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Human Liver Microphysiological System for Assessing Drug-Induced Liver Toxicity In Vitro
Published on: January 31, 2022
Identification of in vitro protein biomarkers of idiosyncratic liver toxicity
Ji Gao1, Leah Ann Garulacan, Stephen M Storm
1Clinical Discovery, Pharmaceutical Research Institute, Bristol-Myers Squibb Company, Princeton, NJ, USA.
Abstract:
Drug-induced idiosyncratic hepatotoxicity continues to be an important safety issue for the pharmaceutical industry. This toxicity is due, in part, to the limited predictive nature of current pre-clinical study systems. A hypothesis was formed that treatment of existing in vitro hepatocyte cultures with drugs clinically linked to idiosyncratic hepatotoxicity would result in the release of extracellular protein biomarkers indicative of liver toxicity. To test this hypothesis, a combination of proteomic and immunological techniques were used to first identify, and subsequently verify, components of the protein-laden conditioned culture media from immortalized human hepatocytes which overexpressed cytochrome p450 3A4. These cells were treated separately with seven individual compounds made up of a combination of thiazolidinedione and l-tyrosine PPARgamma agonists and HIV protease inhibitors, plus a vehicle control (dimethyl sulfoxide). For each drug class, clinically determined hepatotoxic and non-hepatotoxic compounds were compared. Two proteins, BMS-PTX-265 and BMS-PTX-837, were reproducibly and significantly increased in the conditioned media from cells treated with each of the toxic compounds as compared to media from cells treated with the non-toxic compounds (and vehicle). This result supported the hypothesis, and so a series of successive assays (western blots and enzyme linked immunosorbent assays) were used to measure the response of these two proteins as a function of an expanded set of 20 compounds. For all 20 drugs, elevations of BMS-PTX-265 correlated exactly with the known safety profile; whereas changes in BMS-PTX-837 correctly predicted the safety profile in 19 of 20 drugs (one false negative). In summary, the data supports both the pre-clinical in vitro method as a means to identify new biomarkers of liver toxicity, as well as the validity of the biomarkers themselves.
Insights
New protein biomarkers, BMS-PTX-265 and BMS-PTX-837, were identified in vitro to predict drug-induced liver injury. This novel method enhances pre-clinical safety assessments for pharmaceutical development.
Area of Science:
- Biochemistry
- Toxicology
- Drug Development
Background:
- Drug-induced idiosyncratic hepatotoxicity poses a significant challenge in pharmaceutical development.
- Current pre-clinical systems have limited predictive capabilities for identifying potential liver toxicity.
Purpose of the Study:
- To investigate the hypothesis that drugs causing idiosyncratic hepatotoxicity release extracellular protein biomarkers from hepatocytes.
- To identify and validate novel protein biomarkers for predicting drug-induced liver injury.
Main Methods:
- Utilized proteomic and immunological techniques on conditioned media from immortalized human hepatocytes overexpressing cytochrome P450 3A4.
- Treated cells with thiazolidinedione and L-tyrosine PPARγ agonists, and HIV protease inhibitors, comparing toxic and non-toxic compounds.
- Verified biomarker candidates (BMS-PTX-265, BMS-PTX-837) using Western blots and ELISAs across 20 compounds.
Main Results:
- Two proteins, BMS-PTX-265 and BMS-PTX-837, were significantly elevated in media from cells treated with toxic compounds.
- BMS-PTX-265 elevations perfectly correlated with known drug safety profiles.
- BMS-PTX-837 correctly predicted safety profiles for 19 out of 20 drugs.
Conclusions:
- The study validates an in vitro method for identifying novel liver toxicity biomarkers.
- BMS-PTX-265 and BMS-PTX-837 show promise as reliable biomarkers for predicting drug-induced hepatotoxicity.
- This approach can improve pre-clinical safety evaluation in drug development.
