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Updated: May 30, 2025

Improved Rodent Model of Myocardial Ischemia and Reperfusion Injury
Published on: March 7, 2022
Angiotensin 1-7 Attenuates the Development of Ischemia-Reperfusion-Induced Arrhythmia in Rats: Electrophysiology,
Amy F Boushra1, Ghada Farouk Soliman2, Walaa Ibrahim3
1Department of Physiology, Faculty of Medicine, Fayoum University, Fayoum, Egypt.
Insights
Angiotensin 1-7 (Ang 1-7) prevents dangerous heart arrhythmias caused by ischemia-reperfusion (I/R) injury. This cardioprotective effect involves regulating key inflammatory and oxidative stress pathways, offering a promising therapeutic strategy.
Area of Science:
- Cardiovascular Physiology
- Pharmacology
- Molecular Biology
Background:
- Arrhythmia is a significant global health concern, often linked to cardiovascular morbidity and mortality.
- Ischemia-reperfusion (I/R) injury poses a risk for fatal arrhythmias, particularly during cardiac surgery.
Purpose of the Study:
- To investigate the prophylactic anti-arrhythmic effects of angiotensin 1-7 (Ang 1-7) in an in vivo rat model of I/R injury.
- To elucidate the underlying molecular mechanisms by which Ang 1-7 confers cardioprotection.
Main Methods:
- An established in vivo rat model of cardiac I/R injury was utilized.
- Rats received prophylactic administration of Ang 1-7 (1 mg/kg, IP) 30 minutes prior to surgical induction of I/R.
- Electrophysiological, biochemical (oxidative stress, gene/protein expression), and histopathological assessments were performed.
Main Results:
- I/R injury induced significant electrophysiological abnormalities, arrhythmias, oxidative stress, and altered expression of PPAR-γ, CXCL16, NF-kB, and IL-17.
- Histological analysis revealed I/R-induced cardiac damage, with increased COX-2 and HSP90 immunoreactions.
- Preoperative Ang 1-7 administration markedly ameliorated I/R-induced electrophysiological, biochemical, and histopathological derangements.
Conclusions:
- Angiotensin 1-7 demonstrates significant cardioprotective and anti-arrhythmic properties against I/R injury in a rat model.
- The protective mechanisms involve upregulating peroxisome proliferator-activated receptor gamma (PPAR-γ) and downregulating CXCL16, IL-17, and NF-kB pathways.
- Ang 1-7 represents a promising therapeutic agent for preventing I/R-induced arrhythmias and associated cardiac damage.
Abstract:
Arrhythmia is a common and serious global health problem, contributing to cardiovascular morbidity and mortality. The cardiac muscle is susceptible to ischemia-reperfusion (I/R) injury, which can lead to fatal arrhythmias during open-heart surgery. We investigated the potential prophylactic effect of angiotensin 1-7 (Ang 1-7) using an in vivo rat model of I/R injury and examined the underlying mechanisms. Rats were treated with Ang 1-7 (1 mg/kg, IP) 30 min before the surgical procedures. Twenty-four rats were equally divided into four groups: sham control, sham-treated with Ang 1-7, I/R injury group, and I/R injury group treated with Ang 1-7. In vivo I/R injury was induced by clamping the left coronary artery for 30 min, followed by 1 hour of reperfusion. The I/R group showed abnormal electrophysiological changes and arrhythmic episodes during electrocardiography (ECG) recording, increased oxidative stress, downregulation of peroxisome proliferator-activated receptor gamma (PPAR-γ), and upregulation of C-X-C motif chemokine ligand 16 (CXCL16) expression in cardiac tissue, which increased cardiac NF-kB expression and IL-17 levels. Moreover, I/R injury caused significant histological disruption and increased cyclooxygenase 2 (COX-2) and heat shock protein 90 (HSP90) immunoreactions, correlating with the extent of cardiac damage. However, preoperative Ang 1-7 administration significantly improved the electrophysiological, biochemical, and histopathological changes induced by I/R injury. This study demonstrated that Ang 1-7 exerted protective anti-arrhythmic, anti-inflammatory, and pro-healing effects by upregulating PPAR-γ and downregulating CXCL16, IL-17, and NF-kB pathways, suggesting it is a promising cardioprotective agent for preventing arrhythmias induced by I/R injury.
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