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Alcohol-responsive genes identified in human iPSC-derived neural cultures.


ABSTRACT: Alcohol use contributes to numerous diseases and injuries. The nervous system is affected by alcohol in diverse ways, though the molecular mechanisms of these effects are not clearly understood. Using human-induced pluripotent stem cells (iPSCs), we developed a neural cell culture model to identify the mechanisms of alcohol's effects. iPSCs were generated from fibroblasts and differentiated into forebrain neural cells cultures that were treated with 50?mM alcohol or sham conditions (same media lacking alcohol) for 7 days. We analyzed gene expression using total RNA sequencing (RNA-seq) for 34 samples derived from 10 subjects and for 10 samples from 5 subjects in an independent experiment that had intermittent exposure to the same dose of alcohol. We also analyzed genetic effects on gene expression and conducted a weighted correlation network analysis. We found that differentiated neural cell cultures have the capacity to recapitulate gene regulatory effects previously observed in specific primary neural tissues and identified 226 genes that were differentially expressed (FDR?

SUBMITTER: Jensen KP 

PROVIDER: S-EPMC6414668 | biostudies-literature | 2019 Mar

REPOSITORIES: biostudies-literature

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Alcohol-responsive genes identified in human iPSC-derived neural cultures.

Jensen Kevin P KP   Lieberman Richard R   Kranzler Henry R HR   Gelernter Joel J   Clinton Kaitlin K   Covault Jonathan J  

Translational psychiatry 20190312 1


Alcohol use contributes to numerous diseases and injuries. The nervous system is affected by alcohol in diverse ways, though the molecular mechanisms of these effects are not clearly understood. Using human-induced pluripotent stem cells (iPSCs), we developed a neural cell culture model to identify the mechanisms of alcohol's effects. iPSCs were generated from fibroblasts and differentiated into forebrain neural cells cultures that were treated with 50 mM alcohol or sham conditions (same media l  ...[more]

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