Metabolomics,Unknown,Transcriptomics,Genomics,Proteomics

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Gene expression data from acetaminophen-induced toxicity in human hepatic in vitro systems and clinical liver samples


ABSTRACT: In this study we conducted transcriptomics analyses of: (i) liver samples from patients suffering from acetaminophen-induced acute liver failure (n=3) and from healthy livers (n=2) and (ii) hepatic cell systems exposed to acetaminophen, including their respective vehicle controls. The investigated in vitro systems are: HepaRG cells, HepG2 cells and a novel human skinpostnatal stem cell-derived model i.e. human skin-precursors-derived hepatocyte-like cells (hSKP-HPC). Clinical samples were obtained after surgical removal of the explant liver of patients diagnosed with ALF due to acetaminophen intoxication and treated by orthotopic liver transplantation (n=3). Samples from healthy livers were obtained from individuals deceased from brain damage (n=2). Different samples of hSKP, HepG2 and HepaRG were obtained from the same cell batch of each cell system. All cells were exposed for 24 hours to their corresponding sub cytotoxic concentrations (IC10): IC10(hSKP-HPC)=18mM; IC10(HepaRG)=13mM; IC10(HepG2)=2mM. Experiments were conducted in triplicate. This dataset is part of the TransQST collection.

ORGANISM(S): Homo sapiens

SUBMITTER: Robim Rodrigues 

PROVIDER: E-GEOD-74000 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Gene expression data from acetaminophen-induced toxicity in human hepatic <i>in vitro</i> systems and clinical liver samples.

Rodrigues Robim M RM   Govaere Olivier O   Roskams Tania T   Vanhaecke Tamara T   Rogiers Vera V   De Kock Joery J  

Data in brief 20160326


This data set is composed of transcriptomics analyses of (i) liver samples from patients suffering from acetaminophen-induced acute liver failure (ALF) and (ii) hepatic cell systems exposed to acetaminophen and their respective controls. The <i>in vitro</i> systems include widely employed cell lines <i>i.e.</i> HepaRG and HepG2 cells as well as a novel stem cell-derived model <i>i.e.</i> human skin-precursors-derived hepatocyte-like cells (hSKP-HPC). Data from primary human hepatocytes was also  ...[more]

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