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Updated: Apr 7, 2026

Human Liver Microphysiological System for Assessing Drug-Induced Liver Toxicity In Vitro
Published on: January 31, 2022
Preventing Drug-Induced Liver Injury: How Useful Are Animal Models?
1Medicen Paris Region, Paris, France.
Abstract:
Drug-induced liver injury (DILI) is the most common organ toxicity encountered in regulatory animal toxicology studies required prior to the clinical development of new drug candidates. Very few reports have evaluated the value of these studies for predicting DILI in humans. Indeed, compounds inducing liver toxicity in regulatory toxicology studies are not always correlated with a risk of DILI in humans. Conversely, compounds associated with the occurrence of DILI in phase 3 studies or after market release are often tested negative in regulatory toxicology studies. Idiosyncratic DILI is a rare event that is precipitated in an individual by the simultaneous occurrence of several critical factors. These factors may relate to the host (e.g. human leukocyte antigen polymorphism, inflammation), the drug (e.g. reactive metabolites) or the environment (e.g. diet/microbiota). This type of toxicity therefore cannot be detected in conventional animal toxicology studies. Several animal models have recently been proposed for the identification of drugs with the potential to cause idiosyncratic DILI: rats treated with lipopolysaccharide, Sod2(+/-) mice, panels of inbred mouse strains or chimeric mice with humanized livers. These models are not suitable for use in the prospective screening of new drug candidates. Humans therefore constitute the best model for predicting and assessing idiopathic DILI.
Insights
Regulatory animal studies often fail to predict human drug-induced liver injury (DILI). Idiosyncratic DILI arises from complex individual factors, making it undetectable in standard animal models. Humans remain the best model for assessing DILI risk.
Area of Science:
- Pharmacology
- Toxicology
- Drug Development
Background:
- Drug-induced liver injury (DILI) is a primary concern in preclinical drug development.
- Current animal toxicology studies show poor correlation with human DILI outcomes.
- Idiosyncratic DILI results from a complex interplay of host, drug, and environmental factors.
Purpose of the Study:
- To evaluate the predictive value of animal toxicology studies for human DILI.
- To assess the limitations of conventional and novel animal models for idiosyncratic DILI.
- To highlight the importance of human data in predicting DILI.
Main Methods:
- Review of existing literature on DILI prediction in animal models.
- Analysis of discrepancies between animal study results and human clinical DILI data.
- Discussion of novel animal models and their limitations for prospective screening.
Main Results:
- Compounds causing liver toxicity in animals do not consistently predict human DILI.
- Drugs causing DILI in humans often yield negative results in regulatory animal studies.
- Existing animal models are unsuitable for prospective screening of idiosyncratic DILI.
Conclusions:
- Conventional animal toxicology studies have limited value in predicting human DILI.
- Idiosyncratic DILI cannot be reliably detected using current animal models.
- Humans are the most accurate model for predicting and assessing idiosyncratic DILI.
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