PubMed Health⌕ Search

Biomedical subjects

A Assimacopoulos

Publications and source records attributed to A Assimacopoulos.

21 records · Page 2Linked to original sources

Changes in alveolar capillary configuration at different levels of lung inflation in the rat. An ultrastructural and morphometric study.

Changes in alveolar capillary configuration during positive pressure lung inflation were investigated by transmission and scanning electron microscopy as well as by morphometric methods. As the airway pressure was raised, an increasing number of alveoli expanded. However, in fully inflated or overinflated lungs, a few collapsed areas persisted. In such areas, the air-blood tissue barrier was folded into the capillary space, dividing it into intercommunicating chambers. In expanded alveoli, the capillaries appeared as a continuous space delimited at each side by a tissue leaflet. This space was crossed by tissue bridges consisting of the thick portion of air-blood barrier. In overinflated lungs, the capillary space was compressed between the alveoli and thus collapsed. Our findings suggest that the thin porne. The variations of the capillary configuration seem to be determined either by "passive" deformations or by compression of the alveolocapillary membrane, or as a result of contraction of interstitial cells which are located in the thick portion of the air-blood barrier and are attached to the basement membranes of two adjacent alveoli. The relationship between alveolar dynamics and capillary configuration is considered to be a basic factor in ventilation/perfusion auto-regulation.

Animals↗

"Contractile interstitial cells" in pulmonary alveolar septa: a possible regulator of ventilation-perfusion ratio? Ultrastructural, immunofluorescence, and in vitro studies.

In the lungs of healthy rats, humans, lambs, and monkeys, about 50% of the alveolar interstitial cells-resembling fibroblasts-contain bundles of fibrils measuring 30-80 A in diameter. Immunofluorescence studies on frozen sections of rat lung demonstrate that many interstitial cells bind sera containing antiactin antibodies. On account of these two sets of findings and our additional in vitro studies suggesting alveolar tissue contraction due to hypoxia or epinephrine, we postulate that the alveolar septa contain contractile cells different from that of smooth muscle. For these cells we propose the name of "contractile interstitial cells." Such cells lie within the thick portion of the air-blood barrier and around the pre- or postcapillary vessels. Hence it is possible that they play a role in the autoregulation of ventilation/perfusion (V/Q) ratio, particularly in hypoxic pulmonary hypertension. These findings, demonstrating a contractile system other than bronchial and arterial smooth muscle, suggest that the alveolus should no more be conceived as a passive "organ."

Animals↗