Antioxidants improve vascular function in children conceived by assisted reproductive technologies: A randomized

Stefano F Rimoldi1, Claudio Sartori2, Emrush Rexhaj3

  • 1Department of Cardiology and Clinical Research, Inselspital, University Hospital, Bern, Switzerland stefano.rimoldi@insel.ch.

Insights

Children conceived via assisted reproductive technology (ART) experience vascular dysfunction. Antioxidant treatment improved nitric oxide (NO) bioavailability and vascular function in these children, suggesting reversibility.

Area of Science:

  • Cardiovascular Science
  • Pediatric Health
  • Reproductive Medicine

Background:

  • Children conceived by assisted reproductive technology (ART) exhibit vascular dysfunction.
  • The mechanisms, long-term effects, and reversibility of ART-induced vascular dysfunction are not well understood.
  • ART in mice is linked to hypertension and reduced lifespan due to decreased nitric oxide (NO) synthesis.

Purpose of the Study:

  • To investigate if ART-induced vascular dysfunction in humans involves similar mechanisms as in mice.
  • To determine if this vascular dysfunction is potentially reversible.
  • To test if antioxidant supplementation can improve endothelial function by enhancing NO bioavailability.

Main Methods:

  • Prospective, double-blind, placebo-controlled study involving 21 ART children and 21 controls.
  • Four-week oral supplementation with antioxidant vitamins C and E or placebo.
  • Assessment of flow-mediated vasodilation (FMD) and pulmonary artery pressure via echocardiography during high-altitude exposure.

Main Results:

  • Antioxidant supplementation significantly increased plasma NO levels and FMD in ART children.
  • Altitude-induced pulmonary hypertension was attenuated in ART children receiving antioxidants.
  • No significant effects were observed in the control group.

Conclusions:

  • Antioxidant administration improved NO bioavailability and vascular responsiveness in ART children.
  • These findings suggest that ART-induced vascular dysfunction in young individuals is redox-regulated and reversible.
  • This highlights a potential therapeutic strategy for managing cardiovascular risk in ART-conceived children.
Abstract