Role of lipids and fatty acids in macrosomic offspring of diabetic pregnancy

NA Khan - Cell biochemistry and biophysics, 2007 - Springer
Cell biochemistry and biophysics, 2007Springer
Diabetic pregnancy frequently results in macrosomia or fetal obesity. It seems that the
anomalies in carbohydrate and lipid metabolism in macrosomic infants of diabetic mothers
are due to maternal hyperglycemia, which leads to fetal hyperinsulinemia. We have
developed a rat model of macrosomic offspring and assessed the onset of obesity in these
animals. The macrosomic offspring born to diabetic mothers are prone to the development of
glucose intolerance and obesity as a function of age. It seems that in utero programing …
Abstract
Diabetic pregnancy frequently results in macrosomia or fetal obesity. It seems that the anomalies in carbohydrate and lipid metabolism in macrosomic infants of diabetic mothers are due to maternal hyperglycemia, which leads to fetal hyperinsulinemia. We have developed a rat model of macrosomic offspring and assessed the onset of obesity in these animals. The macrosomic offspring born to diabetic mothers are prone to the development of glucose intolerance and obesity as a function of age. It seems that in utero programing during diabetic pregnancy creates a “metabolic memory” which is responsible for the development of obesity in macrosomic offspring. We have demonstrated that the metabolism of lipids, and altered anti-oxidant status and immune system are implicated in the etiopathology of obesity in these animals. We have reported beneficial effects of n-3 polyunsaturated fatty acids (PUFAs) in obese animals, born to diabetic dams.
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