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Triggering autophagic cell death with a di-manganese(II) developmental therapeutic

There is an unmet need for novel metal-based chemotherapeutics with alternative modes of action compared to clinical agents such as cisplatin and metallo-bleomycin. Recent attention in this field has focused on designing intracellular ROS-mediators as powerful cytotoxins of human cancers and identif...

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Autores principales: Slator, Creina, Molphy, Zara, McKee, Vickie, Kellett, Andrew
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5328722/
https://www.ncbi.nlm.nih.gov/pubmed/28236767
http://dx.doi.org/10.1016/j.redox.2017.01.024
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author Slator, Creina
Molphy, Zara
McKee, Vickie
Kellett, Andrew
author_facet Slator, Creina
Molphy, Zara
McKee, Vickie
Kellett, Andrew
author_sort Slator, Creina
collection PubMed
description There is an unmet need for novel metal-based chemotherapeutics with alternative modes of action compared to clinical agents such as cisplatin and metallo-bleomycin. Recent attention in this field has focused on designing intracellular ROS-mediators as powerful cytotoxins of human cancers and identifying potentially unique toxic mechanisms underpinning their utility. Herein, we report the developmental di-manganese(II) therapeutic [Mn(2)(μ-oda)(phen)(4)(H(2)O)(2)][Mn(2)(μ-oda)(phen)(4)(oda)(2)]·4H(2)O (Mn-Oda) induces autophagy-promoted apoptosis in human ovarian cancer cells (SKOV3). The complex was initially identified to intercalate DNA by topoisomerase I unwinding and circular dichroism spectroscopy. Intracellular DNA damage, detected by γH2AX and the COMET assay, however, is not linked to direct Mn-Oda free radical generation, but is instead mediated through the promotion of intracellular reactive oxygen species (ROS) leading to autophagic vacuole formation and downstream nuclear degradation. To elucidate the cytotoxic profile of Mn-Oda, a wide range of biomarkers specific to apoptosis and autophagy including caspase release, mitochondrial membrane integrity, fluorogenic probe localisation, and cell cycle analysis were employed. Through these techniques, the activity of Mn-Oda was compared directly to i.) the pro-apoptotic clinical anticancer drug doxorubicin, ii.) the multimodal histone deacetylase inhibitor suberoyanilide hydroxamic acid, and iii.) the autophagy inducer rapamycin. In conjunction with ROS-specific trapping agents and established inhibitors of autophagy, we have identified autophagy-induction linked to mitochondrial superoxide production, with confocal image analysis of SKOV3 cells further supporting autophagosome formation.
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spelling pubmed-53287222017-03-08 Triggering autophagic cell death with a di-manganese(II) developmental therapeutic Slator, Creina Molphy, Zara McKee, Vickie Kellett, Andrew Redox Biol Research Paper There is an unmet need for novel metal-based chemotherapeutics with alternative modes of action compared to clinical agents such as cisplatin and metallo-bleomycin. Recent attention in this field has focused on designing intracellular ROS-mediators as powerful cytotoxins of human cancers and identifying potentially unique toxic mechanisms underpinning their utility. Herein, we report the developmental di-manganese(II) therapeutic [Mn(2)(μ-oda)(phen)(4)(H(2)O)(2)][Mn(2)(μ-oda)(phen)(4)(oda)(2)]·4H(2)O (Mn-Oda) induces autophagy-promoted apoptosis in human ovarian cancer cells (SKOV3). The complex was initially identified to intercalate DNA by topoisomerase I unwinding and circular dichroism spectroscopy. Intracellular DNA damage, detected by γH2AX and the COMET assay, however, is not linked to direct Mn-Oda free radical generation, but is instead mediated through the promotion of intracellular reactive oxygen species (ROS) leading to autophagic vacuole formation and downstream nuclear degradation. To elucidate the cytotoxic profile of Mn-Oda, a wide range of biomarkers specific to apoptosis and autophagy including caspase release, mitochondrial membrane integrity, fluorogenic probe localisation, and cell cycle analysis were employed. Through these techniques, the activity of Mn-Oda was compared directly to i.) the pro-apoptotic clinical anticancer drug doxorubicin, ii.) the multimodal histone deacetylase inhibitor suberoyanilide hydroxamic acid, and iii.) the autophagy inducer rapamycin. In conjunction with ROS-specific trapping agents and established inhibitors of autophagy, we have identified autophagy-induction linked to mitochondrial superoxide production, with confocal image analysis of SKOV3 cells further supporting autophagosome formation. Elsevier 2017-02-04 /pmc/articles/PMC5328722/ /pubmed/28236767 http://dx.doi.org/10.1016/j.redox.2017.01.024 Text en © 2017 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Slator, Creina
Molphy, Zara
McKee, Vickie
Kellett, Andrew
Triggering autophagic cell death with a di-manganese(II) developmental therapeutic
title Triggering autophagic cell death with a di-manganese(II) developmental therapeutic
title_full Triggering autophagic cell death with a di-manganese(II) developmental therapeutic
title_fullStr Triggering autophagic cell death with a di-manganese(II) developmental therapeutic
title_full_unstemmed Triggering autophagic cell death with a di-manganese(II) developmental therapeutic
title_short Triggering autophagic cell death with a di-manganese(II) developmental therapeutic
title_sort triggering autophagic cell death with a di-manganese(ii) developmental therapeutic
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5328722/
https://www.ncbi.nlm.nih.gov/pubmed/28236767
http://dx.doi.org/10.1016/j.redox.2017.01.024
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