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  4. Mechanism of phosgene-induced lung toxicity: Role of arachidonate mediators
 
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Mechanism of phosgene-induced lung toxicity: Role of arachidonate mediators

Journal
Journal of Applied Physiology
Journal Volume
69
Journal Issue
5
Pages
1615-1622
Date Issued
1990
Author(s)
Yue Leon Guo  
Kennedy T.P.
Michael J.R.
Sciuto A.M.
Ghio A.J.
Adkinson Jr. N.F.
Gurtner G.H.
DOI
10.1152/jappl.1990.69.5.1615
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-0025633173&doi=10.1152%2fjappl.1990.69.5.1615&partnerID=40&md5=652536f41800e1807897c22d0f513b4c
https://scholars.lib.ntu.edu.tw/handle/123456789/603779
Abstract
We have previously shown that phosgene markedly increases lung weight gain and pulmonary vascular permeability in rabbits. The current experiments were designed to determine whether cyclooxygenase- and lipoxygenase-derived mediators contribute to the phosgene induced lung injury. We exposed rabbits to phosgene (1,500 ppm/min), killed the animals 30 min later, and then perfused the lungs with a saline buffer for 90 min. Phosgene markedly increased lung weight gain, did not appear to increase the synthesis of cyclooxygenase metabolites, but increased 10-fold the synthesis of lipoxygenase products. Pre- or posttreatment with indomethacin decreased thromboxane and prostacyclin levels without affecting leukotriene synthesis and partially reduced the lung weight gain caused by phosgene. Methylprednisolone pretreatment completely blocked the increase in leukotriene synthesis and lung weight gain. Posttreatment with 5,8,11,14-eicosatetraynoic acid (ETYA), a nonmetabolized competitive inhibitor of arachidonic acid metabolism, or the leukotriene receptor blockers, FPL 55712 and LY 171883, also dramatically reduced the lung weight gain caused by phosgene. These results suggest that lipoxygenase products contribute to the phosgene-induced lung damage. Because phosgene exposure did not increase cyclooxygenase synthesis or pulmonary arterial pressure, we tested whether phosgene affects the lung's ability to generate or to react to thromboxane. Infusing arachidonic acid increased thromboxane synthesis to the same extent in phosgene-exposed lungs as in control lungs; however, phosgene exposure significantly reduced pulmonary vascular reactivity to thromboxane but not to angiotension II and KCl.
SDGs

[SDGs]SDG3

Type
journal article

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