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A maternal high salt diet disturbs cardiac and vascular function of offspring
Kana Maruyama1, Satomi Kagota1, Bruce N Van Vliet2
1Department of Pharmacology, School of Pharmacy and Pharmaceutical Sciences, Mukogawa Women's University, 11-68 Koshien Kyuban-cho, Nishinomiya 663-8179, Japan.
Insights
Maternal high salt intake during pregnancy and lactation negatively impacts offspring cardiovascular health, leading to cardiac and vascular dysfunction. Limiting dietary salt during gestation is crucial for fetal development and long-term well-being.
Area of Science:
- Cardiovascular physiology
- Developmental programming
- Hypertension research
Background:
- High salt intake is a known risk factor for hypertension.
- Maternal diet can influence offspring cardiovascular health.
- The impact of maternal high salt intake on offspring cardiac and vascular function in spontaneously hypertensive rats (SHR) is not fully understood.
Purpose of the Study:
- To investigate the effects of maternal high salt diet exposure during gestation and lactation on the cardiac and arterial functions of SHR offspring.
Main Methods:
- SHR dams were fed either a high salt or control diet.
- Offspring were fed either a high salt or control diet after weaning for 8 weeks.
- Cardiac and arterial functions, including blood pressure, heart rate, left ventricular function, and aortic vasodilation in response to nitric oxide (NO), were assessed at 12 weeks of age.
Main Results:
- Offspring exposed to maternal high salt diet exhibited lower blood pressure, heart rate, impaired left ventricular systolic and diastolic function, and reduced aortic vasodilation to NO compared to controls.
- Postnatal high salt intake did not alter these parameters in offspring of dams fed a high salt diet.
- Neither maternal nor postnatal high salt intake affected levels of lipid peroxide, superoxide dismutase, or angiotensinogen mRNA.
Conclusions:
- Exposure to a high salt diet during gestation and lactation induces cardiac and vascular dysfunction in SHR offspring.
- These findings highlight the critical importance of avoiding excessive dietary salt intake during pregnancy and lactation for offspring cardiovascular health.
Aims:
High salt intake is an environmental factor that promotes increased blood pressure. We previously demonstrated that high salt diet causes aggravation of hypertension and impaired vasodilation in response to nitric oxide (NO) in young spontaneously hypertensive rats (SHR), which exhibit low sensitivity to salt in adulthood. Changes in offspring blood pressure and cardiovascular structures have been reported. However, it remains unclear to what extent a maternal high salt intake may affect cardiac and/or vascular function in offspring. Therefore, we investigated influence of exposure to a maternal high salt diet during gestation and lactation on offspring's cardiac and arterial functions in SHR.
Main Methods:
SHR dams were fed either a high salt diet or a control diet. After weaning, the offspring were fed the high salt diet or control diet for 8weeks.
Key Findings:
Compared with offspring of control diet-fed dams, at 12weeks of age, offspring of the high-salt diet-fed dams had lower blood pressure, heart rate, indices of both left ventricular systolic and diastolic function, and a decreased aortic vasodilation response to NO. Postnatal high salt intake did not affect blood pressure, vasodilatory response, or cardiac function in offspring of high-salt diet-fed dams. Neither maternal nor postnatal dietary salt altered levels of lipid peroxide, superoxide dismutase, or angiotensinogen mRNA in serum and ventricle of the offspring.
Significance:
Exposure to high maternal dietary salt induces cardiac and vascular dysfunction in offspring. These results point to the possible importance of avoiding excess dietary salt during gestation and lactation.
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