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Nutrition Commons

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2018

Publications and Research

Choline

Articles 1 - 2 of 2

Full-Text Articles in Nutrition

Maternal Choline And Betaine Supplementation Modifies The Placental Response To Hyperglycemia In Mice And Human Trophoblasts, Khatia Nanobashvili, Chauntelle Jack-Roberts, Rachel Bretter, Naudia Jones, Kathleen Axen, Anjana Saxena, Kali Blain, Xinyin Jiang Oct 2018

Maternal Choline And Betaine Supplementation Modifies The Placental Response To Hyperglycemia In Mice And Human Trophoblasts, Khatia Nanobashvili, Chauntelle Jack-Roberts, Rachel Bretter, Naudia Jones, Kathleen Axen, Anjana Saxena, Kali Blain, Xinyin Jiang

Publications and Research

Gestational diabetes mellitus (GDM) is characterized by excessive placental fat and glucose transport, resulting in fetal overgrowth. Earlier we demonstrated that maternal choline supplementation normalizes fetal growth in GDM mice at mid-gestation. In this study, we further assess how choline and its oxidation product betaine influence determinants of placental nutrient transport in GDM mice and human trophoblasts. C57BL/6J mice were fed a high-fat (HF) diet 4 weeks prior to and during pregnancy to induce GDM or fed a control normal fat (NF) diet. The HF mice also received 25 mM choline, 85 mM betaine, or control drinking water. We observed …


Maternal Choline Supplementation During Normal Murine Pregnancy Alters The Placental Epigenome: Results Of An Exploratory Study, Sze Ting (Cecilia) Kwan, Julia H. King, Jennifer K. Grenier, Jian Yan, Xinyin Jiang, Mark S. Roberson, Marie A. Caudill Mar 2018

Maternal Choline Supplementation During Normal Murine Pregnancy Alters The Placental Epigenome: Results Of An Exploratory Study, Sze Ting (Cecilia) Kwan, Julia H. King, Jennifer K. Grenier, Jian Yan, Xinyin Jiang, Mark S. Roberson, Marie A. Caudill

Publications and Research

The placental epigenome regulates processes that affect placental and fetal development, and could be mediating some of the reported effects of maternal choline supplementation (MCS) on placental vascular development and nutrient delivery. As an extension of work previously conducted in pregnant mice, the current study sought to explore the effects of MCS on various epigenetic markers in the placenta. RNA and DNA were extracted from placentas collected on embryonic day 15.5 from pregnant mice fed a 1X or 4X choline diet, and were subjected to genome-wide sequencing procedures or mass-spectrometry-based assays to examine placental imprinted gene expression, DNA methylation patterns, …