Lopimune-induced mitochondrial toxicity is attenuated by increased uncoupling protein-2 level in treated mouse

Sara El Hoss1, Georges M Bahr1, Karim S Echtay2

  • 1Faculty of Medicine and Medical Sciences, University of Balamand, P.O. Box 100, Tripoli, Lebanon.

Insights

The protease inhibitor Lopimune reduced mitochondrial function and increased proton leak, potentially mediated by uncoupling protein-2 (UCP2). This UCP2 upregulation may act as a feedback mechanism to control reactive oxygen species (ROS) production.

Area of Science:

  • Hepatology
  • Mitochondrial Biology
  • Pharmacology

Background:

  • Protease inhibitors (PIs) like Lopimune are effective therapeutics.
  • The impact of Lopimune on mitochondrial bioenergetics in hepatocytes remains unexamined.
  • Understanding PI-induced mitochondrial toxicity is crucial for patient safety.

Purpose of the Study:

  • To investigate Lopimune's effects on mitochondrial respiration in hepatocytes.
  • To assess Lopimune's impact on reactive oxygen species (ROS) production.
  • To determine changes in uncoupling protein-2 (UCP2) expression following Lopimune administration.

Main Methods:

  • Hepatocytes were isolated from mouse liver via collagenase perfusion.
  • Mitochondrial respiration was measured using a Rank Brothers oxygen electrode.
  • ROS production was monitored by flow cytometry; UCP2 expression by Western blotting.

Main Results:

  • Lopimune significantly decreased the respiratory control ratio (RCR) by ~30% from day 4-9.
  • This decrease was attributed to increased state 4 respiration, indicating enhanced mitochondrial proton leak.
  • ROS production initially increased then returned to baseline; UCP2 expression was induced starting day 4.

Conclusions:

  • Lopimune induces mitochondrial proton leak, potentially mediated by UCP2.
  • UCP2 upregulation may serve as a negative feedback mechanism to regulate ROS production.
  • These findings offer insights into PI-induced mitochondrial toxicity and oxidative stress regulation.