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Basic & Clinical Pharmacology & Toxicology|January 31, 2014
Epigenetics and transcriptomics to detect adverse drug effects in model systems of human developmentNina V Balmer, Marcel LeistArchives of Toxicology|May 15, 2013
Evaluation of a human neurite growth assay as specific screen for developmental neurotoxicantsAnne K Krug, Nina V Balmer, Florian Matt, et al.Environmental Health Perspectives|May 11, 2012
Evaluation of developmental toxicants and signaling pathways in a functional test based on the migration of human neural crest cellsBastian Zimmer, Gabsang Lee, Nina V Balmer, et al.Human Molecular Genetics|June 23, 2012
Epigenetic changes and disturbed neural development in a human embryonic stem cell-based model relating to the fetal valproate syndromeNina V Balmer, Matthias K Weng, Bastian Zimmer, et al.Chemical Research in Toxicology|January 4, 2014
Design principles of concentration-dependent transcriptome deviations in drug-exposed differentiating stem cellsTanja Waldmann, Eugen Rempel, Nina V Balmer, et al.Archives of Toxicology|June 18, 2014
From transient transcriptome responses to disturbed neurodevelopment: role of histone acetylation and methylation as epigenetic switch between reversible and irreversible drug effectsNina V Balmer, Stefanie Klima, Eugen Rempel, et al.Archives of Toxicology|August 15, 2015
A transcriptome-based classifier to identify developmental toxicants by stem cell testing: design, validation and optimization for histone deacetylase inhibitorsEugen Rempel, Lisa Hoelting, Tanja Waldmann, et al.Archives of Toxicology|November 27, 2012
Human embryonic stem cell-derived test systems for developmental neurotoxicity: a transcriptomics approachAnne K Krug, Raivo Kolde, John A Gaspar, et al.Pageof 1