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Updated: Jun 5, 2026

Optimized Analysis of In Vivo and In Vitro Hepatic Steatosis
Published on: March 11, 2017
Does hepatic steatosis affect drug metabolizing enzymes in the liver?
Christa Buechler1, Thomas S Weiss
1Department of Internal Medicine I, University Hospital Regensburg, D-93042 Regensburg, Germany. christa.buechler@klinik.uni-regensburg.de
Abstract:
Bioavailability and effects of xenobiotics are dependent on absorption, metabolism and elimination of the respective compounds. Hepatocytes are critically important in drug modification and excretion. Molecules like organic anion transporters mediate hepatocyte uptake of xenobiotics, which are subsequently modified by phase I enzymes with cytochrome (CYP) P450 isoenzymes like CYP3A4 being the most important. Phase II enzymes including glucuronosyltransferases further increase aqueous solubility of the respective compounds. The canalicular transport of these substances into the bile is mainly arranged by ATP-binding cassette transporters. Variations in the activity of these enzymes and transporters explain altered drug activity, elimination and eventually increased half-life and toxicity of xenobiotics. Body composition affects distribution of several drugs and fat mass may have to be taken into account in determining appropriate doses of lipophilic compounds. Adiposity is increasingly prevalent in western countries and about half of the adult population is overweight or even obese. Obesity is often associated with an enhanced storage of fat in hepatocytes and hepatic steatosis is diagnosed in nearly 30% of adults. Although this is a benign condition fatty liver is more susceptible to insults leading to non-alcoholic steatohepatitis (NASH) associated with inflammation and liver fibrosis. There is increasing evidence that drug metabolizing enzymes/transporters are differentially expressed in hepatic steatosis and NASH. Studies in animals, humans and in-vitro models suggesting altered expression of transcription factors, transporters and enzymes involved in drug metabolism in non-alcoholic fatty liver disease are summarized in the current review.
Insights
Obesity and fatty liver disease alter drug metabolism and transport in hepatocytes. This review summarizes how non-alcoholic fatty liver disease affects xenobiotic processing, impacting drug efficacy and toxicity.
Area of Science:
- Pharmacology
- Hepatology
- Toxicology
Background:
- Drug bioavailability and effects depend on xenobiotic absorption, metabolism, and elimination by hepatocytes.
- Key players include organic anion transporters, cytochrome P450 enzymes (e.g., CYP3A4), glucuronosyltransferases, and ATP-binding cassette transporters.
- Body composition, particularly fat mass, influences drug distribution, necessitating dose adjustments for lipophilic compounds.
Purpose of the Study:
- To review the impact of hepatic steatosis and non-alcoholic steatohepatitis (NASH) on drug-metabolizing enzymes and transporters.
- To summarize evidence on altered expression of these factors in non-alcoholic fatty liver disease (NAFLD).
Main Methods:
- Review of studies in animal models, human subjects, and in-vitro systems.
- Analysis of alterations in transcription factors, transporters, and enzymes involved in drug metabolism.
Main Results:
- Hepatic steatosis and NASH are associated with differential expression of drug-metabolizing enzymes and transporters.
- NAFLD impacts the expression of key proteins involved in xenobiotic processing.
Conclusions:
- Non-alcoholic fatty liver disease significantly affects the hepatic machinery for drug metabolism and transport.
- Altered xenobiotic metabolism in NAFLD may lead to changes in drug efficacy, elimination, and toxicity.
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