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The cardiopulmonary effects of sodium fluoroacetate (1080) in Sprague-Dawley rats.

Authors :
McCranor, Bryan J.
Young, Talearia D.
Tressler, Justin
Jennings, Laura
Irwin, James
Alli, Nazira A.
Abilez, Marilynda K.
Stone, Samuel
Racine, Michelle
Devorak, Jennifer L.
Sciuto, Alfred M.
Wong, Benjamin
Zang, Tianzhu
Source :
Cogent Biology. Jan2019, Vol. 5 Issue 1, p1-9. 9p.
Publication Year :
2019

Abstract

Sodium fluoroacetate (1080) is a highly toxic metabolic poison that has the potential because of its lack of defined color, odor, and taste and its high water solubility to be intentionally or unintentionally ingested through food adulteration. Although the mechanism of action for 1080 has been known since the 1950s, no known antidote exists. In an effort to better understand the cardiopulmonary impacts of 1080, we utilized whole-body plethysmography and telemeterized Sprague-Dawley rats which allowed for the real-time measurement of respiratory and cardiac parameters following exposure using a non-invasive assisted-drinking method. Overall, the animals showed marked depression of respiratory parameters over the course of 24 h post-exposure and the development of hemorrhage in the lung tissue. Tidal volume was reduced by 30% in males and 60% in females at 24 h post-exposure, and respiratory frequency was significantly depressed as well. In telemeterized female rats, we observed severe cardiac abnormalities, highlighted by a 50% reduction in heart rate, 75% reduction in systolic blood pressure, and a 3.5-fold lengthening of the QRS interval over the course of 24 h. We also observed a reduction in core body temperature of nearly 15°C. Our study was able to describe the severe and pronounced effects of sodium fluoroacetate poisoning on cardiopulmonary function, the results of which indicate that both tissue specific and systemic deficits contribute to the toxicological progression of 1080 intoxication and will need to be accounted for when developing any potential countermeasure for 1080 poisoning. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
23312025
Volume :
5
Issue :
1
Database :
Academic Search Index
Journal :
Cogent Biology
Publication Type :
Academic Journal
Accession number :
141151655
Full Text :
https://doi.org/10.1080/23312025.2019.1568669