The CO/HO system reverses inhibition of mitochondrial biogenesis and prevents murine doxorubicin cardiomyopathy.

dc.contributor.author

Suliman, Hagir B

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Carraway, Martha Sue

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Ali, Abdelwahid S

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Reynolds, Chrystal M

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Welty-Wolf, Karen E

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Piantadosi, Claude A

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United States

dc.date.accessioned

2017-04-12T13:13:12Z

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2007-12

dc.description.abstract

The clinical utility of anthracycline anticancer agents, especially doxorubicin, is limited by a progressive toxic cardiomyopathy linked to mitochondrial damage and cardiomyocyte apoptosis. Here we demonstrate that the post-doxorubicin mouse heart fails to upregulate the nuclear program for mitochondrial biogenesis and its associated intrinsic antiapoptosis proteins, leading to severe mitochondrial DNA (mtDNA) depletion, sarcomere destruction, apoptosis, necrosis, and excessive wall stress and fibrosis. Furthermore, we exploited recent evidence that mitochondrial biogenesis is regulated by the CO/heme oxygenase (CO/HO) system to ameliorate doxorubicin cardiomyopathy in mice. We found that the myocardial pathology was averted by periodic CO inhalation, which restored mitochondrial biogenesis and circumvented intrinsic apoptosis through caspase-3 and apoptosis-inducing factor. Moreover, CO simultaneously reversed doxorubicin-induced loss of DNA binding by GATA-4 and restored critical sarcomeric proteins. In isolated rat cardiac cells, HO-1 enzyme overexpression prevented doxorubicin-induced mtDNA depletion and apoptosis via activation of Akt1/PKB and guanylate cyclase, while HO-1 gene silencing exacerbated doxorubicin-induced mtDNA depletion and apoptosis. Thus doxorubicin disrupts cardiac mitochondrial biogenesis, which promotes intrinsic apoptosis, while CO/HO promotes mitochondrial biogenesis and opposes apoptosis, forestalling fibrosis and cardiomyopathy. These findings imply that the therapeutic index of anthracycline cancer chemotherapeutics can be improved by the protection of cardiac mitochondrial biogenesis.

dc.identifier

https://www.ncbi.nlm.nih.gov/pubmed/18037988

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0021-9738

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https://hdl.handle.net/10161/13989

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eng

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American Society for Clinical Investigation

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J Clin Invest

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10.1172/JCI32967

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3-Phosphoinositide-Dependent Protein Kinases

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Animals

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Antibiotics, Antineoplastic

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Antimetabolites

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Apoptosis

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Carbon Monoxide

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Cardiomyopathies

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Caspase 3

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Cells, Cultured

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DNA, Mitochondrial

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Doxorubicin

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Fibrosis

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GATA4 Transcription Factor

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Gene Silencing

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Guanylate Cyclase

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Heme Oxygenase (Decyclizing)

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Male

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Mice

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Mitochondria, Heart

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Myocardium

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Necrosis

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Protein-Serine-Threonine Kinases

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Proto-Oncogene Proteins c-akt

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Rats

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Sarcomeres

dc.title

The CO/HO system reverses inhibition of mitochondrial biogenesis and prevents murine doxorubicin cardiomyopathy.

dc.type

Journal article

pubs.author-url

https://www.ncbi.nlm.nih.gov/pubmed/18037988

pubs.begin-page

3730

pubs.end-page

3741

pubs.issue

12

pubs.organisational-group

Anesthesiology

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Clinical Science Departments

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Duke

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Duke Cancer Institute

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Institutes and Centers

pubs.organisational-group

Medicine

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Medicine, Pulmonary, Allergy, and Critical Care Medicine

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Pathology

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School of Medicine

pubs.publication-status

Published

pubs.volume

117

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