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Published on: June 6, 2025
Prenatal high-salt diet impaired vasodilatation with reprogrammed renin-angiotensin system in offspring rats
Yanping Liu1, Linglu Qi1, Jue Wu1
1Institute for Fetology, First Hospital of Soochow University, Suzhou.
Insights
Prenatal high-salt diet impairs offspring’s blood vessel function by increasing oxidative stress and affecting the renin-angiotensin system. This research offers insights into preventing fetal-origin cardiovascular diseases.
Area of Science:
- Cardiovascular Physiology
- Developmental Programming
- Oxidative Stress Research
Background:
- High-salt intake during pregnancy is associated with hypertension and increased offspring cardiovascular disease risk.
- Prenatal dietary factors can influence long-term health outcomes in offspring.
Purpose of the Study:
- To investigate the impact of a prenatal high-salt diet on nitric oxide-mediated vasodilation in adult offspring.
- To elucidate the underlying mechanisms, including oxidative stress and the renin-angiotensin system.
Main Methods:
- Pregnant rats were fed normal or high-salt diets.
- Vascular function and blood pressure responses to a nitric oxide donor were assessed in 5-month-old male offspring.
- Oxidative stress markers, antioxidant enzyme activity, NADPH oxidase subunits, and gene promoter methylation were analyzed.
Main Results:
- High-salt offspring exhibited significantly attenuated nitric oxide-mediated vasodilation.
- Increased oxidative stress markers, reduced antioxidant activity, and elevated NADPH oxidase (Nox2, Nox4) expression were observed.
- Activation of the local renin-angiotensin system and increased DNA methylation of the angiotensin-converting enzyme gene promoter were noted.
Conclusions:
- Prenatal high-salt diet impairs nitric oxide-mediated vasodilation in offspring.
- Increased oxidative stress and altered renin-angiotensin system activity are key mechanisms involved.
- Findings contribute to understanding and preventing fetal-origin cardiovascular diseases.
Aims:
High-salt diet is linked to hypertension, and prenatal high-salt diet increases the risk of cardiovascular diseases in the offspring. The present study investigated whether and how prenatal high-salt diet influenced nitric oxide-mediated vasodilatation in the offspring.
Methods And Results:
Pregnant rats were fed either normal-salt (1% sodium chloride) or high-salt (8% sodium chloride) diet during gestation. Experiments were conducted in 5-month-old male offspring. Sodium nitroprusside (SNP, nitric oxide donor)-induced hypotensive responses (in vivo) and vascular dilatation (in vitro) was significantly attenuated (Emax: 84 ± 2 vs. 51 ± 2, high-salt vs. control, P < 0.001) in the high-salt offspring, indicating reduced vascular relaxations. Pretreatment with Tempol (reactive oxygen species scavenger) alleviated this attenuation. The high-salt offspring showed an increased level of oxidative stress markers in both mesenteric arteries and plasma samples. The antioxidant activity, serum superoxide dismutase and catalase were significantly reduced, whereas malondialdehyde was increased in the high-salt offspring. O2 production, and protein expression of Nox2 and Nox4 in mesenteric arteries was significantly increased in the high-salt offspring whereas Nox1 showed no changes. The local renin-angiotensin system in mesenteric arteries was activated, associated with an increased NADPH oxidase. DNA methylation at the proximal promoter of angiotensin-converting enzyme gene in the lung was significantly increased in the high-salt offspring (P = 0.004).
Conclusion:
The results suggest that prenatal high-salt diet impairs nitric oxide-mediated vasodilatation because of the increased oxidative stress-affected renin-angiotensin system in the high-salt offspring, providing new information for understanding, and early prevention of cardiovascular diseases in fetal origins.
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