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Mitochondrial toxicity of diclofenac and its metabolites via inhibition of  oxidative phosphorylation (ATP synthesis) in rat liver mitochondria:  Possible role in drug induced liver injury (DILI) - ScienceDirect
Mitochondrial toxicity of diclofenac and its metabolites via inhibition of oxidative phosphorylation (ATP synthesis) in rat liver mitochondria: Possible role in drug induced liver injury (DILI) - ScienceDirect

Molecular dynamics investigations of regioselectivity of anionic/aromatic  substrates by a family of enzymes: a case study of diclofenac binding in  CYP ... - Physical Chemistry Chemical Physics (RSC Publishing)  DOI:10.1039/C6CP01128D
Molecular dynamics investigations of regioselectivity of anionic/aromatic substrates by a family of enzymes: a case study of diclofenac binding in CYP ... - Physical Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/C6CP01128D

Diclofenac | COX Inhibitor | MedChemExpress
Diclofenac | COX Inhibitor | MedChemExpress

Metabolism of the aquatic pollutant diclofenac in the Lymnaea stagnalis  freshwater gastropod | SpringerLink
Metabolism of the aquatic pollutant diclofenac in the Lymnaea stagnalis freshwater gastropod | SpringerLink

The pharmacokinetics and metabolism of diclofenac in chimeric humanized and  murinized FRG mice | SpringerLink
The pharmacokinetics and metabolism of diclofenac in chimeric humanized and murinized FRG mice | SpringerLink

Hepatic metabolism of diclofenac: role of human CYP in the minor oxidative  pathways - ScienceDirect
Hepatic metabolism of diclofenac: role of human CYP in the minor oxidative pathways - ScienceDirect

Development of Novel Diclofenac Analogs Designed to Avoid Metabolic  Activation and Hepatocyte Toxicity | ACS Omega
Development of Novel Diclofenac Analogs Designed to Avoid Metabolic Activation and Hepatocyte Toxicity | ACS Omega

Questions Diclofenac (Voltaren M) is a nonsteroidal | Chegg.com
Questions Diclofenac (Voltaren M) is a nonsteroidal | Chegg.com

SciELO - Brasil - Effect of iguratimod on diclofenac metabolism by CYP2C9  in rats and human recombinant CYP2C9 yeast cells Effect of iguratimod on diclofenac  metabolism by CYP2C9 in rats and human
SciELO - Brasil - Effect of iguratimod on diclofenac metabolism by CYP2C9 in rats and human recombinant CYP2C9 yeast cells Effect of iguratimod on diclofenac metabolism by CYP2C9 in rats and human

Diclofenac - Wikipedia
Diclofenac - Wikipedia

Roles of diclofenac and its metabolites in immune activation associated  with acute hepatotoxicity in TgCYP3A4/hPXR-humanized mice - ScienceDirect
Roles of diclofenac and its metabolites in immune activation associated with acute hepatotoxicity in TgCYP3A4/hPXR-humanized mice - ScienceDirect

Diclofenac - an overview | ScienceDirect Topics
Diclofenac - an overview | ScienceDirect Topics

Figure 1 from Hepatic Clearance of Reactive Glucuronide Metabolites of  Diclofenac in the Mouse Is Dependent on Multiple ATP-Binding Cassette  Efflux Transporters | Semantic Scholar
Figure 1 from Hepatic Clearance of Reactive Glucuronide Metabolites of Diclofenac in the Mouse Is Dependent on Multiple ATP-Binding Cassette Efflux Transporters | Semantic Scholar

Proposed scheme for the metabolic activation of diclofenac by acyl... |  Download Scientific Diagram
Proposed scheme for the metabolic activation of diclofenac by acyl... | Download Scientific Diagram

PDF] Formation of the Accumulative Human Metabolite and Human-Specific  Glutathione Conjugate of Diclofenac in TK-NOG Chimeric Mice with Humanized  Livers | Semantic Scholar
PDF] Formation of the Accumulative Human Metabolite and Human-Specific Glutathione Conjugate of Diclofenac in TK-NOG Chimeric Mice with Humanized Livers | Semantic Scholar

Proposed primary metabolic pathways for diclofenac in humans. | Download  Scientific Diagram
Proposed primary metabolic pathways for diclofenac in humans. | Download Scientific Diagram

Bioactivation of Diclofenac in Vitro and in Vivo: Correlation to  Electrochemical Studies | Chemical Research in Toxicology
Bioactivation of Diclofenac in Vitro and in Vivo: Correlation to Electrochemical Studies | Chemical Research in Toxicology

DETECTION OF A NOVEL REACTIVE METABOLITE OF DICLOFENAC: EVIDENCE FOR  CYP2C9-MEDIATED BIOACTIVATION VIA ARENE OXIDES | Drug Metabolism &  Disposition
DETECTION OF A NOVEL REACTIVE METABOLITE OF DICLOFENAC: EVIDENCE FOR CYP2C9-MEDIATED BIOACTIVATION VIA ARENE OXIDES | Drug Metabolism & Disposition

Diclofenac Pathway, Pharmacokinetics
Diclofenac Pathway, Pharmacokinetics

Catalysts | Free Full-Text | Diclofenac Biodegradation by Microorganisms  and with Immobilised Systems—A Review
Catalysts | Free Full-Text | Diclofenac Biodegradation by Microorganisms and with Immobilised Systems—A Review

Fig. 4. | Integrated Assessment of Diclofenac Biotransformation,  Pharmacokinetics, and Omics-Based Toxicity in a Three-Dimensional Human  Liver-Immunocompetent Coculture System | Drug Metabolism & Disposition
Fig. 4. | Integrated Assessment of Diclofenac Biotransformation, Pharmacokinetics, and Omics-Based Toxicity in a Three-Dimensional Human Liver-Immunocompetent Coculture System | Drug Metabolism & Disposition

Application Data-Metabolism-Diclofenac | Yecuris FRG: Liver-Humanized Mice  & Preclinical Research Services
Application Data-Metabolism-Diclofenac | Yecuris FRG: Liver-Humanized Mice & Preclinical Research Services

Diclofenac Sodium (GP 45840) | COX Inhibitor | MedChemExpress
Diclofenac Sodium (GP 45840) | COX Inhibitor | MedChemExpress

Diclofenac metabolism in the mouse: Novel in vivo metabolites identified by  high performance liquid chromatography coupled to li
Diclofenac metabolism in the mouse: Novel in vivo metabolites identified by high performance liquid chromatography coupled to li

Cytochrome P450 3A4-Mediated Interaction of Diclofenac and Quinidine | Drug  Metabolism & Disposition
Cytochrome P450 3A4-Mediated Interaction of Diclofenac and Quinidine | Drug Metabolism & Disposition

Figure 1 from MECHANISM-BASED INACTIVATION OF CYP 2 C 11 BY DICLOFENAC |  Semantic Scholar
Figure 1 from MECHANISM-BASED INACTIVATION OF CYP 2 C 11 BY DICLOFENAC | Semantic Scholar