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Artesunate overcomes drug resistance in multiple myeloma by inducing mitochondrial stress and non-caspase apoptosis

Although novel drugs have contributed immensely to improving outcomes of patients with multiple myeloma (MM), many patients develop drug resistance and ultimately succumb to MM. Here, we show that artesunate, an anti-malarial drug, reliably induces cell death in vitro in naïve as well as drug-resist...

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Autores principales: Papanikolaou, Xenofon, Johnson, Sarah, Garg, Tarun, Tian, Erming, Tytarenko, Ruslana, Zhang, Qing, Stein, Caleb, Barlogie, Bart, Epstein, Joshua, Heuck, Christoph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4147310/
https://www.ncbi.nlm.nih.gov/pubmed/24948357
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author Papanikolaou, Xenofon
Johnson, Sarah
Garg, Tarun
Tian, Erming
Tytarenko, Ruslana
Zhang, Qing
Stein, Caleb
Barlogie, Bart
Epstein, Joshua
Heuck, Christoph
author_facet Papanikolaou, Xenofon
Johnson, Sarah
Garg, Tarun
Tian, Erming
Tytarenko, Ruslana
Zhang, Qing
Stein, Caleb
Barlogie, Bart
Epstein, Joshua
Heuck, Christoph
author_sort Papanikolaou, Xenofon
collection PubMed
description Although novel drugs have contributed immensely to improving outcomes of patients with multiple myeloma (MM), many patients develop drug resistance and ultimately succumb to MM. Here, we show that artesunate, an anti-malarial drug, reliably induces cell death in vitro in naïve as well as drug-resistant MM cells at concentrations shown to be safe in humans. Artesunate induced apoptosis predominantly through the non-caspase mediated pathway by primarily targeting mitochondria and causing outer mitochondrial membrane permeabilization that led to cytosolic and subsequent nuclear translocation of mitochondrial proteins apoptosis inducing factor (AIF) and endonuclease G (EndoG). Nuclear translocation of AIF and EndoG was accompanied by low levels of reactive oxygen species (ROS) and increased mitochondrial production of superoxide. These effects were present before apoptosis was evident and were related to intracellular levels of bivalent iron (Fe(+2)). Artesunate's unique mechanism probably was at least partially responsible for, its ability to act synergistically with multiple anti-myeloma agents. Our findings suggest that artesunate acts through iron to affect the mitochondria and induce low ROS and non-caspase–mediated apoptosis. Its potency, toxicity profile, and synergism with other drugs make it an intriguing new candidate for MM treatment.
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spelling pubmed-41473102014-08-29 Artesunate overcomes drug resistance in multiple myeloma by inducing mitochondrial stress and non-caspase apoptosis Papanikolaou, Xenofon Johnson, Sarah Garg, Tarun Tian, Erming Tytarenko, Ruslana Zhang, Qing Stein, Caleb Barlogie, Bart Epstein, Joshua Heuck, Christoph Oncotarget Research Paper Although novel drugs have contributed immensely to improving outcomes of patients with multiple myeloma (MM), many patients develop drug resistance and ultimately succumb to MM. Here, we show that artesunate, an anti-malarial drug, reliably induces cell death in vitro in naïve as well as drug-resistant MM cells at concentrations shown to be safe in humans. Artesunate induced apoptosis predominantly through the non-caspase mediated pathway by primarily targeting mitochondria and causing outer mitochondrial membrane permeabilization that led to cytosolic and subsequent nuclear translocation of mitochondrial proteins apoptosis inducing factor (AIF) and endonuclease G (EndoG). Nuclear translocation of AIF and EndoG was accompanied by low levels of reactive oxygen species (ROS) and increased mitochondrial production of superoxide. These effects were present before apoptosis was evident and were related to intracellular levels of bivalent iron (Fe(+2)). Artesunate's unique mechanism probably was at least partially responsible for, its ability to act synergistically with multiple anti-myeloma agents. Our findings suggest that artesunate acts through iron to affect the mitochondria and induce low ROS and non-caspase–mediated apoptosis. Its potency, toxicity profile, and synergism with other drugs make it an intriguing new candidate for MM treatment. Impact Journals LLC 2014-03-24 /pmc/articles/PMC4147310/ /pubmed/24948357 Text en Copyright: © 2014 Papanikolaou et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Papanikolaou, Xenofon
Johnson, Sarah
Garg, Tarun
Tian, Erming
Tytarenko, Ruslana
Zhang, Qing
Stein, Caleb
Barlogie, Bart
Epstein, Joshua
Heuck, Christoph
Artesunate overcomes drug resistance in multiple myeloma by inducing mitochondrial stress and non-caspase apoptosis
title Artesunate overcomes drug resistance in multiple myeloma by inducing mitochondrial stress and non-caspase apoptosis
title_full Artesunate overcomes drug resistance in multiple myeloma by inducing mitochondrial stress and non-caspase apoptosis
title_fullStr Artesunate overcomes drug resistance in multiple myeloma by inducing mitochondrial stress and non-caspase apoptosis
title_full_unstemmed Artesunate overcomes drug resistance in multiple myeloma by inducing mitochondrial stress and non-caspase apoptosis
title_short Artesunate overcomes drug resistance in multiple myeloma by inducing mitochondrial stress and non-caspase apoptosis
title_sort artesunate overcomes drug resistance in multiple myeloma by inducing mitochondrial stress and non-caspase apoptosis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4147310/
https://www.ncbi.nlm.nih.gov/pubmed/24948357
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