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Antioxidative treatment of pregnant diabetic rats diminishes embryonic dysmorphogenesis
Jonas Cederberg1, Ulf J Eriksson
1Department of Medical Cell Biology, Uppsala University, Uppsala, Sweden.
Background:
Diabetic pregnancy is still associated with an increased rate of congenital malformations despite extensive clinical efforts to normalize the risk for the offspring. The etiology of diabetic embryopathy is not clear; however, experimental studies have suggested a role for oxidative stress in the teratogenicity of diabetic pregnancy. The antioxidants alpha-tocopherol and ascorbate have improved fetal outcome in diabetic rodent pregnancy when supplemented in moderate to high doses. In the present work we investigated if extremely high doses of either alpha-tocopherol or ascorbate might further improve fetal outcome in offspring of diabetic rats and, in addition, if such treatment may exert any adverse effects of fetal development.
Methods:
Nondiabetic and streptozotocin diabetic female rats were fed 2, 5, 10, or 15% alpha-tocopherol or 4, 10, or 15% ascorbate in their diet.
Results:
Both alpha-tocopherol and ascorbate treatment improved fetal morphology in offspring of diabetic rats. There was a dose-dependent improvement for the alpha-tocopherol supplementation, in which the higher doses diminished fetal dysmorphogenesis more than the 2% diet. The ascorbate supplementation was less dose-dependent; however, the higher doses tended to improve fetal outcome more than the lower doses. No adverse effects of the antioxidants were noted in the offspring with the exception of 1 case of agnathia in a fetus of a nondiabetic rat supplemented with 15% alpha-tocopherol.
Conclusions:
These results indicate that very high doses of dietary antioxidants may be needed to normalize the development of the offspring in experimental diabetic pregnancy, but that treatment with such high doses may also have adverse effects in nondiabetic pregnancy.
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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