Prediction of CYP2D6-mediated polymorphic drug metabolism (sparteine type) based on in vitro investigations

Author(s):  
Georg Engel ◽  
Ute Hofmann ◽  
Heyo K. Kroemer
Author(s):  
Lawrence Howell ◽  
Rosalind E. Jenkins ◽  
Stephen Lynch ◽  
Carrie Duckworth ◽  
B. Kevin Park ◽  
...  

AbstractHepatic organoids are a recent innovation in in vitro modeling. Initial studies suggest that organoids better recapitulate the liver phenotype in vitro compared to pre-existing proliferative cell models. However, their potential for drug metabolism and detoxification remains poorly characterized, and their global proteome has yet to be compared to their tissue of origin. This analysis is urgently needed to determine what gain-of-function this new model may represent for modeling the physiological and toxicological response of the liver to xenobiotics. Global proteomic profiling of undifferentiated and differentiated hepatic murine organoids and donor-matched livers was, therefore, performed to assess both their similarity to liver tissue, and the expression of drug-metabolizing enzymes and transporters. This analysis quantified 4405 proteins across all sample types. Data are available via ProteomeXchange (PXD017986). Differentiation of organoids significantly increased the expression of multiple cytochrome P450, phase II enzymes, liver biomarkers and hepatic transporters. While the final phenotype of differentiated organoids is distinct from liver tissue, the organoids contain multiple drug metabolizing and transporter proteins necessary for liver function and drug metabolism, such as cytochrome P450 3A, glutathione-S-transferase alpha and multidrug resistance protein 1A. Indeed, the differentiated organoids were shown to exhibit increased sensitivity to midazolam (10–1000 µM) and irinotecan (1–100 µM), when compared to the undifferentiated organoids. The predicted reduced activity of HNF4A and a resulting dysregulation of RNA polymerase II may explain the partial differentiation of the organoids. Although further experimentation, optimization and characterization is needed relative to pre-existing models to fully contextualize their use as an in vitro model of drug-induced liver injury, hepatic organoids represent an attractive novel model of the response of the liver to xenobiotics. The current study also highlights the utility of global proteomic analyses for rapid and accurate evaluation of organoid-based test systems.


2017 ◽  
Vol 45 (7) ◽  
pp. 748-754 ◽  
Author(s):  
Wenqi Lu ◽  
Eva Rettenmeier ◽  
Miles Paszek ◽  
Mei-Fei Yueh ◽  
Robert H. Tukey ◽  
...  

2012 ◽  
Vol 83 (4) ◽  
pp. 551-558 ◽  
Author(s):  
Gianluca Catucci ◽  
Gianfranco Gilardi ◽  
Lars Jeuken ◽  
Sheila J. Sadeghi
Keyword(s):  

2012 ◽  
Vol 65 (1-2) ◽  
pp. 45-49
Author(s):  
Bozana Nikolic ◽  
Miroslav Savic

Introduction. Since drug interactions may result in serious adverse effects or failure of therapy, it is of huge importance that health professionals base their decisions about drug prescription, dispensing and administration on reliable research evidence, taking into account the hierarchy of data sources for evaluation. Clinical Significance of Potential Interactions - Information Sources. The sources of data regarding drug interactions are numerous, beginning with various drug reference books. However, they are far from uniformity in the way of choosing and presenting putative clinically relevant interactions. Clinical Significance of Potential Interactions - Interpretation of Information. The difficulties in interpretation of drug interactions are illustrated through the analysis of a published example involving assessment made by two different groups of health professionals. Systematic Evaluation of Drug-Drug Interaction. The potential for interactions is mainly investigated before marketing a drug. Generally, the in vitro, followed by in vivo studies are to be performed. The major metabolic pathways involved in the metabolism of a new molecular entity, as well as the potential of induction of human enzymes involved in drug metabolism are to be examined. In the field of interaction research it is possible to make use of the population pharmacokinetic studies as well as of the pharmacodynamic assessment, and also the postregistration monitoring of the reported adverse reactions and other literature data. Conclusion. In vitro and in vivo drug metabolism and transport studies should be conducted to elucidate the mechanisms and potential for drug-drug interactions. The assessment of their clinical significance should be based on well-defined and validated exposure-response data.


1972 ◽  
Vol 50 (7) ◽  
pp. 721-724 ◽  
Author(s):  
Norman R. Bade ◽  
Stuart M. MacLeod ◽  
Kenneth W. Renton

Preliminary experiments were undertaken to examine the effect of three hydrazine derivatives, viz. Ro 4-4602, MK 486, and procarbazine hydrochloride, on hepatic microsomal drug metabolism in rats. All three compounds when given as pretreatment significantly prolonged pentobarbital sleeping time. In vitro, the hepatic microsomal N-demethylation of aminopyrine was inhibited. It is concluded that all three drugs are possible sources of clinically significant drug interaction when administered in combination with other agents which undergo hepatic biotransformation.


1995 ◽  
Vol 23 (3) ◽  
pp. 432S-432S
Author(s):  
CM Hill ◽  
KE Herbert ◽  
MD Evans ◽  
J Lunec

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