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Mass Spectrometry and Luminogenic-based Approaches to Characterize Phase I Metabolic Competency of In Vitro Cell Cultures
Published on: March 28, 2017
Development of a highly sensitive cytotoxicity assay system for CYP3A4-mediated metabolic activation
Hiroko Hosomi1, Tatsuki Fukami, Atsushi Iwamura
1Drug Metabolism and Toxicology, Faculty of Pharmaceutical Sciences, Kanazawa University, Kakuma-machi, Kanazawa 920-1192, Japan.
Abstract:
Drug-induced hepatotoxicity, which is a rare but serious adverse reaction to a large number of pharmaceutical drugs, is sometimes associated with reactive metabolites produced by drug-metabolizing enzymes. In the present study, we constructed a cell-based system to evaluate the cytotoxicity of reactive metabolites produced by CYP3A4 using human hepatoma cells infected with an adenovirus vector expressing human CYP3A4 (AdCYP3A4). When seven hepatoma cell lines (HepG2, Hep3B, HLE, HLF, Huh6, Huh7, and Fa2N4 cells) were infected with AdCYP3A4, HepG2 cells showed the highest CYP3A4 protein expression and testosterone 6β-hydroxylase activity (670 pmol · min(-1) · mg(-1)). With the use of AdCYP3A4-infected HepG2 cells, the cytotoxicities of 23 drugs were evaluated by the 2-(2-methoxy-4-nitrophenyl)-3-(4-nitrophenyl)-5-(2,4-disulfophenyl)-2H-tetrazolium monosodium salt assay, and the cell viability when treated with 11 drugs (amiodarone, desipramine, felbamate, isoniazid, labetalol, leflunomide, nefazodone, nitrofurantoin, tacrine, terbinafine, and tolcapone) was significantly decreased. Moreover, the transfection of siRNA for nuclear factor erythroid 2-related factor 2 (Nrf2) to decrease the cellular expression level of Nrf2 exacerbated the cytotoxicity of some drugs (troglitazone, flutamide, acetaminophen, clozapine, terbinafine, and desipramine), suggesting that the genes regulated by Nrf2 are associated with the detoxification of the cytotoxicities mediated by CYP3A4. We constructed a highly sensitive cell-based system to detect the drug-induced cytotoxicity mediated by CYP3A4. This system would be beneficial in preclinical screening in drug development and increase our understanding of the drug-induced cytotoxicity associated with CYP3A4.
Insights
A new cell-based system effectively detects drug-induced liver injury caused by reactive metabolites from CYP3A4. This tool aids in preclinical drug development and understanding drug toxicity mechanisms.
Area of Science:
- Pharmacology
- Hepatology
- Drug Metabolism
Background:
- Drug-induced hepatotoxicity is a serious adverse reaction linked to reactive metabolites.
- Cytochrome P450 3A4 (CYP3A4) is a key enzyme involved in drug metabolism and the generation of reactive metabolites.
Purpose of the Study:
- To develop and validate a sensitive cell-based system for evaluating drug-induced cytotoxicity mediated by CYP3A4.
- To assess the role of nuclear factor erythroid 2-related factor 2 (Nrf2) in mitigating CYP3A4-associated drug toxicity.
Main Methods:
- Constructed a cell-based system using AdCYP3A4-infected HepG2 cells for high CYP3A4 expression.
- Evaluated the cytotoxicity of 23 drugs using a tetrazolium salt assay.
- Investigated the role of Nrf2 by transfecting siRNA to decrease its expression.
Main Results:
- AdCYP3A4-infected HepG2 cells exhibited high CYP3A4 protein expression and activity.
- Eleven of 23 tested drugs significantly decreased cell viability, indicating cytotoxicity.
- Decreased Nrf2 levels exacerbated the cytotoxicity of certain drugs, implicating Nrf2-regulated genes in detoxification.
Conclusions:
- A highly sensitive cell-based system for detecting CYP3A4-mediated drug-induced cytotoxicity was successfully developed.
- This system is valuable for preclinical drug screening and advancing the understanding of drug-induced liver injury.
- Nrf2-regulated pathways play a significant role in detoxifying CYP3A4-mediated drug cytotoxicity.
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