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Human embryonic stem cell-derived test systems for developmental neurotoxicity: a transcriptomics approach
Anne K. Krug, Raivo Kolde, John Antonydas Gaspar, Eugen Rempel, Nina V. Balmer, Kesavan Meganathan, Kinga Vojnits, Mathurin Baquié, Tanja Waldmann, Roberto Enseñat‐Waser, Smita Jagtap, Richard Evans, S. Julien, Hedi Peterson, Dimitra Zagoura
Archives of Toxicology · 2012 · ▲ 238 citations
Abstract
Developmental neurotoxicity (DNT) and many forms of reproductive toxicity (RT) often manifest themselves in functional deficits that are not necessarily based on cell death, but rather on minor changes relating to cell differentiation or communication. The fields of DNT/RT would greatly benefit from in vitro tests that allow the identification of toxicant-induced changes of the cellular proteostasis(definition), or of its underlying transcriptome network. Therefore, the 'human embryonic stem cell (hESC)-derived novel alternative test systems (ESNATS)' European commission research project established RT tests based on defined differentiation protocols of hESC and their progeny. Valproic acid (VPA) and methylmercury (MeHg) were used as positive control compounds to address the following fundamental questions: (1) Does transcriptome analysis allow discrimination of the two compounds? (2) How does analysis of enriched transcription factor binding sites (TFBS) and of individual probe sets (PS) distinguish between test systems? (3) Can batch effects be controlled? (4) How many DNA microarrays are needed? (5) Is the highest non-cytotoxic concentration optimal and relevant for the study of transcriptome changes? VPA triggered vast transcriptional changes, whereas MeHg altered fewer transcripts. To attenuate batch effects, analysis has been focused on the 500 PS with highest variability. The test systems differed significantly in their responses (<20 % overlap). Moreover, within one test system, little overlap between the PS changed by the two compounds has been observed. However, using TFBS enrichment, a relatively large 'common response' to VPA and MeHg could be distinguished from 'compound-specific' responses. In conclusion, the ESNATS assay battery allows classification of human DNT/RT toxicants on the basis of their transcriptome profiles.
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- 10.1007/s00204-012-0967-3
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- 2026-07-25 MST
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APA
Krug, A.K., Kolde, R., Gaspar, J.A., Rempel, E., Balmer, N.V., Meganathan, K., Vojnits, K., Baquié, M., Waldmann, T., Enseñat‐Waser, R., Jagtap, S., Evans, R., Julien, S., Peterson, H., Zagoura, D., Kadereit, S., Gerhard, D., Sotiriadou, I., Heke, M., & Natarajan, K. (2012). Human embryonic stem cell-derived test systems for developmental neurotoxicity: a transcriptomics approach. <em>Archives of Toxicology</em>. https://doi.org/10.1007/s00204-012-0967-3
Vancouver
Krug AK, Kolde R, Gaspar JA, Rempel E, Balmer NV, Meganathan K, et al. Human embryonic stem cell-derived test systems for developmental neurotoxicity: a transcriptomics approach. Archives of Toxicology. 2012. doi:10.1007/s00204-012-0967-3.
BibTeX
@article{anne2012Humane,
title = {Human embryonic stem cell-derived test systems for developmental neurotoxicity: a transcriptomics approach},
author = {Anne K. Krug and Raivo Kolde and John Antonydas Gaspar and Eugen Rempel and Nina V. Balmer and Kesavan Meganathan and Kinga Vojnits and Mathurin Baquié and Tanja Waldmann and Roberto Enseñat‐Waser and Smita Jagtap and Richard Evans and S. Julien and Hedi Peterson and Dimitra Zagoura and Suzanne Kadereit and Daniel Gerhard and Isaia Sotiriadou and Michael Heke and Karthick Natarajan and Margit Henry and Johannes Winkler and Rosemarie Marchan and Luc Stoppini and Sieto Bosgra},
journal = {Archives of Toxicology},
year = {2012},
doi = {10.1007/s00204-012-0967-3},
}
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