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Accession: PRJNA328509 ID: 328509

Integrative "-omics" analysis in primary human hepatocytes unravels persistent mechanisms of cyclosporine A-induced cholestasis

This SuperSeries is composed of the SubSeries listed below. Overall design: Refer to individual Series
AccessionPRJNA328509; GEO: GSE84281
TypeUmbrella project
PublicationsWolters JE et al., "Integrative "-Omics" Analysis in Primary Human Hepatocytes Unravels Persistent Mechanisms of Cyclosporine A-Induced Cholestasis.", Chem Res Toxicol, 2016 Dec 19;29(12):2164-2174
SubmissionRegistration date: 11-Jul-2016
Toxicogenomics, Maastricht University
RelevanceSuperseries
Project Data:
Resource NameNumber
of Links
Publications
PubMed1
Other datasets
GEO DataSets4
GEO Data Details
ParameterValue
Data volume, Spots263743
Data volume, Processed Mbytes6
Data volume, Supplementary Mbytes2091
Integrative "-omics" analysis in primary human hepatocytes unravels persistent mechanisms of cyclosporine A-induced cholestasis encompasses the following 3 sub-projects:
Project TypeNumber of Projects
Epigenomics1
BioProject
accession
OrganismTitle
PRJNA328514Homo sapiensIntegrative "-omics" analysis in primary human hepatocytes unravels persistent mechanisms of cyclosporine A-induced cholestasis (MeDIP) (Toxicogenomics, Maastricht...)
Transcriptome or Gene expression2
BioProject
accession
OrganismTitle
PRJNA327556Homo sapiensIntegrative "-omics" analysis in primary human hepatocytes unravels persistent mechanisms of cyclosporine A-induced cholestasis (miRNA) (Toxicogenomics, Maastricht...)
PRJNA327557Homo sapiensIntegrative "-omics" analysis in primary human hepatocytes unravels persistent mechanisms of cyclosporine A-induced cholestasis (RNA) (Toxicogenomics, Maastricht...)

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