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Epigenetic Modifications of the Liver Tumor Cell Line HepG2 Increase Their Drug Metabolic Capacity
Marc Ruoß1, Georg Damm2, Massoud Vosough3
1Siegfried Weller Institute, BG Trauma Clinic, Eberhard Karls University Tübingen, 72076 Tübingen, Germany. m.ruoss@hotmail.de.
Abstract:
Although human liver tumor cells have reduced metabolic functions as compared to primary human hepatocytes (PHH) they are widely used for pre-screening tests of drug metabolism and toxicity. The aim of the present study was to modify liver cancer cell lines in order to improve their drug-metabolizing activities towards PHH. It is well-known that epigenetics is strongly modified in tumor cells and that epigenetic regulators influence the expression and function of Cytochrome P450 (CYP) enzymes through altering crucial transcription factors responsible for drug-metabolizing enzymes. Therefore, we screened the epigenetic status of four different liver cancer cell lines (Huh7, HLE, HepG2 and AKN-1) which were reported to have metabolizing drug activities. Our results showed that HepG2 cells demonstrated the highest similarity compared to PHH. Thus, we modified the epigenetic status of HepG2 cells towards 'normal' liver cells by 5-Azacytidine (5-AZA) and Vitamin C exposure. Then, mRNA expression of Epithelial-mesenchymal transition (EMT) marker SNAIL and CYP enzymes were measured by PCR and determinate specific drug metabolites, associated with CYP enzymes by LC/MS. Our results demonstrated an epigenetic shift in HepG2 cells towards PHH after exposure to 5-AZA and Vitamin C which resulted in a higher expression and activity of specific drug metabolizing CYP enzymes. Finally, we observed that 5-AZA and Vitamin C led to an increased expression of Hepatocyte nuclear factor 4α (HNF4α) and E-Cadherin and a significant down regulation of Snail1 (SNAIL), the key transcriptional repressor of E-Cadherin. Our study shows, that certain phase I genes and their enzyme activities are increased by epigenetic modification in HepG2 cells with a concomitant reduction of EMT marker gene SNAIL. The enhancing of liver specific functions in hepatoma cells using epigenetic modifiers opens new opportunities for the usage of cell lines as a potential liver in vitro model for drug testing and development.
Insights
Epigenetic modification of HepG2 liver cancer cells using 5-Azacytidine and Vitamin C enhanced their drug-metabolizing enzyme activity, making them a better model for drug testing. This study improved liver cell line functionality for preclinical research.
Area of Science:
- Hepatology
- Pharmacology
- Epigenetics
Background:
- Liver cancer cell lines are used for drug metabolism and toxicity pre-screening but have reduced metabolic functions compared to primary human hepatocytes (PHH).
- Epigenetic modifications in tumor cells affect the expression and function of Cytochrome P450 (CYP) enzymes, which are crucial for drug metabolism.
- HepG2 cells showed the highest similarity to PHH among tested liver cancer cell lines.
Purpose of the Study:
- To epigenetically modify liver cancer cell lines, specifically HepG2, to enhance their drug-metabolizing activities towards PHH.
- To investigate the impact of epigenetic modification on the expression of drug-metabolizing enzymes and epithelial-mesenchymal transition (EMT) markers.
Main Methods:
- Screened the epigenetic status of four liver cancer cell lines (Huh7, HLE, HepG2, AKN-1).
- Modified the epigenetic status of HepG2 cells using 5-Azacytidine (5-AZA) and Vitamin C.
- Measured mRNA expression of EMT marker SNAIL and CYP enzymes via PCR; determined specific drug metabolites using LC/MS.
Main Results:
- Epigenetic modification of HepG2 cells with 5-AZA and Vitamin C resulted in an epigenetic shift towards PHH.
- This modification led to increased expression and activity of specific drug-metabolizing CYP enzymes.
- Observed increased expression of Hepatocyte nuclear factor 4α (HNF4α) and E-Cadherin, with significant downregulation of Snail1 (SNAIL).
Conclusions:
- Epigenetic modification of HepG2 cells enhances specific phase I drug-metabolizing genes and enzyme activities.
- The treatment significantly downregulates the EMT marker SNAIL, indicating a shift towards a more differentiated state.
- Enhanced liver-specific functions in hepatoma cells via epigenetic modifiers offer improved in vitro models for drug testing and development.
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