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Updated: Apr 7, 2026

Acute Myocardial Infarction in Rats
Published on: February 16, 2011
Ultrastructural changes associated with myocardial apoptosis, in failing rat hearts induced by volume overload
S Treskatsch1, M Shakibaei2, A Feldheiser1
1Department of Anesthesiology and Intensive Care Medicine, Campus Charité Mitte, Campus Virchow-Klinikum, Charité - Universitätsmedizin Berlin, Charitéplatz 1, 10117 Berlin, Germany.
Insights
Congestive heart failure (CHF) involves myocardial apoptosis, confirmed by electron microscopy showing significant ultrastructural changes in cardiomyocytes. This study provides direct evidence of apoptosis in an experimental heart failure model.
Area of Science:
- Cardiovascular Biology
- Cellular Pathology
- Molecular Medicine
Background:
- Myocardial apoptosis is implicated in congestive heart failure (CHF) development.
- Existing evidence for apoptosis in heart failure is limited by scarce electron microscopy data.
- This study sought direct morphological evidence of myocardial apoptosis in an experimental heart failure model.
Purpose of the Study:
- To investigate the role of myocardial apoptosis in volume overload-induced heart failure.
- To provide direct ultrastructural evidence of cardiomyocyte apoptosis using electron microscopy.
- To elucidate the mechanisms of apoptosis activation in experimental heart failure.
Main Methods:
- An aortocaval fistula (ACF) model was created in Wistar rats.
- Hemodynamic measurements, Western blot, immunofluorescence, and electron microscopy were performed.
- Samples were analyzed 28±2 days post-ACF induction.
Main Results:
- ACF rats exhibited increased heart and lung weight indices and impaired systolic/diastolic function.
- Activated caspase-3 and mitochondrial cytochrome c leakage were significantly increased in failing hearts.
- Electron microscopy revealed extensive cardiomyocyte ultrastructural changes, including nuclear condensation and mitochondrial damage, in >70% of ACF rats.
Conclusions:
- Volume overload-induced heart failure activates the mitochondrial apoptotic pathway.
- Electron microscopy provides direct ultrastructural evidence of significant myocardial apoptosis in this experimental model.
- These findings reinforce the role of apoptosis in the pathogenesis of heart failure.
Background:
Myocardial apoptosis has been discussed to play a pivotal role in the development and progression of congestive heart failure (CHF). However, recently there is doubt on the evidence of myocardial apoptosis in heart failure as information on ultrastructural changes by electron microscopy is still scarce. This project therefore aimed to detect direct morphological evidence of myocardial apoptosis in an experimental heart failure model.
Method:
Following IRB approval, an aortocaval fistula (ACF) was induced in male Wistar rats using a 16G needle. 28±2days following ACF rats were examined by hemodynamic measurements, Western blot, immunofluorescence confocal and electron microscopic analysis.
Results:
Within 28±2days of ACF heart (3.8±0.1 vs. 6.6±0.3mg/g) and lung (3.7±0.2 vs. 6.9±0.5mg/g) weight indices significantly increased in the ACF group accompanied by a restriction in systolic (LVEF: 72±2 vs. 39±3%) and diastolic (dP/dtmin.: -10,435±942 vs. -5982±745mmHg/s) function (p<0.01). Activated caspase-3 was significantly increased in failing hearts concomitant with mitochondrial leakage of cytochrome c into the cytosol. Finally, electron microscopy of the left ventricle (LV) of ACF rats revealed pronounced ultrastructural changes in >70% of examined cardiomyocytes, such as nuclear chromatin condensation, myofibril loss and disarray, contour irregularities and amorphous dense bodies, mitochondriosis and damaged cell-cell-contacts between cardiomyocytes.
Conclusions:
Volume overload induced heart failure is associated with activation of the mitochondrial apoptotic pathway. In addition, electron microscopy of the LV revealed direct ultrastructural evidence of extended myocardial apoptosis in ACF rats.
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