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Search Results to Grover Miller

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One or more keywords matched the following properties of Miller, Grover

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keywords bioactivation
overview My goals are to assess the biological significance of metabolic activation and clearance of molecules especially related to pharmacological and toxicological effects. In practice, my group leverages powerful analytical and biochemical tools to identify and quantitate small molecules including drugs, pollutants, and food additives during metabolism and correlate findings to biological activity and in vivo outcomes such as liver toxicity. Individual projects aim to (1) determine metabolic mechanisms, efficiencies, and fluxes for activation and elimination of toxic molecules, (2) identify metabolite biomarkers in humans and animal models for correlating in vitro findings to in vivo outcomes and leveraging their diagnostic, theragnostic, and prognostic potential, and (3) develop computational models for drug bioactivation and clearance contributing to adverse drug events to make drugs safer for clinical use. Moreover, I seek translation of novel analytical and diagnostic tools into practical, commercially viable tools. Over time, my research expanded from detailed in vitro metabolic studies to metabolite profiling for translational studies and development of models of metabolism, structure, and reactivity that were made possible through strong, interdisciplinary collaborations.

One or more keywords matched the following items that are connected to Miller, Grover

Item TypeName
Academic Article Computationally Assessing the Bioactivation of Drugs by N-Dealkylation.
Academic Article Biotransformation and bioactivation reactions - 2017 literature highlights *.
Academic Article Lamisil (terbinafine) toxicity: Determining pathways to bioactivation through computational and experimental approaches.
Academic Article CYP2C19 and 3A4 Dominate Metabolic Clearance and Bioactivation of Terbinafine Based on Computational and Experimental Approaches.
Academic Article Biotransformation and bioactivation reactions - 2018 literature highlights.
Academic Article Comprehensive kinetic and modeling analyses revealed CYP2C9 and 3A4 determine terbinafine metabolic clearance and bioactivation.
Academic Article Dual mechanisms suppress meloxicam bioactivation relative to sudoxicam.
Academic Article Novel advances in biotransformation and bioactivation research-2019 year in review.
Academic Article Significance of Multiple Bioactivation Pathways for Meclofenamate as Revealed through Modeling and Reaction Kinetics.
Academic Article Meloxicam methyl group determines enzyme specificity for thiazole bioactivation compared to sudoxicam.
Grant Systematic Discovery of Bioactivation-Associated Structural Alerts
Academic Article Novel advances in biotransformation and bioactivation research - 2020 year in review.
Academic Article Impacts of diphenylamine NSAID halogenation on bioactivation risks.
Academic Article Bioactivation of Isoxazole-Containing Bromodomain and Extra-Terminal Domain (BET) Inhibitors.
Academic Article CYP2C9 and 3A4 play opposing roles in bioactivation and detoxification of diphenylamine NSAIDs.
Academic Article Bioactivation and reactivity research advances - 2021 year in review.
Academic Article Bioactivation and reactivity research advances - 2022 year in review?.
Grant Systematic Discovery of Bioactivation-Associated Structural Alerts

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