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Title: Global methylation in the placenta and umbilical cord blood from pregnancies with maternal gestational diabetes, preeclampsia, and obesity.

Authors: Nomura, Yoko; Lambertini, Luca; Rialdi, Alexander; Lee, MenJean; Mystal, Elana Ying; Grabie, Mordy; Manaster, Isaac; Huynh, Nancy; Finik, Jackie; Davey, Mia; Davey, Kei; Ly, Jenny; Stone, Joanne; Loudon, Holly; Eglinton, Gary; Hurd, Yasmin; Newcorn, Jeffrey H; Chen, Jia

Published In Reprod Sci, (2014 Jan)

Abstract: Emerging evidence indicates that maternal medical risk during pregnancy, such as gestational diabetes mellitus (GDM), preeclampsia, and obesity, predisposes the offspring to suboptimal development. However, the underlying biological/epigenetic mechanism in utero is still unknown. The current pilot study (N = 50) compared the levels of global methylation in the placenta and umbilical cord blood among women with and without each risk condition (GDM, preeclampsia, and obesity) and explored whether the levels of global methylation were associated with fetal/infant growth. Results show that global methylation levels in the placenta were lower in patients with gestational diabetes (P = .003) and preeclampsia (P = .05) but higher with obesity (P = .01). Suggestive negative associations were found between global methylation level in the placenta and infant body length and head circumference. While preliminary, it is possible that the placenta tissue, but not umbilical cord blood, may be epigenetically programmed by maternal GDM, preeclampsia, and obesity to carry out its own specific functions that influence fetal growth.

PubMed ID: 23765376 Exiting the NIEHS site

MeSH Terms: Adolescent; Adult; Birth Weight; Cephalometry; DNA Methylation*; Diabetes, Gestational/diagnosis; Diabetes, Gestational/genetics*; Epigenesis, Genetic; Female; Fetal Blood/chemistry*; Fetal Development/genetics*; Head/anatomy & histology; Humans; Infant, Newborn; Male; Obesity/diagnosis; Obesity/genetics*; Pilot Projects; Placenta/chemistry*; Pre-Eclampsia/diagnosis; Pre-Eclampsia/genetics*; Pregnancy; Young Adult

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