The Cardiopulmonary Effects of Sodium Fluoroacetate (1080) in Sprague-Dawley Rats.

Cogent Biology Pub Date : 2019-01-01 Epub Date: 2019-01-31
Bryan J McCranor, Talearia D Young, Justin Tressler, Laura Jennings, James Irwin, Nazira A Alli, Marilynda K Abilez, Samuel Stone, Michelle Racine, Jennifer L Devorak, Alfred M Sciuto, Benjamin Wong
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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 1950's, 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 hours 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 hours 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 hours. 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.

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氟乙酸钠(1080)对 Sprague-Dawley 大鼠心肺的影响
氟乙酸钠(1080)是一种剧毒的代谢毒物,由于它没有明确的颜色、气味和味道,而且具有很高的水溶性,因此有可能通过食品掺假被有意或无意地摄入。尽管 1080 的作用机理早在 20 世纪 50 年代就已为人所知,但目前还没有已知的解毒剂。为了更好地了解 1080 对心肺功能的影响,我们采用了全身胸透法和遥测 Sprague-Dawley 大鼠,利用无创辅助饮水法实时测量接触后的呼吸和心脏参数。总体而言,在接触后的 24 小时内,动物的呼吸参数明显下降,肺组织出现出血。在暴露后 24 小时内,雄性潮气量减少了 30%,雌性减少了 60%,呼吸频率也显著降低。在遥测雌性大鼠中,我们观察到严重的心脏异常,突出表现为心率降低 50%,收缩压降低 75%,QRS 间期在 24 小时内延长 3.5 倍。我们还观察到核心体温降低了近 15°C。我们的研究能够描述氟乙酸钠中毒对心肺功能造成的严重而明显的影响,其结果表明,组织特异性和全身性缺陷都会导致 1080 中毒的毒理发展,在开发任何潜在的 1080 中毒对策时都需要考虑到这一点。
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来源期刊
Cogent Biology
Cogent Biology MULTIDISCIPLINARY SCIENCES-
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