Literature DB >> 19136496

In vitro neurogenesis from neural progenitor cells isolated from the hippocampus region of the brain of adult rats exposed to ethanol during early development through their alcohol-drinking mothers.

Ashok K Singh1, Shveta Gupta, Yin Jiang, Mohammed Younus, Mohammed Ramzan.   

Abstract

AIMS: This study was aimed to determine whether ethanol exposure during early development altered neurogenesis in the brain of adult rats.
METHODS: Pregnant rats were given either ethanol-mixed or mannose-mixed (for control) rodent liquid diet ad libitum. Ethanol drinking continued during pregnancy and nursing. After weaning, the pups (AC(o): pups from control mothers, AE(o): pups from ethanol exposed mothers) received normal diet and water ad libitum for 11 weeks. Then the rats were anesthetized, their brains were collected and the hippocampal samples were processed for isolation of neural progenitor cells (NPCs). AC(o) NPCs and AE(o) NPCs were sequentially grown in media containing different growth factors that induced proliferation and differentiation. RESULTS AND
CONCLUSIONS: Neuronal maturation was significantly delayed in ethanol-exposed rats. AC(o) NPCs, up to day 7 of culture, exhibited high beta-catenin-probe binding, an increase in Ca(2+) when exposed to gamma-amino butyric acid (GABA) and lack of response to glutamate (Glu) exposure. beta-Catenin-probe binding and the stimulatory effects of GABA declined thereafter. AC(o) NPCs, at culture day 29, exhibited high beta-catenin-probe binding, lack of response to GABA and elevated Glu-induced increase in Ca(2+i). Cultures of AE(o) NPCs showed an amplified stimulatory effects of GABA, attenuated stimulatory effects of Glu and attenuated the delayed (culture day 29) increase in the expression of Wnt proteins and beta-catenin-probe binding. This suggests a significant alteration in neurogenesis and synapse formation in adult rats exposed to ethanol at early development through their alcohol-drinking mothers.

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Year:  2009        PMID: 19136496     DOI: 10.1093/alcalc/agn109

Source DB:  PubMed          Journal:  Alcohol Alcohol        ISSN: 0735-0414            Impact factor:   2.826


  22 in total

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2.  Prenatal alcohol exposure reduces the proportion of newly produced neurons and glia in the dentate gyrus of the hippocampus in female rats.

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4.  Neonatal alcohol exposure disrupts hippocampal neurogenesis and contextual fear conditioning in adult rats.

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Review 5.  Neurotrophins in the Brain: Interaction With Alcohol Exposure During Development.

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6.  Alcohol Regulates BK Surface Expression via Wnt/β-Catenin Signaling.

Authors:  Cristina Velázquez-Marrero; Alexandra Burgos; José O García; Stephanie Palacio; Héctor G Marrero; Alexandra Bernardo; Juliana Pérez-Laspiur; Marla Rivera-Oliver; Garrett Seale; Steven N Treistman
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7.  Differential Contributions of Alcohol and Nicotine-Derived Nitrosamine Ketone (NNK) to White Matter Pathology in the Adolescent Rat Brain.

Authors:  Ming Tong; Rosa Yu; Elizabeth Silbermann; Valerie Zabala; Chetram Deochand; Suzanne M de la Monte
Journal:  Alcohol Alcohol       Date:  2015-09-15       Impact factor: 2.826

8.  Moderate fetal alcohol exposure impairs neurogenic capacity of murine neural stem cells isolated from the adult subventricular zone.

Authors:  Tamara Roitbak; Kelsey Thomas; Ashleigh Martin; Andrea Allan; Lee Anna Cunningham
Journal:  Exp Neurol       Date:  2011-03-16       Impact factor: 5.330

9.  Inhibitory Effects of Bisphenol-A on Neural Stem Cells Proliferation and Differentiation in the Rat Brain Are Dependent on Wnt/β-Catenin Pathway.

Authors:  Shashi Kant Tiwari; Swati Agarwal; Brashket Seth; Anuradha Yadav; Ratan Singh Ray; Vijay Nath Mishra; Rajnish Kumar Chaturvedi
Journal:  Mol Neurobiol       Date:  2014-11-09       Impact factor: 5.590

10.  Impact of exercise and a complex environment on hippocampal dendritic morphology, Bdnf gene expression, and DNA methylation in male rat pups neonatally exposed to alcohol.

Authors:  K E Boschen; S E McKeown; T L Roth; A Y Klintsova
Journal:  Dev Neurobiol       Date:  2016-09-21       Impact factor: 3.964

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