Literature DB >> 32233099

Alleviation of methyl isocyanate-induced airway obstruction and mortality by tissue plasminogen activator.

Heidi J Nick1, Jacqueline S Rioux1, Livia A Veress1, Preston E Bratcher1,2, Leslie A Bloomquist1, Poojya Anantharam3, Claire R Croutch3, Richard S Tuttle3, Eric Peters3, William Sosna3, Carl W White1.   

Abstract

Methyl isocyanate (MIC, "Bhopal agent") is a highly reactive, toxic industrial chemical. Inhalation of high levels (500-1000 ppm) of MIC vapor is almost uniformly fatal. No therapeutic interventions other than supportive care have been described that can delay the onset of illness or death due to MIC. Recently, we found that inhalation of MIC caused the appearance of activated tissue factor in circulation with subsequent activation of the coagulation cascade. Herein, we report that MIC exposure (500 ppm for 30 min, nose-only) caused deposition of fibrin-rich casts in the conducting airways resulting in respiratory failure and death within 24 h in a rat model (LC90-100 ). We thus investigated the effect of airway delivery of the fibrinolytic agent tissue plasminogen activator (tPA) on mortality and morbidity in this model. Intratracheal administration of tPA was initiated 11 h post MIC exposure and repeated every 4 h for the duration of the study. Treatment with tPA afforded nearly 60% survival at 24 h post MIC exposure and was associated with decreased airway fibrin casts, stabilization of hypoxemia and respiratory distress, and improved acidosis. This work supports the potential of airway-delivered tPA therapy as a useful countermeasure in stabilizing victims of high-level MIC exposure.
© 2020 New York Academy of Sciences.

Entities:  

Keywords:  Bhopal agent; airway obstruction; fibrin; methyl isocyanate (MIC); tissue plasminogen activator (tPA)

Mesh:

Substances:

Year:  2020        PMID: 32233099      PMCID: PMC7529679          DOI: 10.1111/nyas.14344

Source DB:  PubMed          Journal:  Ann N Y Acad Sci        ISSN: 0077-8923            Impact factor:   5.691


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