured 35,000-daiton surfactant protein A concentrations in tracheal aspirate fluid collected dally from 25 infants receiving extracorporeal membrane oxygenation (ECMO). Surfactant protein A concentrations were standardized per milligrams of total protein present in the aspirate. Among the 23 survivors with complete data, the surfactant protein A concentration increased significantly with time ( p<0.0001). Concurrent increases in lung complicance ( p<0.0001) and radiographic scores ( p<0.0001) were also observed. This increase in surfactant protein A content may reflect lung recovery from barotrauma and oxygen toxic effects or be a response to the primary pulmonary disease process. The two infants who did not survive extracorporeal membrane oxygenation failed to demonstrate these trends.
Author Kammerman, Lisa A.
Whitsett, Jeffrey A.
Short, Billie Lou
Ritter, Michelle
Lotze, Andrea
Taylor, George A.
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Snippet To understand the lung abnormalities leading to respiratory failure in infants, we measured 35,000-daiton surfactant protein A concentrations in tracheal...
To understand the lung abnormalities leading to respiratory failure in infants, we measured 35,000-dalton surfactant protein A concentrations in tracheal...
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SubjectTerms Body Fluids - metabolism
Extracorporeal Membrane Oxygenation
Humans
Infant, Newborn
Lung Compliance - physiology
Proteolipids - metabolism
Proteolipids - physiology
Pulmonary Surfactant-Associated Proteins
Pulmonary Surfactants - metabolism
Pulmonary Surfactants - physiology
Respiratory Insufficiency - metabolism
Respiratory Insufficiency - physiopathology
Respiratory Insufficiency - therapy
Trachea - metabolism
Title Surfactant protein A concentrations in tracheal aspirate fluid from infants requiring extracorporeal membrane oxygenation
URI https://dx.doi.org/10.1016/S0022-3476(05)82839-2
https://www.ncbi.nlm.nih.gov/pubmed/2308037
Volume 116
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