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Updated: Mar 23, 2026

Human Liver Microphysiological System for Assessing Drug-Induced Liver Toxicity In Vitro
Published on: January 31, 2022
Drug-induced cholestasis risk assessment in sandwich-cultured human hepatocytes
Marlies Oorts1, Audrey Baze2, Philippe Bachellier3
1Drug Delivery and Disposition, KU Leuven, Department of Pharmaceutical and Pharmacological Sciences, O&N2, Herestraat 49, box 921, 3000 Leuven, Belgium; KaLy-Cell, 20A rue du Général Leclerc, 67115 Plobsheim, France.
Abstract:
Drug-induced cholestasis (DIC) is recognized as one of the prime mechanisms for DILI. Hence, earlier detection of drug candidates with cholestatic signature is crucial. Recently, we introduced an in vitro model for DIC and evaluated its performance with several cholestatic drugs. We presently expand on the validation of this model by 14 training compounds (TCs) of the EU-EFPIA IMI project MIP-DILI. Several batches of human hepatocytes in sandwich-culture were qualified for DIC assessment by verifying the bile acid-dependent increase in sensitivity to the toxic effects of cyclosporin A. The cholestatic potential of the TCs was expressed by determining the drug-induced cholestasis index (DICI). A safety margin (SM) was calculated as the ratio of the lowest TC concentration with a DICI≤0.80 to the Cmax,total. Nefazodone, bosentan, perhexiline and troglitazone were flagged for cholestasis (SM<30). The hepatotoxic (but non-cholestatic) compounds, amiodarone, diclofenac, fialuridine and ximelagatran, and all non-hepatotoxic compounds were cleared as "safe" for DIC. Tolcapone and paracetamol yielded DICI-based SM values equal to or higher than those based on cytotoxicity, thus excluding DIC as a DILI mechanism. This hepatocyte-based in vitro assay provides a unique tool for early and reliable identification of drug candidates with cholestasis risk.
Insights
Early detection of drug-induced cholestasis (DIC) is vital. A validated in vitro model using human hepatocytes accurately identifies drug candidates with cholestasis risk, improving drug safety.
Area of Science:
- Hepatology and Toxicology
- Drug Safety and Development
Background:
- Drug-induced cholestasis (DIC) is a significant mechanism of drug-induced liver injury (DILI).
- Early identification of drug candidates with cholestatic potential is critical for mitigating DILI risks.
Purpose of the Study:
- To validate a novel in vitro model for assessing drug-induced cholestasis (DIC).
- To evaluate the model's performance using 14 training compounds from the MIP-DILI project.
Main Methods:
- Utilized human hepatocytes in sandwich-culture, qualified by cyclosporin A sensitivity.
- Determined the drug-induced cholestasis index (DICI) for training compounds.
- Calculated the safety margin (SM) as the ratio of DICI threshold concentration to Cmax,total.
Main Results:
- Identified four compounds (nefazodone, bosentan, perhexiline, troglitazone) as having cholestasis risk (SM<30).
- Cleared hepatotoxic non-cholestatic compounds and all non-hepatotoxic compounds as 'safe' for DIC.
- Tolcapone and paracetamol showed no DIC risk based on DICI-derived safety margins.
Conclusions:
- The validated hepatocyte-based in vitro assay reliably identifies drug candidates with cholestasis risk.
- This model serves as a crucial tool for early detection and mitigation of DILI associated with cholestasis.
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