Related Experiment Video
Updated: Feb 21, 2026

A Doxorubicin-Induced Murine Model of Dilated Cardiomyopathy In Vivo
Published on: May 16, 2020
Cumulative and irreversible cardiac mitochondrial dysfunction induced by doxorubicin
S Zhou1, A Starkov, M K Froberg
1Department of Biochemistry and Molecular Biology, University of Minnesota School of Medicine, Duluth 55812, USA.
Abstract:
Interference with mitochondrial calcium regulation is proposed to be a primary causative event in the mechanism of doxorubicin-induced cardiotoxicity. We previously reported disruption of mitochondrial calcium homeostasis after chronic doxorubicin administration (Solen et al. Toxicol. Appl. Pharmacol, 129: 214-222, 1994). The present study was designed to characterize the dose-dependent and cumulative interference with mitochondrial calcium regulation and to assess the reversibility of this functional lesion. Sprague Dawley rats were treated with 2 mg/kg/week doxorubicin s.c. for 4-8 weeks. With succinate as substrate, cardiac mitochondria isolated from rats after 4 weeks of treatment with doxorubicin expressed a lower calcium loading capacity compared with control. This suppression of calcium loading capacity increased with successive doses to 8 weeks of treatment (P < 0.05) and persisted for 5 weeks after the last doxorubicin injection, and was corroborated by dose-dependent and irreversible histopathological changes. Preincubation of mitochondria with tamoxifen, DTT, or monobromobimane did not reverse the diminished calcium loading capacity caused by doxorubicin. In contrast, incubation with cyclosporin A abolished any discernible difference in mitochondrial calcium loading capacity between doxorubicin-treated and saline-treated rats. The decrease in cardiac mitochondrial calcium loading capacity was not attributable to bioenergetic changes in the electron transport chain, because the mitochondrial coupling efficiency was not altered by doxorubicin treatment. However, the ADP/ATP translocase content was significantly lower in mitochondria from rats that received 8 weeks of doxorubicin treatment. These data indicate that doxorubicin treatment in vivo causes a dose-dependent and irreversible decrease in mitochondrial calcium loading capacity. Suppression of adenine nucleotide translocase content may be a key factor altering the calcium-dependent regulation of the mitochondrial permeability transition pore, which may account for the cumulative and irreversible loss of myocardial function in patients receiving doxorubicin chemotherapy.
Insights
Doxorubicin chemotherapy causes dose-dependent, irreversible mitochondrial damage, impairing calcium regulation and leading to heart dysfunction. Cyclosporin A may offer protection against this cardiotoxicity.
Area of Science:
- Cardiovascular Research
- Mitochondrial Biology
- Pharmacology
Background:
- Mitochondrial calcium dysregulation is implicated in doxorubicin-induced cardiotoxicity.
- Previous studies showed doxorubicin disrupts cardiac mitochondrial calcium homeostasis.
Purpose of the Study:
- Characterize dose-dependent and cumulative effects of doxorubicin on mitochondrial calcium regulation.
- Assess the reversibility of doxorubicin-induced mitochondrial dysfunction.
- Investigate potential protective agents.
Main Methods:
- Sprague Dawley rats received weekly doxorubicin injections for 4-8 weeks.
- Cardiac mitochondria were isolated to assess calcium loading capacity with succinate.
- Mitochondrial content (ADP/ATP translocase) and coupling efficiency were analyzed.
- Effect of tamoxifen, DTT, monobromobimane, and cyclosporin A was evaluated.
Main Results:
- Doxorubicin treatment progressively reduced mitochondrial calcium loading capacity in a dose-dependent manner.
- This impairment persisted for 5 weeks post-treatment and was associated with irreversible histopathological changes.
- Cyclosporin A incubation reversed the diminished calcium loading capacity.
- Doxorubicin treatment reduced ADP/ATP translocase content but did not affect mitochondrial coupling efficiency.
Conclusions:
- Doxorubicin causes dose-dependent, irreversible mitochondrial calcium loading impairment.
- Reduced ADP/ATP translocase may alter mitochondrial permeability transition pore regulation, contributing to cardiotoxicity.
- Cyclosporin A shows potential in mitigating doxorubicin-induced mitochondrial dysfunction.
Related Concept Videos
Cardiomyopathy IV: Restrictive Cardiomyopathy
Cardiomyopathy II: Dilated Cardiomyopathy
Myocarditis I: Introduction
Imbalances in Cardiac Output
CHF can occur due to the failure of either side of the heart. Left-side failure leads to pulmonary congestion—the right side continues to send...
Electron Transport Chain: Complex I and II
ROS generation is regulated and maintained at moderate levels necessary...
Heart Failure Drugs: Inotropic Agents

