High salt exacerbates programmed hypertension in maternal fructose-fed male offspring

Y-L Tain1, W-C Lee2, S Leu3

  • 1Department of Pediatrics, Kaohsiung Chang Gung Memorial Hospital and Chang Gung University, College of Medicine, Taiwan; Center for Translational Research in Biomedical Sciences, Kaohsiung Chang Gung Memorial Hospital and Chang Gung University, College of Medicine, Kaohsiung, Taiwan.

Insights

Maternal high fructose (HF) and postnatal high salt (HS) intake synergistically increase offspring blood pressure. These diets alter kidney gene expression, affecting the renin-angiotensin system and sodium transporters, leading to programmed hypertension.

Area of Science:

  • Endocrinology
  • Nephrology
  • Cardiovascular Science

Background:

  • High fructose (HF) consumption is linked to hypertension.
  • Increased salt intake significantly elevates hypertension risk.
  • The combined effects of maternal HF and postnatal HS on offspring blood pressure were unknown.

Purpose of the Study:

  • To investigate the synergistic effects of maternal HF and postnatal HS intake on blood pressure in adult offspring.
  • To elucidate the underlying mechanisms of HF and HS-induced hypertension in offspring.

Main Methods:

  • Pregnant rats were fed either regular chow or HF chow.
  • Offspring received either regular water or HS water from weaning to 3 months.
  • Offspring blood pressure and renal gene expression (renin-angiotensin system, sodium transporters) were analyzed.

Main Results:

  • Both HF and HS diets independently induced hypertension in offspring.
  • Combined HF and HS intake synergistically increased blood pressure.
  • HS intake altered kidney gene expression, including increased Ace and decreased Agtr1b and Mas1.
  • HF + HS group showed elevated Ace and Agtr1a mRNA levels.
  • HS and HF + HS groups exhibited increased renal sodium transporters.

Conclusions:

  • Postnatal HS intake exacerbates prenatal HF-induced programmed hypertension.
  • HF and HS induce hypertension via differential regulation of the renal renin-angiotensin system and sodium transporters.
  • Understanding the HF-HS interaction is crucial for preventing hypertension in at-risk mothers and children.
Abstract

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