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Glucose starvation-mediated inhibition of salinomycin induced autophagy amplifies cancer cell specific cell death

Salinomycin has been used as treatment for malignant tumors in a small number of humans, causing far less side effects than standard chemotherapy. Several studies show that Salinomycin targets cancer-initiating cells (cancer stem cells, or CSC) resistant to conventional therapies. Numerous studies s...

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Autores principales: Jangamreddy, Jaganmohan R., Jain, Mayur V., Hallbeck, Anna-Lotta, Roberg, Karin, Lotfi, Kourosh, Łos, Marek J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4496345/
https://www.ncbi.nlm.nih.gov/pubmed/25912307
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author Jangamreddy, Jaganmohan R.
Jain, Mayur V.
Hallbeck, Anna-Lotta
Roberg, Karin
Lotfi, Kourosh
Łos, Marek J.
author_facet Jangamreddy, Jaganmohan R.
Jain, Mayur V.
Hallbeck, Anna-Lotta
Roberg, Karin
Lotfi, Kourosh
Łos, Marek J.
author_sort Jangamreddy, Jaganmohan R.
collection PubMed
description Salinomycin has been used as treatment for malignant tumors in a small number of humans, causing far less side effects than standard chemotherapy. Several studies show that Salinomycin targets cancer-initiating cells (cancer stem cells, or CSC) resistant to conventional therapies. Numerous studies show that Salinomycin not only reduces tumor volume, but also decreases tumor recurrence when used as an adjuvant to standard treatments. In this study we show that starvation triggered different stress responses in cancer cells and primary normal cells, which further improved the preferential targeting of cancer cells by Salinomycin. Our in vitro studies further demonstrate that the combined use of 2-Fluoro 2-deoxy D-glucose, or 2-deoxy D-glucose with Salinomycin is lethal in cancer cells while the use of Oxamate does not improve cell death-inducing properties of Salinomycin. Furthermore, we show that treatment of cancer cells with Salinomycin under starvation conditions not only increases the apoptotic caspase activity, but also diminishes the protective autophagy normally triggered by the treatment with Salinomycin alone. Thus, this study underlines the potential use of Salinomycin as a cancer treatment, possibly in combination with short-term starvation or starvation-mimicking pharmacologic intervention.
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spelling pubmed-44963452015-07-15 Glucose starvation-mediated inhibition of salinomycin induced autophagy amplifies cancer cell specific cell death Jangamreddy, Jaganmohan R. Jain, Mayur V. Hallbeck, Anna-Lotta Roberg, Karin Lotfi, Kourosh Łos, Marek J. Oncotarget Research Paper Salinomycin has been used as treatment for malignant tumors in a small number of humans, causing far less side effects than standard chemotherapy. Several studies show that Salinomycin targets cancer-initiating cells (cancer stem cells, or CSC) resistant to conventional therapies. Numerous studies show that Salinomycin not only reduces tumor volume, but also decreases tumor recurrence when used as an adjuvant to standard treatments. In this study we show that starvation triggered different stress responses in cancer cells and primary normal cells, which further improved the preferential targeting of cancer cells by Salinomycin. Our in vitro studies further demonstrate that the combined use of 2-Fluoro 2-deoxy D-glucose, or 2-deoxy D-glucose with Salinomycin is lethal in cancer cells while the use of Oxamate does not improve cell death-inducing properties of Salinomycin. Furthermore, we show that treatment of cancer cells with Salinomycin under starvation conditions not only increases the apoptotic caspase activity, but also diminishes the protective autophagy normally triggered by the treatment with Salinomycin alone. Thus, this study underlines the potential use of Salinomycin as a cancer treatment, possibly in combination with short-term starvation or starvation-mimicking pharmacologic intervention. Impact Journals LLC 2015-03-12 /pmc/articles/PMC4496345/ /pubmed/25912307 Text en Copyright: © 2015 Jangamreddy 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
Jangamreddy, Jaganmohan R.
Jain, Mayur V.
Hallbeck, Anna-Lotta
Roberg, Karin
Lotfi, Kourosh
Łos, Marek J.
Glucose starvation-mediated inhibition of salinomycin induced autophagy amplifies cancer cell specific cell death
title Glucose starvation-mediated inhibition of salinomycin induced autophagy amplifies cancer cell specific cell death
title_full Glucose starvation-mediated inhibition of salinomycin induced autophagy amplifies cancer cell specific cell death
title_fullStr Glucose starvation-mediated inhibition of salinomycin induced autophagy amplifies cancer cell specific cell death
title_full_unstemmed Glucose starvation-mediated inhibition of salinomycin induced autophagy amplifies cancer cell specific cell death
title_short Glucose starvation-mediated inhibition of salinomycin induced autophagy amplifies cancer cell specific cell death
title_sort glucose starvation-mediated inhibition of salinomycin induced autophagy amplifies cancer cell specific cell death
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4496345/
https://www.ncbi.nlm.nih.gov/pubmed/25912307
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