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Published on: July 21, 2023
Implication of RAS in Postnatal Cardiac Remodeling, Fibrosis and Dysfunction Induced by Fetal Undernutrition
Pilar Rodríguez-Rodríguez1, Maria Sofía Vieira-Rocha2, Begoña Quintana-Villamandos3,4
1FOSCH Group, Department of Physiology, Faculty of Medicine, Universidad Autónoma de Madrid, 28029 Madrid, Spain.
Insights
Fetal undernutrition in rats leads to Renin-Angiotensin System (RAS) imbalance during lactation, causing cardiac remodeling and potential dysfunction. This sets the stage for future heart problems in male offspring.
Area of Science:
- Cardiovascular Physiology
- Developmental Biology
- Nutritional Science
Background:
- Fetal undernutrition is a known risk factor for adult cardiovascular diseases.
- Male offspring of undernourished rats show perinatal oxidative stress and later-life cardiac dysfunction.
- The Renin-Angiotensin System (RAS) is involved in cardiovascular remodeling and fibrosis.
Purpose of the Study:
- To investigate if alterations in the RAS during lactation contribute to cardiac dysfunction in male offspring exposed to fetal undernutrition.
- To assess the impact of maternal nutrient restriction on the cardiac and vascular RAS in offspring at weaning.
Main Methods:
- Maternal nutrient restriction during gestation (50% reduction) followed by ad libitum feeding during lactation.
- Assessment of offspring ventricular structure/function (echocardiography), blood pressure, cardiac collagen, and intramyocardial artery structure.
- Analysis of myocardial and vascular RAS components including receptor expression (immunohistochemistry) and plasma Angiotensin-II levels (ELISA).
Main Results:
- Male offspring from undernourished mothers (MUN) exhibited elevated plasma Angiotensin-II, increased left ventricular mass, and greater collagen deposition.
- MUN offspring showed altered ventricular diastolic function (lower end-diastolic diameter, lower E/A ratio) but normal ejection fraction and blood pressure.
- Intramyocardial arteries in MUN offspring displayed increased AT1 and Mas receptor expression, with decreased AT2 and MrgD receptors.
Conclusions:
- Fetal undernutrition induces a Renin-Angiotensin System (RAS) disbalance during the critical lactation window.
- This RAS imbalance is associated with cardiac remodeling and altered vascular receptor expression in offspring.
- These changes during lactation may establish the foundation for subsequent cardiac dysfunction in adulthood.
Abstract:
Fetal undernutrition is a risk factor for cardiovascular diseases. Male offspring from rats exposed to undernutrition during gestation (MUN) exhibit oxidative stress during perinatal life and develop cardiac dysfunction in ageing. Angiotensin-II is implicated in oxidative stress-mediated cardiovascular fibrosis and remodeling, and lactation is a key developmental window. We aimed to assess if alterations in RAS during lactation participate in cardiac dysfunction associated with fetal undernutrition. Control dams received food ad libitum, and MUN had 50% nutrient restriction during the second half of gestation. Both dams were fed ad libitum during lactation, and male offspring were studied at weaning. We assessed: ventricular structure and function (echocardiography); blood pressure (intra-arterially, anesthetized rats); collagen content and intramyocardial artery structure (Sirius red, Masson Trichromic); myocardial and intramyocardial artery RAS receptors (immunohistochemistry); plasma angiotensin-II (ELISA) and TGF-β1 protein expression (Western Blot). Compared to Control, MUN offspring exhibited significantly higher plasma Angiotensin-II and a larger left ventricular mass, as well as larger intramyocardial artery media/lumen, interstitial collagen and perivascular collagen. In MUN hearts, TGF-β1 tended to be higher, and the end-diastolic diameter and E/A ratio were significantly lower with no differences in ejection fraction or blood pressure. In the myocardium, no differences between groups were detected in AT1, AT2 or Mas receptors, with MrgD being significantly lower in the MUN group. In intramyocardial arteries from MUN rats, AT1 and Mas receptors were significantly elevated, while AT2 and MrgD were lower compared to Control. Conclusions. In rats exposed to fetal undernutrition, RAS disbalance and associated cardiac remodeling during lactation may set the basis for later heart dysfunction.
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