Role of Manganese Superoxide Dismutase in Chemotherapy-induced Oxidative Stress

Existing treatments for mantle cell lymphoma (MCL) are non-curative, demonstrating a need for a refined treatment approach. Recent clinical trials have shown promising results with the use of mammalian target of rapamycin inhibitors. I hypothesize that the anti-tumor effect of mTOR inhibitors in man...

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Main Author: Gustafson, Heather Lynn
Other Authors: Briehl, Margaret M.
Language:en
Published: The University of Arizona. 2011
Subjects:
Online Access:http://hdl.handle.net/10150/203510
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spelling ndltd-arizona.edu-oai-arizona.openrepository.com-10150-2035102015-10-23T04:47:48Z Role of Manganese Superoxide Dismutase in Chemotherapy-induced Oxidative Stress Gustafson, Heather Lynn Briehl, Margaret M. Rimsza, Lisa Futscher, Bernard Doetschman, Thomas Lau, Serrine Briehl, Margaret M. Oxidative Stress Cancer Biology Mantle Cell Lymphoma mTOR inhibitors Existing treatments for mantle cell lymphoma (MCL) are non-curative, demonstrating a need for a refined treatment approach. Recent clinical trials have shown promising results with the use of mammalian target of rapamycin inhibitors. I hypothesize that the anti-tumor effect of mTOR inhibitors in mantle cell lymphoma is mediated by an increase in manganese superoxide dismutase (MnSOD) protein expression and accumulation of hydrogen peroxide (H₂O₂). Findings indicate that the rapamycin-induced cytostatic effect is characterized by increased levels of MnSOD and H₂O₂, and is necessary for the full growth inhibitory effect of rapamycin. Furthermore, over-expression of MnSOD elevated the level of H₂O₂ and increased sensitivity to MnSOD. Treatment with rapamycin resulted in a loss of serine 473 phosphorylation of AKT and increased levels of MnSOD were found to be due to inhibition of the mTORC2 complex. These results are the first to suggest that long term treatment of MCL cells with rapamycin inhibits the mTORC2 complex. By understanding the key signaling molecules and affected pathways in the anti-tumor effects of mTOR inhibitors, we may be able to identify additional predictive markers to improve the therapeutic value, or study drug combinations that will enhance the effect of ROSinduced cytotoxicity. A retrospective study utilizing samples from lymphoma patients receiving standard anthracycline-based therapies, identified single nucleotide polymorphisms in oxidative stressrelated genes associated with survival. Individuals carrying minor allele SNPs in myeloperoxidase (MPO) and an aldo-keto reductase (AKR1C3) were found to be associated with shorter time to disease progression and death. This data suggest that some patients may benefit from a different therapy than the current standard of care and that regulation of the redox environment plays a role in aggressive lymphoma treatment response. 2011 text Electronic Dissertation http://hdl.handle.net/10150/203510 en Copyright © is held by the author. Digital access to this material is made possible by the University Libraries, University of Arizona. Further transmission, reproduction or presentation (such as public display or performance) of protected items is prohibited except with permission of the author. The University of Arizona.
collection NDLTD
language en
sources NDLTD
topic Oxidative Stress
Cancer Biology
Mantle Cell Lymphoma
mTOR inhibitors
spellingShingle Oxidative Stress
Cancer Biology
Mantle Cell Lymphoma
mTOR inhibitors
Gustafson, Heather Lynn
Role of Manganese Superoxide Dismutase in Chemotherapy-induced Oxidative Stress
description Existing treatments for mantle cell lymphoma (MCL) are non-curative, demonstrating a need for a refined treatment approach. Recent clinical trials have shown promising results with the use of mammalian target of rapamycin inhibitors. I hypothesize that the anti-tumor effect of mTOR inhibitors in mantle cell lymphoma is mediated by an increase in manganese superoxide dismutase (MnSOD) protein expression and accumulation of hydrogen peroxide (H₂O₂). Findings indicate that the rapamycin-induced cytostatic effect is characterized by increased levels of MnSOD and H₂O₂, and is necessary for the full growth inhibitory effect of rapamycin. Furthermore, over-expression of MnSOD elevated the level of H₂O₂ and increased sensitivity to MnSOD. Treatment with rapamycin resulted in a loss of serine 473 phosphorylation of AKT and increased levels of MnSOD were found to be due to inhibition of the mTORC2 complex. These results are the first to suggest that long term treatment of MCL cells with rapamycin inhibits the mTORC2 complex. By understanding the key signaling molecules and affected pathways in the anti-tumor effects of mTOR inhibitors, we may be able to identify additional predictive markers to improve the therapeutic value, or study drug combinations that will enhance the effect of ROSinduced cytotoxicity. A retrospective study utilizing samples from lymphoma patients receiving standard anthracycline-based therapies, identified single nucleotide polymorphisms in oxidative stressrelated genes associated with survival. Individuals carrying minor allele SNPs in myeloperoxidase (MPO) and an aldo-keto reductase (AKR1C3) were found to be associated with shorter time to disease progression and death. This data suggest that some patients may benefit from a different therapy than the current standard of care and that regulation of the redox environment plays a role in aggressive lymphoma treatment response.
author2 Briehl, Margaret M.
author_facet Briehl, Margaret M.
Gustafson, Heather Lynn
author Gustafson, Heather Lynn
author_sort Gustafson, Heather Lynn
title Role of Manganese Superoxide Dismutase in Chemotherapy-induced Oxidative Stress
title_short Role of Manganese Superoxide Dismutase in Chemotherapy-induced Oxidative Stress
title_full Role of Manganese Superoxide Dismutase in Chemotherapy-induced Oxidative Stress
title_fullStr Role of Manganese Superoxide Dismutase in Chemotherapy-induced Oxidative Stress
title_full_unstemmed Role of Manganese Superoxide Dismutase in Chemotherapy-induced Oxidative Stress
title_sort role of manganese superoxide dismutase in chemotherapy-induced oxidative stress
publisher The University of Arizona.
publishDate 2011
url http://hdl.handle.net/10150/203510
work_keys_str_mv AT gustafsonheatherlynn roleofmanganesesuperoxidedismutaseinchemotherapyinducedoxidativestress
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