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PMID: 9307481 Published · ppublish English Journal Article

Postinjury thromboxane receptor blockade ameliorates acute lung injury.

The Annals of thoracic surgery ·Vol. 64 ·No. 3 ·1997-09-00 ·Pages 826-9

Goff CD, Corbin RS, Theiss SD, Frierson HF, Cephas GA, Tribble CG, Kron IL, Young JS

Abstract

Acute lung injury is associated with pulmonary hypertension, intrapulmonary shunting, and increased microvascular permeability, leading to altered oxygenation capacity. Thromboxane A2 has been found to be a central mediator in the development of septic and oleic acid (OA)-induced acute lung injury. Our previous study demonstrated a beneficial effect of preinjury thromboxane A2 receptor blockade. The current study examines the efficacy of postinjury receptor blockade on oxygenation capacity and pulmonary hemodynamics in an isolated lung model of OA-induced acute lung injury. Four groups of rabbit heart-lung preparations were studied for 60 minutes in an ex vivo perfusion-ventilation system. Saline control lungs received saline solution during the first 20 minutes of study. Injury control lungs received an OA-ethanol solution during the first 20 minutes. Two treatment groups were used: T10, in which the thromboxane receptor antagonist, SQ30741, was infused 10 minutes after the initiation of OA infusion; and T30, in which the thromboxane receptor antagonist was infused 30 minutes after OA infusion. Significant differences were found in oxygenation (oxygen tension in T10 = 62.6 +/- 11.7 mm Hg, T30 = 68.2 +/- 21.2 mm Hg; injury control = 40.2 +/- 9.0 mm Hg, saline control = 123.5 +/- 16.01 mm Hg; p < 0.001) and percentile change in pulmonary artery pressure (T10 = 1.1% +/- 19.4% increase, T30 = 11.2% +/- 7.3% increase; injury control = 47.6% +/- 20.5%, saline control = 4.2% +/- 6.81%; p < 0.001). This study demonstrates that blockade of the thromboxane A2 receptor, even after the initiation of acute lung injury, eliminates pulmonary hypertension and improves oxygenation.

MeSH Terms
Animals Bacterial Infections Blood Pressure/drug effects Capillary Permeability/drug effects Disease Models, Animal Ethanol/adverse effects Fibrinolytic Agents/administration & dosage,therapeutic use Hypertension, Pulmonary/complications,prevention & control Infusions, Intravenous Microcirculation/drug effects Oleic Acid/adverse effects Oxygen/blood Pulmonary Artery Pulmonary Circulation/drug effects Rabbits Receptors, Thromboxane/antagonists & inhibitors Respiratory Distress Syndrome/prevention & control Thromboxane A2/administration & dosage,analogs & derivatives,therapeutic use Tidal Volume/drug effects Time Factors Ventilation-Perfusion Ratio/drug effects
Chemicals
Fibrinolytic Agents Receptors, Thromboxane SQ 30741 Oleic Acid Ethanol Thromboxane A2 Oxygen
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Goff C D
Department of Surgery, University of Virginia Health Sciences Center, Charlottesville 22906-0005, USA.
Corbin R S
Theiss S D
Frierson H F
Cephas G A
Tribble C G
Kron I L
Young J S
Article Info
Journal
The Annals of thoracic surgery
Abbr.
Ann Thorac Surg
ISSN
0003-4975
Published
1997-09-00
Pages
826-9
Language
English
Region
Netherlands
NLM ID
15030100R
Subset
IM
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