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Updated: Jan 26, 2026

Acute Myocardial Infarction in Rats
Published on: February 16, 2011
Carvedilol and thyroid hormones co-administration mitigates oxidative stress and improves cardiac function after
Vanessa Duarte Ortiz1, Patrick Türck1, Rayane Teixeira1
1Laboratory of Cardiovascular Physiology and Reactive Oxygen Species, Physiology Department, Institute of Basic Health Science, Universidade Federal do Rio Grande do Sul (UFRGS), Porto Alegre, Rio Grande do Sul, Brazil.
Insights
Combining thyroid hormones (TH) and carvedilol after acute myocardial infarction (AMI) synergistically reduces oxidative stress and improves heart function. This co-administration may prevent cardiac dysfunction and redox imbalance post-AMI.
Area of Science:
- Cardiovascular Research
- Pharmacology
- Oxidative Stress Biology
Background:
- Oxidative stress and reactive oxygen species play key roles in heart failure progression after acute myocardial infarction (AMI).
- Thyroid hormones (TH) and carvedilol exhibit cardioprotective effects, including mitigating oxidative stress and pathological cardiac remodeling post-AMI.
Purpose of the Study:
- To investigate the effects of co-administering carvedilol and TH on cardiac function and oxidative stress following AMI.
- To determine if the combined treatment exhibits synergistic effects in improving cardiac health post-AMI.
Main Methods:
- Male Wistar rats underwent myocardial infarction (MI) and were divided into five groups: sham, MI, MI+TH, MI+Carvedilol, and MI+Carvedilol+TH.
- Treatments were administered for 12 days, followed by echocardiography, ventricular catheterization, and oxidative stress analysis of heart tissue.
- Key markers assessed included ejection fraction, reactive oxygen species levels, sulfhydryl content, GSH/GSSG ratio, and NADPH oxidase activity.
Main Results:
- Both carvedilol and TH treatments individually improved ejection fraction compared to the MI group.
- Co-administration of carvedilol and TH demonstrated synergistic effects, significantly reducing reactive oxygen species and improving the GSH/GSSG ratio.
- The combined treatment also attenuated NADPH oxidase activity and mitigated the positive chronotropic effects of TH by carvedilol.
Conclusions:
- Carvedilol and TH co-administration shows synergistic benefits in improving cardiac function and redox balance after AMI.
- This combination therapy presents a potential therapeutic strategy to prevent cardiac dysfunction and oxidative stress post-myocardial infarction.
Abstract:
After acute myocardial infarction (AMI), reactive oxygen species and oxidative stress have important roles in the progression to heart failure. As a therapeutic alternative, thyroid hormones (TH) revealed cardioprotective effects after AMI, including decreasing oxidative stress. Carvedilol beta-blocker, already used in the clinical treatment of AMI, also mitigate cardiac pathological remodelling. This study assessed the effects of post-AMI carvedilol and TH co-administration on oxidative stress and cardiac function as well as whether those effects were synergistic. Male Wistar rats were divided into five groups: sham-operated (SHAM), infarcted (MI), infarcted + TH (MI + TH), infarcted + carvedilol (MI + C) and infarcted + C + TH (MI + C + TH). Two days post-surgery, the SHAM and MI groups received saline, and treated groups received their respective treatments by gavage for 12 days. The animals were submitted to echocardiographic evaluation, ventricular catheterization and euthanized for heart collection to perform oxidative stress analysis. Treated groups improved for ejection fraction compared to the MI group. Carvedilol decreased the positive chronotropic TH effects in the MI + C + TH group. The MI and MI + C groups had increased reactive oxygen species and reduced sulfhydryl levels. Carvedilol and TH co-administration showed synergic effects in the MI + C + TH group, reducing reactive oxygen species levels and improving GSH/GSSG ratio. Moreover, co-treatment attenuated NADPH oxidase activity in the MI group. Therefore, this study showed for the first time that carvedilol and TH co-administration may improve redox balance and cardiac function after AMI. Such co-administration could represent a therapeutic strategy capable of preventing cardiac dysfunction and redox unbalance after AMI.
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