Antioxidative treatment of pregnant diabetic rats diminishes embryonic dysmorphogenesis

Jonas Cederberg1, Ulf J Eriksson

  • 1Department of Medical Cell Biology, Uppsala University, Uppsala, Sweden.

Abstract

Insights

Extremely high doses of antioxidants like alpha-tocopherol and ascorbate improved fetal development in diabetic rat pregnancies. However, these high doses may pose risks in nondiabetic pregnancies, highlighting a delicate balance for safe antioxidant supplementation.

Area of Science:

  • Reproductive biology
  • Developmental toxicology
  • Nutritional science

Background:

  • Diabetic pregnancy increases congenital malformation risk despite clinical interventions.
  • Oxidative stress is implicated in diabetic embryopathy.
  • Antioxidants alpha-tocopherol and ascorbate show promise in improving fetal outcomes in rodent models.

Purpose of the Study:

  • To investigate the effects of extremely high doses of alpha-tocopherol and ascorbate on fetal development in diabetic rat pregnancies.
  • To assess potential adverse effects of these high-dose antioxidant treatments on fetal development.

Main Methods:

  • Nondiabetic and streptozotocin-induced diabetic female rats were administered diets containing varying percentages of alpha-tocopherol (2-15%) or ascorbate (4-15%).
  • Fetal morphology and developmental outcomes were assessed in the offspring.

Main Results:

  • Both alpha-tocopherol and ascorbate treatments improved fetal morphology in offspring of diabetic rats.
  • Alpha-tocopherol showed a dose-dependent improvement, with higher doses more effective.
  • Ascorbate also tended to improve outcomes at higher doses, though less dose-dependently. One case of agnathia occurred in a nondiabetic fetus exposed to 15% alpha-tocopherol.

Conclusions:

  • Very high dietary antioxidant doses may be necessary to normalize fetal development in experimental diabetic pregnancy.
  • Such high antioxidant doses could potentially cause adverse effects in nondiabetic pregnancies.

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