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Cross-species analysis of hepatic cytochrome P450 and transport protein expression

ORCID
0000-0001-8187-0240
Zugehörigkeit
Signatope, Markwiesenstraße 55, Reutlingen, Germany
Hammer, Helen;
ORCID
0000-0001-5955-0726
Zugehörigkeit
Signatope, Markwiesenstraße 55, Reutlingen, Germany
Schmidt, Felix;
ORCID
0000-0002-6487-2153
Zugehörigkeit
Department of Pesticides Safety, German Federal Institute for Risk Assessment, Max-Dohrn-Str. 8-10, Berlin, Germany
Marx-Stoelting, Philip;
ORCID
0000-0002-1189-9547
Zugehörigkeit
Signatope, Markwiesenstraße 55, Reutlingen, Germany
Pötz, Oliver;
ORCID
0000-0003-3810-027X
Zugehörigkeit
Department of Pesticides Safety, German Federal Institute for Risk Assessment, Max-Dohrn-Str. 8-10, Berlin, Germany
Braeuning, Albert

Most drugs and xenobiotics are metabolized in the liver. Amongst others, different cytochrome P450 (CYP) enzymes catalyze the metabolic conversion of foreign compounds, and various transport proteins are engaged in the excretion of metabolites from the hepatocytes. Inter-species and inter-individual differences in the hepatic levels and activities of drug-metabolizing enzymes and transporters result from genetic as well as from environmental factors, and play a decisive role in determining the pharmacokinetic properties of a compound in a given test system. To allow for a meaningful comparison of results from metabolism studies, it is, therefore, of utmost importance to know about the specific metabolic properties of the test systems, especially about the levels of metabolic enzymes such as the CYPs. Using a targeted proteomics approach, we, therefore, compared the hepatic levels of important CYP enzymes and transporters in different experimental systems in vivo and in vitro, namely Wistar rats, C57/Bl6 mice, mice humanized for the two xeno-sensing receptors PXR (pregnane-X-receptor) and CAR (constitutive androstane receptor), mice with human hepatocyte-repopulated livers, human HepaRG hepatocarcinoma cells, primary human hepatocytes, and human liver biopsies. In addition, the effects of xenobiotic inducers of drug metabolism on CYP enzymes and transporters were analyzed in selected systems. This study for the first time presents a comprehensive overview of similarities and differences in important drug metabolism-related proteins among the different experimental models

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