Choline availability modulates neurogenesis and cerebral cortex development through the regulation of neural progenitor cell (NPC) proliferative and differentiation capacity. In this study, we demonstrated that cortical NPC self-renewal is controlled by choline via the expression of a microRNA (miR-129-5p), whose role in the developing brain has not been examined, and which, in turn, inhibits synthesis of the epidermal growth factor receptor (EGFR) protein. Specifically, we found that low choline (LC) availability led to the upregulation of miR-129-5p expression in cortical NPCs in vitro and in vivo, causing the downregulation of EGFR and thereby disrupting NPC self-renewal and cortical neurogenesis. Furthermore, in response to LC availabil...
Fetal nutrition sets the stage for organ function in later life. In this review we discuss the fetal...
Maternal choline availability is essential for fetal neurogenesis. Choline deprivation (CD) causes h...
The medial prefrontal cortex (mPFC), master regulator of higher-order cognitive functions, is the on...
Choline availability regulates neural progenitor cell proliferation and differentiation in the devel...
Maternal diets low in choline, an essential nutrient, increase the risk of neural tube defects and l...
Choline is an important methyl donor and a component of membrane phospholipids. In this study, we te...
The availability of choline during critical periods of fetal development alters hippocampal developm...
Fetal progenitor cells proliferate, migrate, differentiate and undergo apoptosis at specific times d...
Previously, we reported that dietary choline influences development of the hippocampus in fetal rat ...
Regulation of cellular proliferation and differentiation during brain development results from proce...
The medial prefrontal cortex (mPFC), master regulator of higher-order cognitive functions, is the on...
Choline is an essential nutrient that is critical during fetal brain development. Choline deficiency...
Choline is derived not only from the diet, but also from de novo synthesis. It is important for meth...
Adequate supply of choline, an essential nutrient, is necessary to support proper brain development....
Over the course of cortical neurogenesis, the transition of progenitors from proliferation to differ...
Fetal nutrition sets the stage for organ function in later life. In this review we discuss the fetal...
Maternal choline availability is essential for fetal neurogenesis. Choline deprivation (CD) causes h...
The medial prefrontal cortex (mPFC), master regulator of higher-order cognitive functions, is the on...
Choline availability regulates neural progenitor cell proliferation and differentiation in the devel...
Maternal diets low in choline, an essential nutrient, increase the risk of neural tube defects and l...
Choline is an important methyl donor and a component of membrane phospholipids. In this study, we te...
The availability of choline during critical periods of fetal development alters hippocampal developm...
Fetal progenitor cells proliferate, migrate, differentiate and undergo apoptosis at specific times d...
Previously, we reported that dietary choline influences development of the hippocampus in fetal rat ...
Regulation of cellular proliferation and differentiation during brain development results from proce...
The medial prefrontal cortex (mPFC), master regulator of higher-order cognitive functions, is the on...
Choline is an essential nutrient that is critical during fetal brain development. Choline deficiency...
Choline is derived not only from the diet, but also from de novo synthesis. It is important for meth...
Adequate supply of choline, an essential nutrient, is necessary to support proper brain development....
Over the course of cortical neurogenesis, the transition of progenitors from proliferation to differ...
Fetal nutrition sets the stage for organ function in later life. In this review we discuss the fetal...
Maternal choline availability is essential for fetal neurogenesis. Choline deprivation (CD) causes h...
The medial prefrontal cortex (mPFC), master regulator of higher-order cognitive functions, is the on...