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Sulfur Mustard Inhalation: Mechanisms of Injury, Alteration of Coagulation, and Fibrinolytic Therapy

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Specialty Science
Date 2016 Jul 8
PMID 27384912
Citations 17
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Abstract

Acute lung injury due to sulfur mustard (SM) inhalation causes the formation of airway fibrin casts that obstruct airways at multiple levels, leading to acute respiratory failure and death. These pathophysiological effects are seen in rodent models of acute SM vapor inhalation, as well as in human victims of acute SM inhalation. In rat models, the initial steps in activation of the coagulation system at extravascular sites depend on tissue factor (TF) expression by airway cells, especially in the microparticle fraction, and these effects can be inhibited by TF pathway inhibitor protein. Not only does the procoagulant environment of the acutely injured lung contribute to airway cast formation, but these lesions persist in airways because of the activation of multiple antifibrinolytic pathways, including plasminogen activator inhibitor-1, thrombin-activatable fibrinolysis inhibitor, and α2-antiplasmin. Airway administration of tissue plasminogen activator can overwhelm these effects and save lives by preventing fibrin-dependent airway obstruction, gas-exchange abnormalities, and respiratory failure. In human survivors of SM inhalation, fibrotic processes, including bronchiolitis obliterans and interstitial fibrosis of the lung, are among the most disabling chronic lesions. Antifibrotic therapies may prove useful in preventing either or both of these forms of chronic lung damage.

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References
1.
Etezad-Razavi M, Mahmoudi M, Hefazi M, Balali-Mood M . Delayed ocular complications of mustard gas poisoning and the relationship with respiratory and cutaneous complications. Clin Exp Ophthalmol. 2006; 34(4):342-6. DOI: 10.1111/j.1442-9071.2006.01220.x. View

2.
Jain A, Tewari-Singh N, Orlicky D, White C, Agarwal R . 2-Chloroethyl ethyl sulfide causes microvesication and inflammation-related histopathological changes in male hairless mouse skin. Toxicology. 2011; 282(3):129-38. PMC: 3085827. DOI: 10.1016/j.tox.2011.01.021. View

3.
Fairhall S, Brown R, Jugg B, Smith A, Mann T, Jenner J . Preliminary studies of sulphur mustard-induced lung injury in the terminally anesthetized pig: exposure system and methodology. Toxicol Mech Methods. 2009; 18(4):355-62. DOI: 10.1080/15376510701623383. View

4.
Kumar D, Tewari-Singh N, Agarwal C, Jain A, Inturi S, Kant R . Nitrogen mustard exposure of murine skin induces DNA damage, oxidative stress and activation of MAPK/Akt-AP1 pathway leading to induction of inflammatory and proteolytic mediators. Toxicol Lett. 2015; 235(3):161-71. PMC: 4430414. DOI: 10.1016/j.toxlet.2015.04.006. View

5.
Inturi S, Tewari-Singh N, Agarwal C, White C, Agarwal R . Activation of DNA damage repair pathways in response to nitrogen mustard-induced DNA damage and toxicity in skin keratinocytes. Mutat Res. 2014; 763-764:53-63. PMC: 4199943. DOI: 10.1016/j.mrfmmm.2014.04.002. View