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Effect of Angiotensin(1-7) on Heart Function in an Experimental Rat Model of Obesity
Katja Blanke1, Franziska Schlegel2, Walter Raasch3
1Department of Pediatric Cardiology, Heart Center Leipzig, University of Leipzig Leipzig, Germany.
Aim:
Obesity is a risk factor for the development of cardiovascular diseases. Recently it was shown that overexpression of the Mas-receptor antagonist angiotensin(1-7) could prevent from diet-induced obesity. However, it remained unclear whether diet-induced obesity and angiotensin(1-7) overexpression might also have effects on the cardiovascular system in these rats.
Methods:
Twenty three male Sprague Dawley rats were fed with standard chow (SD+chow, n = 5) or a cafeteria diet (SD+CD, n = 6) for 5 months. To investigate the effect of angiotensin(1-7) transgenic rats, expressing an angiotensin(1-7)-producing fusion protein in testis were used. These transgenic rats also received a 5 month's feeding period with either chow (TGR+chow, n = 6) or cafeteria diet (TGR+CD, n = 6), respectively. Hemodynamic measurements (pressure-volume loops) were carried out to assess cardiac function and blood pressure. Subsequently, hearts were explanted and investigated according to the Langendorff technique. Furthermore, cardiac remodeling in these animals was investigated histologically.
Results:
After 5 months cafeteria diet feeding rats showed a significantly increased body weight, which could be prevented in transgenic rats. However, there was no effect on cardiac performance after cafeteria diet in non-transgenic and transgenic rats. Moreover, overexpression of angiotensin(1-7) deteriorated cardiac contractility as indicated by impaired dp/dt. Furthermore, histological analysis revealed that cafeteria diet led to myocardial fibrosis in both, control and transgenic rats and this was not inhibited by an overproduction of angiotensin(1-7).
Conclusion:
These results indicate that an overexpression of circulating angiotensin(1-7) prevents a cafeteria diet-induced increase in body weight, but does not affect cardiac performance in this experimental rat model of obesity. Furthermore, overexpression of angiotensin(1-7) alone resulted in an impairment of cardiac function.
Insights
Overexpression of angiotensin(1-7) prevented diet-induced obesity in rats but did not improve cardiac function. However, angiotensin(1-7) overexpression alone impaired cardiac contractility and did not prevent diet-induced myocardial fibrosis.
Area of Science:
- Cardiovascular Physiology
- Endocrinology
- Obesity Research
Background:
- Obesity is a significant risk factor for cardiovascular diseases.
- The Mas-receptor antagonist angiotensin(1-7) has shown potential in preventing diet-induced obesity.
- The cardiovascular effects of angiotensin(1-7) overexpression in the context of obesity remain unclear.
Purpose of the Study:
- To investigate the impact of diet-induced obesity and angiotensin(1-7) overexpression on cardiovascular function in rats.
- To determine if angiotensin(1-7) overexpression affects cardiac performance and remodeling in obese rats.
Main Methods:
- Male Sprague Dawley rats were fed standard chow or a cafeteria diet for 5 months.
- Transgenic rats overexpressing angiotensin(1-7) were used alongside controls.
- Cardiac function was assessed via hemodynamic measurements (pressure-volume loops), and hearts were analyzed histologically.
Main Results:
- Cafeteria diet significantly increased body weight, an effect prevented by angiotensin(1-7) overexpression.
- No significant effect on cardiac performance was observed in cafeteria diet-fed rats (transgenic or non-transgenic).
- Angiotensin(1-7) overexpression alone impaired cardiac contractility (dp/dt) and did not prevent diet-induced myocardial fibrosis.
Conclusions:
- Overexpression of angiotensin(1-7) effectively prevents diet-induced weight gain but does not improve cardiac performance in this rat model.
- Independent overexpression of angiotensin(1-7) leads to impaired cardiac function.
- Angiotensin(1-7) does not mitigate diet-induced myocardial fibrosis in obese rats.
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