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Methods in Molecular Biology (Clifton, N.J.)|January 1, 2026
The Cell Painting PLUS Method: Phenotypic Profiling Using Iterative Staining-Elution CyclesElena von Coburg, Sebastian DunstDiscover Oncology|December 5, 2023
The adverse outcome pathway for breast cancer: a knowledge management framework bridging biomedicine and toxicologyElena von Coburg, Sebastian DunstCurrent Protocols|April 27, 2026
Cell Painting PLUS: An Iterative Staining-Elution Protocol for High-Content Phenotypic ScreeningsMarlene Wedler, Elena von Coburg, Jose M Muino, et al.Nature Communications|April 24, 2025
Cell Painting PLUS: expanding the multiplexing capacity of Cell Painting-based phenotypic profiling using iterative staining-elution cyclesElena von Coburg, Marlene Wedler, Jose M Muino, et al.Frontiers in Toxicology|August 1, 2024
Unleashing the potential of cell painting assays for compound activities and hazards predictionFloriane Odje, David Meijer, Elena von Coburg, et al.Genetics|January 11, 2019
Imaging Flies by Fluorescence Microscopy: Principles, Technologies, and ApplicationsSebastian Dunst, Pavel TomancakMethods in Molecular Biology (Clifton, N.J.)|March 29, 2022
Automated Classification of Cellular Phenotypes Using Machine Learning in Cellprofiler and CellProfiler AnalystMarja Kornhuber, Sebastian DunstPlos One|December 5, 2014
An RNA interference screen for genes required to shape the anteroposterior compartment boundary in Drosophila identifies the Eph receptorDaiki Umetsu, Sebastian Dunst, Christian DahmannMethods in Molecular Biology (Clifton, N.J.)|January 1, 2026
The E-Morph Screening Assay: Phenotypic Screening for Estrogenic or Anti-estrogenic Compound ActivitiesAnn-Sophie Aßmann, Sebastian Dunst, Verena FetzEnvironment International|February 7, 2021
The E-Morph Assay: Identification and characterization of environmental chemicals with estrogenic activity based on quantitative changes in cell-cell contact organization of breast cancer cellsMarja Kornhuber, Sebastian Dunst, Gilbert Schönfelder, et al.Pageof 2