Relative permeability of the endothelium and epithelium of rabbit lungs
AbstractAbstract
[en] Electron micrographic studies of lungs suggest that the epithelial cells are more tightly joined than the underlying endothelium, and macromolecules penetrate the endothelium more readily than the epithelium. Comparisons of epithelial and endothelial permeability to small molecules have been based upon the relative rates at which solutes traverse the alveolar-capillary barrier in fluid filled lungs and those at which they equilibrate across the capillaries in air-filled lungs. Because the former process is much slower than the latter, it has been concluded that the epithelium is less permeable to small solutes than the endothelium. However this difference may be related to inadequate access of solutes to airway surfaces. In this study, solute losses from the vascular space were compared to those from the airspace in perfused, fluid-filled rabbit lungs. 36Cl- and 125I- were lost from air-spaces almost twice as rapidly as 22Na+. In contrast, the endothelium is equally permeable to 22Na+ and these anions. Loss of 3H-mannitol from the perfusate resembled that of 22Na+ for about 30 minutes, after which diffusion of 3H-mannitol into the tissue nearly ceased. These observations suggest that the epithelium is more permselective than the endothelium. By resisting solute and water transport, the epithelium tends to prevent alveolar flooding and confines edema to the interstitium, where it is less likely to interfere with gas exchange
Primary Subject
Source
70. annual meeting of the Federation of American Society for Experimental Biology; St. Louis, MO (USA); 13-18 Apr 1986; CONF-8604222--
Record Type
Journal Article
Literature Type
Conference
Journal
Federation Proceedings. Federation of American Societies for Experimental Biology; ISSN 0014-9446; ; CODEN FEPRA; v. 45(4); p. 1161
Country of publication
Descriptors (DEI)
Descriptors (DEC)
ANIMALS, BETA DECAY RADIOISOTOPES, BETA-MINUS DECAY RADIOISOTOPES, BETA-PLUS DECAY RADIOISOTOPES, BODY, CHARGED PARTICLES, CHLORINE ISOTOPES, DAYS LIVING RADIOISOTOPES, ELECTRON CAPTURE RADIOISOTOPES, EVALUATION, HYDROGEN COMPOUNDS, INTERMEDIATE MASS NUCLEI, IODINE ISOTOPES, IONS, ISOTOPE APPLICATIONS, ISOTOPES, LIGHT NUCLEI, MAMMALS, MICROSCOPY, NUCLEI, ODD-EVEN NUCLEI, ODD-ODD NUCLEI, ORGANS, RADIOISOTOPES, RESPIRATORY SYSTEM, SODIUM ISOTOPES, TISSUES, VERTEBRATES, YEARS LIVING RADIOISOTOPES
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