Adverse Outcome Pathway-Driven Analysis of Liver Steatosis in Vitro: A Case Study with Cyproconazole
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Investigating the in vitro steatotic mixture effects of similarly and dissimilarly acting test compounds using an adverse outcome pathway-based approach | SpringerLink
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Myosin VI regulates the spatial organisation of mammalian transcription initiation | Nature Communications
Adverse Outcome Pathway-Driven Analysis of Liver Steatosis in Vitro: A Case Study with Cyproconazole
Myosin VI regulates the spatial organisation of mammalian transcription initiation | Nature Communications
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An adverse outcome pathway-based approach to assess steatotic mixture effects of hepatotoxic pesticides in vitro - ScienceDirect
Myosin VI regulates the spatial organisation of mammalian transcription initiation | Nature Communications
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An adverse outcome pathway-based approach to assess steatotic mixture effects of hepatotoxic pesticides in vitro - ScienceDirect
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Myosin VI regulates the spatial organisation of mammalian transcription initiation | Nature Communications
Myosin VI regulates the spatial organisation of mammalian transcription initiation | Nature Communications
Investigating the in vitro steatotic mixture effects of similarly and dissimilarly acting test compounds using an adverse outcome pathway-based approach | SpringerLink
ummaries of the Third Annual JPL orne Geoscience Workshop _une 1-5, 1992
Investigating the in vitro steatotic mixture effects of similarly and dissimilarly acting test compounds using an adverse outcome pathway-based approach | SpringerLink
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An adverse outcome pathway-based approach to assess steatotic mixture effects of hepatotoxic pesticides in vitro - ScienceDirect