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Biotransformation capacity of zebrafish (<em>Danio rerio</em>) early life stages: functionality of the mercapturic acid pathway
Tierbach, A., Groh, K. J., Schoenenberger, R., Schirmer, K., & Suter, M. J. F. (2020). Biotransformation capacity of zebrafish (Danio rerio) early life stages: functionality of the mercapturic acid pathway. Toxicological Sciences. https://doi.org/10.1093/toxsci/kfaa073
Repeatability and reproducibility of the RTgill-W1 cell line assay for predicting fish acute toxicity
Fischer, M., Belanger, S. E., Berckmans, P., Bernhard, M. J., Bláha, L., Coman Schmid, D. E., … Schirmer, K. (2019). Repeatability and reproducibility of the RTgill-W1 cell line assay for predicting fish acute toxicity. Toxicological Sciences, 169(2), 353-364. https://doi.org/10.1093/toxsci/kfz057
Glutathione S-transferase protein expression in different life stages of zebrafish (<i>Danio rerio</i>)
Tierbach, A., Groh, K. J., Schönenberger, R., Schirmer, K., & Suter, M. J. F. (2018). Glutathione S-transferase protein expression in different life stages of zebrafish (Danio rerio). Toxicological Sciences, 162(2), 702-712. https://doi.org/10.1093/toxsci/kfx293
Zebrafish larvae are insensitive to stimulation by cocaine: importance of exposure route and toxicokinetics
Kirla, K. T., Groh, K. J., Steuer, A. E., Poetzsch, M., Banote, R. K., Stadnicka-Michalak, J., … Kraemer, T. (2016). Zebrafish larvae are insensitive to stimulation by cocaine: importance of exposure route and toxicokinetics. Toxicological Sciences, 154(1), 183-193. https://doi.org/10.1093/toxsci/kfw156
Mixtures of chemical pollutants at European legislation safety concentrations: how safe are they?
Carvalho, R. N., Arukwe, A., Ait-Aissa, S., Bado-Nilles, A., Balzamo, S., Baun, A., … Lettieri, T. (2014). Mixtures of chemical pollutants at European legislation safety concentrations: how safe are they? Toxicological Sciences, 141(1), 218-233. https://doi.org/10.1093/toxsci/kfu118
Adverse outcome pathways during early fish development: a conceptual framework for identification of chemical screening and prioritization strategies
Volz, D. C., Belanger, S., Embry, M., Padilla, S., Sanderson, H., Schirmer, K., … Villeneuve, D. (2011). Adverse outcome pathways during early fish development: a conceptual framework for identification of chemical screening and prioritization strategies. Toxicological Sciences, 123(2), 349-358. https://doi.org/10.1093/toxsci/kfr185
Expression of zebra fish aromatase <I>cyp19a</I> and <I>cyp19b</I> genes in response to the ligands of estrogen receptor and aryl hydrocarbon receptor
Cheshenko, K., Brion, F., Le Page, Y., Hinfray, N., Pakdel, F., Kah, O., … Eggen, R. I. L. (2007). Expression of zebra fish aromatase cyp19a and cyp19b genes in response to the ligands of estrogen receptor and aryl hydrocarbon receptor. Toxicological Sciences, 96(2), 255-267. https://doi.org/10.1093/toxsci/kfm003