| HOME | HELP | FEEDBACK | SUBSCRIPTIONS | ARCHIVE | SEARCH | TABLE OF CONTENTS |
Experimental Therapeutics |
Department of Biochemistry and Molecular Biology, Toxicology Graduate Program, University of Minnesota School of Medicine, Duluth, Minnesota 55812
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., 129:214222, 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 48 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.
This article has been cited by other articles:
![]() |
P. Jungsuwadee, R. Nithipongvanitch, Y. Chen, T. D. Oberley, D. A. Butterfield, D. K. St. Clair, and M. Vore Mrp1 Localization and Function in Cardiac Mitochondria after Doxorubicin Mol. Pharmacol., May 1, 2009; 75(5): 1117 - 1126. [Abstract] [Full Text] [PDF] |
||||
![]() |
Y. Hiraumi, E. Iwai-Kanai, S. Baba, Y. Yui, Y. Kamitsuji, Y. Mizushima, H. Matsubara, M. Watanabe, K.-i. Watanabe, S. Toyokuni, et al. Granulocyte colony-stimulating factor protects cardiac mitochondria in the early phase of cardiac injury Am J Physiol Heart Circ Physiol, March 1, 2009; 296(3): H823 - H832. [Abstract] [Full Text] [PDF] |
||||
![]() |
W. Zhu, M. H. Soonpaa, H. Chen, W. Shen, R. M. Payne, E. A. Liechty, R. L. Caldwell, W. Shou, and L. J. Field Acute Doxorubicin Cardiotoxicity Is Associated With p53-Induced Inhibition of the Mammalian Target of Rapamycin Pathway Circulation, January 6, 2009; 119(1): 99 - 106. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. M. Elliott and M. A. Al-Hajj ABCB8 Mediates Doxorubicin Resistance in Melanoma Cells by Protecting the Mitochondrial Genome Mol. Cancer Res., January 1, 2009; 7(1): 79 - 87. [Abstract] [Full Text] [PDF] |
||||
![]() |
C. A. Piantadosi, M. S. Carraway, A. Babiker, and H. B. Suliman Heme Oxygenase-1 Regulates Cardiac Mitochondrial Biogenesis via Nrf2-Mediated Transcriptional Control of Nuclear Respiratory Factor-1 Circ. Res., November 21, 2008; 103(11): 1232 - 1240. [Abstract] [Full Text] [PDF] |
||||
![]() |
Y. Will, J. A. Dykens, S. Nadanaciva, B. Hirakawa, J. Jamieson, L. D. Marroquin, J. Hynes, S. Patyna, and B. A. Jessen Effect of the Multitargeted Tyrosine Kinase Inhibitors Imatinib, Dasatinib, Sunitinib, and Sorafenib on Mitochondrial Function in Isolated Rat Heart Mitochondria and H9c2 Cells Toxicol. Sci., November 1, 2008; 106(1): 153 - 161. [Abstract] [Full Text] [PDF] |
||||
![]() |
Y.-C. Lien, T. Noel, H. Liu, A. J. Stromberg, K.-C. Chen, and D. K. St. Clair Phospholipase C-{delta}1 Is a Critical Target for Tumor Necrosis Factor Receptor-Mediated Protection against Adriamycin-Induced Cardiac Injury. Cancer Res., April 15, 2006; 66(8): 4329 - 4338. [Abstract] [Full Text] [PDF] |
||||
![]() |
Y.-C. Lien, S.-M. Lin, R. Nithipongvanitch, T. D. Oberley, T. Noel, Q. Zhao, C. Daosukho, and D. K. St. Clair Tumor necrosis factor receptor deficiency exacerbated Adriamycin-induced cardiomyocytes apoptosis: an insight into the Fas connection. Mol. Cancer Ther., February 1, 2006; 5(2): 261 - 269. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. J. Doyle, A. I. Neugut, J. S. Jacobson, V. R. Grann, and D. L. Hershman Chemotherapy and Cardiotoxicity in Older Breast Cancer Patients: A Population-Based Study J. Clin. Oncol., December 1, 2005; 23(34): 8597 - 8605. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. Ascensao, J. Magalhaes, J. M. C. Soares, R. Ferreira, M. J. Neuparth, F. Marques, P. J. Oliveira, and J. A. Duarte Moderate endurance training prevents doxorubicin-induced in vivo mitochondriopathy and reduces the development of cardiac apoptosis Am J Physiol Heart Circ Physiol, August 1, 2005; 289(2): H722 - H731. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. Tokarska-Schlattner, M. Zaugg, R. da Silva, E. Lucchinetti, M. C. Schaub, T. Wallimann, and U. Schlattner Acute toxicity of doxorubicin on isolated perfused heart: response of kinases regulating energy supply Am J Physiol Heart Circ Physiol, July 1, 2005; 289(1): H37 - H47. [Abstract] [Full Text] [PDF] |
||||
![]() |
K. A. Conklin Coenzyme Q10 for Prevention of Anthracycline-Induced Cardiotoxicity Integr Cancer Ther, June 1, 2005; 4(2): 110 - 130. [Abstract] [PDF] |
||||
![]() |
S. E. Lipshultz, S. R. Lipsitz, S. E. Sallan, V. M. Dalton, S. M. Mone, R. D. Gelber, and S. D. Colan Chronic Progressive Cardiac Dysfunction Years After Doxorubicin Therapy for Childhood Acute Lymphoblastic Leukemia J. Clin. Oncol., April 20, 2005; 23(12): 2629 - 2636. [Abstract] [Full Text] [PDF] |
||||
![]() |
G. Minotti, P. Menna, E. Salvatorelli, G. Cairo, and L. Gianni Anthracyclines: Molecular Advances and Pharmacologic Developments in Antitumor Activity and Cardiotoxicity Pharmacol. Rev., June 1, 2004; 56(2): 185 - 229. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. E. Buyukokuroglu, S. Taysi, M. Buyukavci, and E. Bakan Prevention of acute adriamycin cardiotoxicity by dantrolene in rats Human and Experimental Toxicology, May 1, 2004; 23(5): 251 - 256. [Abstract] [PDF] |
||||
![]() |
S. FOGLI, P. NIERI, and M. C. BRESCHI The role of nitric oxide in anthracycline toxicity and prospects for pharmacologic prevention of cardiac damage FASEB J, April 1, 2004; 18(6): 664 - 675. [Abstract] [Full Text] [PDF] |
||||
| HOME | HELP | FEEDBACK | SUBSCRIPTIONS | ARCHIVE | SEARCH | TABLE OF CONTENTS |
| Cancer Research | Clinical Cancer Research |
| Cancer Epidemiology Biomarkers & Prevention | Molecular Cancer Therapeutics |
| Molecular Cancer Research | Cancer Prevention Research |
| Cancer Prevention Journals Portal | Cancer Reviews Online |
| Annual Meeting Education Book | Meeting Abstracts Online |