4.0 Article

Involvement of Reactive Metabolites of Diclofenac in Cytotoxicity in Sandwich-Cultured Rat Hepatocytes

Journal

INTERNATIONAL JOURNAL OF TOXICOLOGY
Volume 36, Issue 3, Pages 260-267

Publisher

SAGE PUBLICATIONS INC
DOI: 10.1177/1091581817700584

Keywords

acyl glucuronide; covalent adduct; liver; idiosyncratic; injury

Funding

  1. Antiaging Project for Private Universities
  2. Japanese Ministry of Education, Culture, Sports, Science and Technology (MEXT)
  3. MEXT [S1411037]

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Background and Objectives: Diclofenac (DIC) is metabolized to reactive metabolites such as diclofenac acyl--d-glucuronide (DIC-AG). It is possible that such reactive metabolites could cause tissue damage by formation of covalent protein adducts and other modification of cellular proteins or by induction of immune responses against its covalent protein adducts. However, the detailed mechanisms of idiosyncratic drug-induced liver injury (DILI) have been unclear. The objective is to clarify the involvement of DIC-AG and 4hydroxydiclofenac (4OH-DIC) in acute DILI.Methods:We examined the effects of inhibiting DIC-AG and 4OH-DIC production on covalent protein adduct formation and lactate dehydrogenase leakage using sandwich-cultured rat hepatocytes (SCRHs).Results:After pretreatment of SCRH with (-)-borneol (BOR, a uridine diphosphate (UDP)-glucuronosyltransferase inhibitor) or sulfaphenazole (SUL, a cytochrome P450 2C9 inhibitor) for 30 minutes, intracellular concentrations of DIC, DIC-AG, and 4OH-DIC were determined after further treating cells with 300 M DIC for 3 hours. The decreased levels of reactive metabolites caused by BOR or SUL pretreatment resulted in decreased lactate dehydrogenase leakage from SCRH, although the formation of covalent protein adducts was not affected.Conclusion:These results suggested that both DIC-AG and 4OH-DIC may be involved in acute cytotoxicity by DIC.

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