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Toxicological Sciences : an Official Journal of the Society of Toxicology|October 24, 2014
Predicting skin sensitizer potency based on in vitro data from KeratinoSens and kinetic peptide binding: global versus domain-based assessmentAndreas Natsch, Roger Emter, Hans Gfeller, et al.Chimia|March 22, 2020
PeBiToSens™: A Platform for PBT Screening of Fragrance Ingredients Without Animal TestingHeike Laue, Lu Hostettler, Gordon Sanders, et al.Current Biology : CB|October 11, 2025
Decoding human olfaction by high heterologous expression of odorant receptors detecting signature odorantsRoger Emter, Christel Merillat, Fiona Buchli, et al.Analytical and Bioanalytical Chemistry|August 21, 2014
Detection of potentially skin sensitizing hydroperoxides of linalool in fragranced productsSusanne Kern, Hafida Dkhil, Prisca Hendarsa, et al.Chemical Research in Toxicology|September 28, 2010
Chemical basis for the extreme skin sensitization potency of (E)-4-(ethoxymethylene)-2-phenyloxazol-5(4H)-oneAndreas Natsch, Hans Gfeller, Fabian Kuhn, et al.ALTEX|August 26, 2020
Predictivity of the kinetic direct peptide reactivity assay (kDPRA) for sensitizer potency assessment and GHS subclassificationAndreas Natsch, Tina Haupt, Britta Wareing, et al.Environmental Toxicology and Chemistry|November 7, 2017
Accurate prediction of acute fish toxicity of fragrance chemicals with the RTgill-W1 cell assayAndreas Natsch, Heike Laue, Tina Haupt, et al.Toxicological Sciences : an Official Journal of the Society of Toxicology|October 4, 2017
p-Alkyl-Benzoyl-CoA Conjugates as Relevant Metabolites of Aromatic Aldehydes With Rat Testicular Toxicity-Studies Leading to the Design of a Safer New Fragrance ChemicalHeike Laue, Susanne Kern, Remo P Badertscher, et al.Environmental Science & Technology|August 29, 2023
Bioconcentration Assessment in Fish Based on In Vitro Intrinsic Clearance: Predictivity of an Empirical Model Compared to In Vitro-In Vivo Extrapolation ModelsHeike Laue, Lu Hostettler, Karen J Jenner, et al.The Journal of Investigative Dermatology|August 28, 2009
A functional ABCC11 allele is essential in the biochemical formation of human axillary odorAnnette Martin, Matthias Saathoff, Fabian Kuhn, et al.Pageof 9