CYP2E1 and miRNA-378a-3p contribute to acetaminophen- or tripterygium glycosides-induced hepatotoxicity

Keguang Chen1, Nan Guo1, Rui Zhang1

  • 1Institute of Clinical Pharmacology, Qilu Hospital of Shandong University, Jinan, China.

Insights

Increased cytochrome P450 2E1 (CYP2E1) expression drives drug-induced liver injury (DILI). This study reveals chlormethiazole (CMZ) reverses APAP or TG-induced liver damage by inhibiting CYP2E1, likely via miR-378a-3p regulation.

Area of Science:

  • Biochemistry
  • Toxicology
  • Molecular Biology

Background:

  • Drug-induced liver injury (DILI) is a significant clinical concern, often linked to oxidative stress.
  • Increased cytochrome P450 2E1 (CYP2E1) expression is implicated in DILI pathogenesis, but its regulatory mechanisms remain unclear.
  • Acetaminophen (APAP) and tripterygium glycosides (TG) are common causes of DILI.

Purpose of the Study:

  • To investigate the role of CYP2E1 in APAP- or TG-induced hepatotoxicity.
  • To explore the regulation of CYP2E1 and miR-378a-3p expression by APAP or TG.
  • To evaluate the protective effects of chlormethiazole (CMZ) against APAP/TG-induced liver injury.

Main Methods:

  • Rats were treated with APAP, TG, CMZ, or combinations for 4 weeks.
  • Biochemical parameters, liver histopathology (H&E staining), CYP2E1 mRNA/protein, and miR-378a-3p levels were assessed.
  • Quantitative real-time PCR (qRT-PCR) and Western blot were employed for expression analysis.

Main Results:

  • APAP or TG treatment significantly increased CYP2E1 expression and induced liver damage, oxidative stress, and TNF-α levels.
  • CMZ co-treatment ameliorated histopathological changes and reduced oxidative stress biomarkers.
  • CMZ reversed the APAP/TG-induced elevation of CYP2E1, while miR-378a-3p expression was suppressed across APAP, TG, and CMZ treatments.

Conclusions:

  • Elevated CYP2E1 expression plays a crucial role in APAP/TG-induced hepatotoxicity.
  • CYP2E1 induction may be mediated by the suppression of miR-378a-3p.
  • These findings offer a potential molecular basis for understanding and treating DILI.

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