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Effect of lung inflation on active and passive liquid clearance from in vivo rabbit lung.

Abstract:
Active sodium transport contributes to liquid clearance from the alveoli. We hypothesized that the magnitude of active transport of alveolar liquid depends on the extent to which the alveolar epithelium is stretched and, consequently, on the degree of alveolar inflation. In a study on 38 adult rabbits, the left lung was filled in vivo with a solution of glucose (10 mmol/l) made isosmotic with plasma, using sodium chloride, and held at a constant airway pressure of 3, 6, or 9 cmH2O for 6 h. Alveolar liquid clearance was measured directly as a flow into a left main bronchial catheter. Control animals were compared with animals in which active epithelial sodium transport was inhibited by adding amiloride and phloridzin (both 1 mmol/l) to the instillate. At low inflation, active sodium transport reversed a secretion of liquid into the alveoli; at high inflation, active sodium transport made little or no contribution to transepithelial flow. Hydraulic conductance of the left lung was 1.57 microliters.min-1.cmH2O-1.kg body wt-1. The experiments suggest that pulmonary inflation renders active liquid clearance ineffective.

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Institution:
University of Oxford
Division:
MSD
Department:
Physiology Anatomy & Genetics
Role:
Author


Journal:
American journal of physiology More from this journal
Volume:
267
Issue:
4 Pt 1
Pages:
L482-L487
Publication date:
1994-10-01
ISSN:
0002-9513


Language:
English
Keywords:
Pubs id:
pubs:114366
UUID:
uuid:0f7edac0-5007-438d-8004-6367b94cd634
Local pid:
pubs:114366
Source identifiers:
114366
Deposit date:
2013-11-17
ARK identifier:

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