SHORT-TERM REVERSIBILITY OF ULTRASTRUCTURAL-CHANGES IN PULMONARY CAPILLARIES CAUSED BY STRESS FAILURE

被引:88
作者
ELLIOTT, AR [1 ]
FU, ZX [1 ]
TSUKIMOTO, K [1 ]
PREDILETTO, R [1 ]
MATHIEUCOSTELLO, O [1 ]
WEST, JB [1 ]
机构
[1] UNIV CALIF SAN DIEGO,DEPT MED 0623,9500 GILMAN DR,LA JOLLA,CA 92093
关键词
ALVEOLAR EPITHELIUM; CAPILLARY ENDOTHELIUM; BASEMENT MEMBRANE; CAPILLARY PERMEABILITY; STRETCHED-PORE PHENOMENON; FILTRATION COEFFICIENT; PULMONARY EDEMA; CELL ADHESION MOLECULES;
D O I
10.1152/jappl.1992.73.3.1150
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
We previously showed that when the pulmonary capillaries in anesthetized rabbits are exposed to a transmural pressure (Ptm) of approximately 40 mmHg, stress failure of the walls occurs with disruption of the capillary endothelium, alveolar epithelium, or sometimes all layers. The present study was designed to determine whether some of the ultrastructural changes are rapidly reversible when the capillary pressure is reduced. To test this, the Ptm was raised to 52.5 cmH2O for 1 min of blood perfusion and then reduced to 12.5 cmH2O for 3 min of saline-dextran perfusion, followed by intravascular fixation at the same pressure. In another group of animals, the pressure was elevated for 1 min of blood and 3 min of saline-dextran before being reduced. The results were compared with previous studies in which the capillary pressures were maintained elevated at 52.5 cmH2O during the entire procedure. Control studies were also done at sustained low pressures. The results showed that the number of endothelial and epithelial breaks per millimeter and the total fraction area of the breaks were reduced when the pressure was lowered. For example, the number of endothelial breaks per millimeter decreased from 7.1 +/- 2.1 to 2.4 +/- 0.7, and the number of epithelial breaks per millimeter fell from 11.4 +/- 3.7 to 3.4 +/- 0.7. There was evidence that the breaks that closed were those that were initially small and were associated with an intact basement membrane. The results suggest that cells can move along their underlying matrix by rapid disengagement and reattachment of cell adhesion molecules, causing breaks to open or close within minutes. Our results provide a morphometric basis for previous studies showing reversibility of pressure-induced increases in capillary permeability when the pressure was subsequently reduced.
引用
收藏
页码:1150 / 1158
页数:9
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