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Updated: Jul 11, 2025

Acute Myocardial Infarction in Rats
Published on: February 16, 2011
Chronic exposure to mercury increases arrhythmia and mortality post-acute myocardial infarction in rats
Keren A S Bello1, Maria Clara B Wilke1, Rakel P Simões1
1Department of Physiological Sciences of the Federal University of Espirito Santo, Vitória, Espirito Santo, Brazil.
Insights
Mercury exposure worsens heart damage after myocardial infarction (MI). This mercury toxicity increases arrhythmias and mortality in rats, highlighting Hg as a significant cardiovascular risk factor.
Area of Science:
- Environmental Toxicology
- Cardiovascular Science
- Toxicology
Background:
- Mercury (Hg) is a heavy metal with known toxic effects on eukaryotic cells.
- Previous research indicates mercury toxicity detrimentally impacts the cardiovascular system.
- Understanding the relationship between mercury exposure and cardiovascular disease is crucial.
Purpose of the Study:
- To investigate if mercury exposure exacerbates myocardial damage following ischemic injury.
- To determine the influence of established mercury toxicity on the outcome of myocardial infarction (MI).
Main Methods:
- Male Wistar rats were exposed to mercuric chloride (HgCl2) or saline for 4 weeks.
- Transmural myocardial infarction was induced via coronary artery occlusion.
- Electrocardiography (ECG) and Basckó coefficient were used to assess cardiac function and arrhythmias.
Main Results:
- Mercury-exposed rats (MI-Hg) showed increased ventricular extrasystoles and ventricular tachycardia compared to the MI group.
- Arrhythmic events after MI were significantly aggravated by mercury exposure.
- Mortality rates were higher in the MI-Hg group (32%) compared to the MI group (21%).
Conclusions:
- Mercury exposure is a significant risk factor that exacerbates cardiac ischemic injury.
- Increased arrhythmias and mortality in MI-Hg rats correlate with mercury toxicity.
- Mercury exposure should be recognized as a factor worsening outcomes in patients with acute myocardial infarction.
Abstract:
Introduction: Mercury (Hg) is a heavy metal that causes a variety of toxic effects in eukaryotic cells. Previous studies have reported detrimental effects of mercury toxicity in the cardiovascular system. Given the importance of understanding the relationship between Hg and cardiovascular disease, we sought to investigate if the Hg could worsen the myocardial repercussions following ischemic injury. We demonstrated that once mercury toxicity is established, it can influence the outcome of myocardial infarction (MI). Methods: Male Wistar rats received intramuscular injections of either saline (NaCl 0.9%) or mercuric chloride (HgCl2, first dose of 4.6 μg/kg, and subsequent doses of 0.07 μg/kg/day) for 4 weeks. Three weeks post-exposure, we induced transmural infarction in the left ventricle free wall through coronary artery occlusion surgery. Results: ECG recordings obtained from MI groups demonstrated alterations in the rhythm of the heartbeat/heart electrical activity, as expected, including ventricular extrasystoles and ventricular tachycardia. However, the MI group exposed to Hg (MI-Hg) exhibited augmented ventricular extrasystoles and ventricular tachycardia compared to the MI group. Also, Basckó coefficient revealed that the arrhythmic events-after MI-were aggravated by Hg exposure. Discussion: Our results indicate that the significantly increased mortality in MI-Hg groups when compared to MI (21%, MI vs 32%, MI-Hg) is correlated with greater occurrence of arrhythmias. In conclusion, this study further supports the idea that exposure to mercury (Hg) should be recognized as a significant risk factor that exacerbates the impact of cardiac ischemic injury, potentially leading to an increased mortality rate among patients experiencing acute MI.
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