Antioxidant defence capacity modulation of two human cell lines by amiodarone and desethylamiodarone

J M Trivier1, N Pommery, M Lhermitte

  • 1Département de Toxicologie du Laboratoire de Biochimie et de Biologie Moléculaire, Hôpital Calmette, rue du Pr Leclercq, 59037, Lille Cedex France.

Insights

Amiodarone (AMIO) toxicity may stem from overwhelming cellular antioxidant defenses. This study reveals how AMIO and its metabolite impact liver and lung cells' antioxidant status, offering insights into drug-induced organ damage.

Area of Science:

  • Pharmacology
  • Toxicology
  • Cell Biology

Background:

  • Oxidative stress is increasingly implicated in amiodarone (AMIO) toxicity.
  • The precise cellular mechanisms behind AMIO-induced hepatic and pulmonary damage are not fully understood.

Purpose of the Study:

  • To investigate the effects of AMIO and its active metabolite, desethylamiodarone (DEA), on cellular antioxidant status.
  • To compare the antioxidant defense capacities of liver (Hep 3B) and lung (L132) cell lines.

Main Methods:

  • Assessed glutathione content, superoxide dismutase (SOD), and glutathione-related enzymes (glutathione S-transferase (GSH-S-T), glutathione reductase (GSSG-Rd)) in Hep 3B and L132 cells post-AMIO and DEA treatment.
  • Compared cellular enzyme activities and glutathione status with published data from normal cells.

Main Results:

  • Hep 3B cells showed decreased GSH-S-T and GSSG-Rd activities, with altered glutathione status.
  • L132 cells exhibited significantly reduced SOD activity.
  • Neither cell line detected glutathione peroxidase, but both maintained normal GSH-S-T and GSSG-Rd activities.

Conclusions:

  • AMIO and DEA primarily target GSH-S-T and GSSG-Rd in liver cells, and SOD in lung cells.
  • The initial cellular damage from AMIO may result from the depletion of antioxidant defense systems in both hepatic and pulmonary cells.