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Updated: Jun 10, 2026

Human Liver Microphysiological System for Assessing Drug-Induced Liver Toxicity In Vitro
Published on: January 31, 2022
The use of hepatocytes to investigate drug toxicity
María José Gómez-Lechón1, José V Castell, María Teresa Donato
1Unidad de Hepatología Experimental, Centro de Investigación, Hospital La Fe, Valencia, Spain.
Abstract:
The liver is very active in metabolizing foreign compounds and the major target for toxicity caused by drugs. Hepatotoxicity may be the result of the drug itself or, more frequently, a result of the bioactivation process and the production of reactive metabolites. Prioritization of compounds based on human hepatotoxicity potential is currently a key unmet need in drug discovery, as it can become a major problem for several lead compounds in later stages of the drug discovery pipeline. Therefore, evaluation of potential hepatotoxicity represents a critical step in the development of new drugs. Cultured hepatocytes are increasingly used by the pharmaceutical industry for the screening of hepatotoxic potential of new molecules. Hepatocytes in culture retain hepatic key functions and constitute a valuable tool to identify chemically induced cellular damage. Their use has notably contributed to the understanding of mechanisms responsible for hepatotoxicity (disruption of cellular energy status, alteration of Ca(2+) homeostasis, inhibition of transport systems, metabolic activation, oxidative stress, covalent binding, etc.). Assessment of current cytotoxicity and hepatic-specific biochemical effects is limited by the inability to measure a wide spectrum of potential mechanistic changes involved in the drug-induced toxic injury. A convenient selection of endpoints allows a multiparametric evaluation of drug toxicity. In this regard, cytomic, proteomic, toxicogenomic and metabonomic approaches help to define patterns of hepatotoxicity for early identification of potential adverse effects of the drug to the liver.
Insights
Prioritizing drug candidates for liver toxicity is crucial in drug discovery. Multiparametric approaches using cultured hepatocytes help identify potential hepatotoxicity early, preventing later-stage failures.
Area of Science:
- Drug discovery and development
- Toxicology
- Hepatology
Background:
- The liver is a primary target for drug-induced toxicity, often resulting from reactive metabolites.
- Early identification of hepatotoxicity is a critical unmet need in drug discovery pipelines.
- Cultured hepatocytes are valuable tools for assessing drug-induced liver injury.
Purpose of the Study:
- To highlight the importance of evaluating hepatotoxicity in drug development.
- To discuss the utility of cultured hepatocytes in screening for liver toxicity.
- To emphasize the need for multiparametric approaches to understand drug-induced liver injury mechanisms.
Main Methods:
- Utilizing cultured hepatocytes to screen for drug-induced cellular damage.
- Investigating mechanisms of hepatotoxicity, including energy status disruption, calcium homeostasis, and oxidative stress.
- Employing cytomic, proteomic, toxicogenomic, and metabonomic approaches for multiparametric evaluation.
Main Results:
- Cultured hepatocytes retain key liver functions and aid in identifying chemically induced damage.
- Understanding hepatotoxicity mechanisms has advanced through studies using cell cultures.
- Multiparametric approaches enable comprehensive assessment of drug toxicity.
Conclusions:
- Early identification of hepatotoxicity potential is essential for successful drug development.
- Advanced omics approaches provide patterns for early detection of adverse liver effects.
- Cultured hepatocytes combined with multiparametric analysis offer a robust strategy for assessing drug safety.
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