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Drug Metabolism and Disposition: the Biological Fate of Chemicals|December 14, 2021
Intersystem Extrapolation Factors Are Substrate-Dependent for CYP3A4: Impact on Cytochrome P450 Reaction PhenotypingAlyssa L Dantonio, Angela C Doran, R Scott Obach
Drug Metabolism and Disposition: the Biological Fate of Chemicals|August 18, 2012
An evaluation of using rat-derived single-dose neuropharmacokinetic parameters to project accurately large animal unbound brain drug concentrationsAngela C Doran, Sarah M Osgood, Jessica Y Mancuso, et al.
Journal of Pharmaceutical Sciences|March 18, 2014
Diphenhydramine has similar interspecies net active influx at the blood-brain barrierChristopher L Shaffer, Sarah M Osgood, Jessica Y Mancuso, et al.
Drug Metabolism and Disposition: the Biological Fate of Chemicals|October 30, 2025
Human cytochrome P4502C8 metabolizes repaglinide to 4'-hydroxyrepaglinide, not 3'-hydroxyrepaglinideRaman Sharma, Amanda Balesano, Angela C Doran, et al.
Molecular Systems Biology|July 30, 2019
Systems approach reveals photosensitivity and PER2 level as determinants of clock-modulator efficacyDae Wook Kim, Cheng Chang, Xian Chen, et al.
Drug Metabolism and Disposition: the Biological Fate of Chemicals|July 1, 2022
An improved method for cytochrome p450 reaction phenotyping using a sequential qualitative-then-quantitative approachAngela C Doran, Alyssa L Dantonio, Gabrielle M Gualtieri, et al.
Drug Metabolism and Disposition: the Biological Fate of Chemicals|July 1, 2022
Defining the Selectivity of Chemical Inhibitors Used for Cytochrome P450 Reaction Phenotyping: Overcoming Selectivity Limitations with a Six-Parameter Inhibition Curve-Fitting ApproachAngela C Doran, Woodrow Burchett, Connor Landers, et al.
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