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Oleic Acid-Injection in Pigs As a Model for Acute Respiratory Distress Syndrome
Published on: October 26, 2018
Pulmonary vasoconstriction in oleic acid induced lung injury. A morphometric study
H P Grotjohan1, R M van der Heijde, C A Wagenvoort
1Department of Pulmonary Diseases, Erasmus University Rotterdam, The Netherlands.
International Journal of Experimental Pathology
|August 1, 1993
Summary
Active vasoconstriction in pulmonary arteries contributes significantly to pulmonary hypertension during oleic acid-induced respiratory distress in pigs. Endothelial damage and clotting also play a role.
Area of Science:
- Pulmonary Medicine
- Cardiovascular Physiology
- Respiratory Physiology
Background:
- Oleic acid-induced lung injury in pigs is a model for acute respiratory distress.
- Pulmonary hypertension is a critical complication of acute lung injury.
- The precise mechanisms driving pulmonary hypertension in this model require further elucidation.
Purpose of the Study:
- To morphometrically assess the distribution and severity of active vasoconstriction in pulmonary arteries.
- To investigate the role of vasoconstriction in the development of pulmonary hypertension.
- To explore contributing factors such as endothelial changes and intravascular clotting.
Main Methods:
- Anesthetized, paralyzed, and mechanically ventilated pigs were induced with oleic acid.
- Pulmonary arterial medial thickness was measured morphometrically to assess vasoconstriction.
- PaO2, pulmonary artery pressure (Ppa), and endothelial morphology were analyzed.
Main Results:
- Oleic acid induced stable hypoxemia and pulmonary hypertension.
- Medial thickness, indicating vasoconstriction, was significantly greater in the oleic acid group (8.1%) compared to controls (3.8%).
- Electron microscopy showed endothelial cell swelling and degeneration; vasoconstriction occurred in clustered patterns.
Conclusions:
- Active vasoconstriction of muscular pulmonary arteries is a key factor in oleic acid-induced pulmonary hypertension.
- Endothelial swelling and intravascular clotting may also contribute to pulmonary hypertension.
- This study highlights the multifactorial nature of pulmonary hypertension in acute lung injury models.

