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Originally published October 28 2005

New research demonstrates the impact of infant genes on mothers

by Mike Adams, the Health Ranger, NaturalNews Editor

The Journal of Lipid Research has published a study by a Belgian researcher that examines the impact of an infant's genes on its mother's metabolism.



A group of Belgian researchers has determined that a pregnant woman's ability to metabolize fats is determined not only by her genes but by her baby's genes as well. The details of their findings appear in the November issue of the Journal of Lipid Research, an American Society for Biochemistry and Molecular Biology journal. The researchers, led by Olivier S. Descamps of the Centre de Recherche M�dicale de Jolimont in Haine Saint-Paul and of the Universit� Catholique de Louvain in Brussels, studied genes and proteins involved in fat metabolism from the blood and placenta of 525 pregnant women. Because all cells from the placenta originate from the fetus, they are a good indication of the genes and proteins produced by the baby. Descamps and his co-workers discovered that the baby's genes had almost as much influence as the mother's genes on her lipoprotein levels. Because increased levels of lipoproteins can lead to pre-eclampsia and pancreatitis in pregnant women and also increase their future risk of cardiovascular disease, these findings are of particular interest to the medical community. "Lipoproteins represent the only way for lipids, which are insoluble in water, to be transported through the blood circulation, composed exclusively of water." The study focused on two specific proteins involved in lipid metabolism, lipoprotein lipase and apolipoprotein E. "Apolipoprotein E and lipoprotein lipase play important roles in the degradation of triglyceride-rich lipoproteins," notes Descamps. The researchers looked at several genetic variations (also known as polymorphisms) of lipoprotein lipase and apolipoprotein E that are known to influence the concentrations of triglycerides and cholesterol in the general population. They found that when these polymorphisms were present in the babies, their mothers' triglyceride and cholesterol levels were influenced to the same extent that they would be if the polymorphisms were present in the mothers.


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