EXPRESSION OF THE 35KDA AND LOW-MOLECULAR WEIGHT SURFACTANT-ASSOCIATED PROTEINS IN THE LUNGS OF INFANTS DYING WITH RESPIRATORY-DISTRESS SYNDROME
- 1 June 1989
- journal article
- research article
- Vol. 134 (6) , 1285-1293
Abstract
Newborn respiratory distress syndrome (RDS) results from a deficiency of pulmonary surfactant. Surfactant has three ultrastructural forms: lamellar bodies, which, when secreted from Type II pneumocytes, transform into tubular myelin; tubular myelin in turn gives rise to the phospholipid monolayer at the air-fluid interface in the alveolus that constitutes functional surfactant. It has been shown previously that the lungs of infants dying from RDS lacked tubular myelin despite the presence of abundant lamellar bodies, whereas the lung of control infants dying from other causes had both tubular myelin and lamellar bodies. An abnormality in the conversion of lamellar bodies to tubular myelin in RDS was proposed as a possible explanation for this finding. To evaluate the role of surfactant proteins (SPs) in this conversion, the authors re-examined the lungs of 11 RDS infants and 10 control infants for reactivity with antisera of high and low molecular weight SPs. In control infants, abundant intense staining with antisera to both types of SPs was found, but in the RDS lungs, staining was weaker than that in controls and less intense for high molecular weight compared to low molecular weight SPs. In lungs from patients with RDS, although staining increased with increasing gestational and post-natal ages, the intensity was less than control levels at all ages. The correlation of deficiency of SPs in RDS with lack of tubular myelin suggests that SPs may be involved in the conversion of normal lamellar bodies to tubular myelin and that the deficency of SPs could explain the persistent respiratory distress in the presence of surfactant phospholipid synthesis.This publication has 46 references indexed in Scilit:
- Electron microscopic demonstration of an extracellular duplex lining layer of alveoliPublished by Elsevier ,2003
- Divalent cation and hydrogen ion effects on the structure and surface activity of pulmonary surfactantBiochemistry, 1987
- Immunohistochemical localization of a low molecular weight surfactant-associated protein in human lung.Journal of Histochemistry & Cytochemistry, 1987
- An electrophoretic and immunochemical characterization of human surfactant-associated proteinsBiochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1984
- Newborn intensive care: Success or failure?The Journal of Pediatrics, 1984
- Role of calcium ions in the structure and function of pulmonary surfactantBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1984
- Extramembraneous particles and structural variations of tubular myelin figures in rat lung surfactantJournal of Ultrastructure Research, 1984
- Ultrastructure of Tubular Myelin and Lamellar Bodies in Fast-Frozen Adult Rat LungExperimental Lung Research, 1982
- The freeze‐fracture study of alveolar type II cells and alveolar content in fetal rabbit lungThe Anatomical Record, 1978
- Conversion of lamellar body membranes into tubular myelin in alveoli of fetal rat lungs.The Journal of cell biology, 1977