MicroRNAs and fetal brain development: Implications for ethanol teratology during the second trimester period of neurogenesis.

Maternal ethanol consumption during pregnancy can lead to a stereotypic cluster of fetal craniofacial, cardiovascular, skeletal and neurological deficits that are collectively termed the Fetal Alcohol Spectrum Disorder (FASD). Fetal ethanol exposure is a leading non-genetic cause of mental retardati...

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Published in:Frontiers in Genetics
Main Author: Rajesh eMiranda
Format: Article
Language:English
Published: Frontiers Media S.A. 2012-05-01
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fgene.2012.00077/full
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author Rajesh eMiranda
author_facet Rajesh eMiranda
author_sort Rajesh eMiranda
collection DOAJ
container_title Frontiers in Genetics
description Maternal ethanol consumption during pregnancy can lead to a stereotypic cluster of fetal craniofacial, cardiovascular, skeletal and neurological deficits that are collectively termed the Fetal Alcohol Spectrum Disorder (FASD). Fetal ethanol exposure is a leading non-genetic cause of mental retardation. Mechanisms underlying the etiology of ethanol teratology are varied and complex. This review will focus on the developing brain as an important and vulnerable ethanol target. Near the end of the first trimester, and during the second trimester, fetal neural stem cells (NSCs) produce most of the neurons of the adult brain, and ethanol has been shown to influence NSC renewal and maturation. We will discuss the neural developmental and teratological implications of the biogenesis and function of microRNAs (miRNAs), a class of small non-protein-coding RNAs that control the expression of gene networks by translation repression. A small but growing body of research has identified ethanol-sensitive miRNAs at different stages of NSC and brain maturation. While many microRNAs appear to be vulnerable to ethanol at specific developmental stages, a few, like the miR-9 family, appear to exhibit broad vulnerability to ethanol across multiple stages of NSC differentiation. An assessment of the regulation and function of these miRNAs provides important clues about the mechanisms that underlie fetal vulnerability to alterations in the maternal-fetal environment and yields insights into the genesis of FASD.
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spelling doaj-art-ecef6e8efe9244fe979babdcfc2755f22025-08-19T22:20:21ZengFrontiers Media S.A.Frontiers in Genetics1664-80212012-05-01310.3389/fgene.2012.0007725961MicroRNAs and fetal brain development: Implications for ethanol teratology during the second trimester period of neurogenesis.Rajesh eMiranda0Texas A&M Health Science CenterMaternal ethanol consumption during pregnancy can lead to a stereotypic cluster of fetal craniofacial, cardiovascular, skeletal and neurological deficits that are collectively termed the Fetal Alcohol Spectrum Disorder (FASD). Fetal ethanol exposure is a leading non-genetic cause of mental retardation. Mechanisms underlying the etiology of ethanol teratology are varied and complex. This review will focus on the developing brain as an important and vulnerable ethanol target. Near the end of the first trimester, and during the second trimester, fetal neural stem cells (NSCs) produce most of the neurons of the adult brain, and ethanol has been shown to influence NSC renewal and maturation. We will discuss the neural developmental and teratological implications of the biogenesis and function of microRNAs (miRNAs), a class of small non-protein-coding RNAs that control the expression of gene networks by translation repression. A small but growing body of research has identified ethanol-sensitive miRNAs at different stages of NSC and brain maturation. While many microRNAs appear to be vulnerable to ethanol at specific developmental stages, a few, like the miR-9 family, appear to exhibit broad vulnerability to ethanol across multiple stages of NSC differentiation. An assessment of the regulation and function of these miRNAs provides important clues about the mechanisms that underlie fetal vulnerability to alterations in the maternal-fetal environment and yields insights into the genesis of FASD.http://journal.frontiersin.org/Journal/10.3389/fgene.2012.00077/fullNeural Stem CellsmicroRNAFetal Alcohol Spectrum DisordersFASDmiR-9Cerebral cortical development
spellingShingle Rajesh eMiranda
MicroRNAs and fetal brain development: Implications for ethanol teratology during the second trimester period of neurogenesis.
Neural Stem Cells
microRNA
Fetal Alcohol Spectrum Disorders
FASD
miR-9
Cerebral cortical development
title MicroRNAs and fetal brain development: Implications for ethanol teratology during the second trimester period of neurogenesis.
title_full MicroRNAs and fetal brain development: Implications for ethanol teratology during the second trimester period of neurogenesis.
title_fullStr MicroRNAs and fetal brain development: Implications for ethanol teratology during the second trimester period of neurogenesis.
title_full_unstemmed MicroRNAs and fetal brain development: Implications for ethanol teratology during the second trimester period of neurogenesis.
title_short MicroRNAs and fetal brain development: Implications for ethanol teratology during the second trimester period of neurogenesis.
title_sort micrornas and fetal brain development implications for ethanol teratology during the second trimester period of neurogenesis
topic Neural Stem Cells
microRNA
Fetal Alcohol Spectrum Disorders
FASD
miR-9
Cerebral cortical development
url http://journal.frontiersin.org/Journal/10.3389/fgene.2012.00077/full
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