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Iron and copper complexes with antioxidant activity as inhibitors of the metastatic potential of glioma cells

Gliomas are the most common type of primary brain tumors, presenting high mortality and recurrence rates that highlight the need for the development of more efficient therapies. In that context, we investigated iron(iii) (FeL) and copper(ii) (CuL) complexes containing the tetradentate ligand 2-{[(3-...

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Autores principales: Guerreiro, Joana F., Gomes, Marco Antônio G. B., Pagliari, Francesca, Jansen, Jeannette, Marafioti, Maria G., Nistico, Clelia, Hanley, Rachel, Costa, Rafael O., Ferreira, Sarah S., Mendes, Filipa, Fernandes, Christiane, Horn, Adolfo, Tirinato, Luca, Seco, Joao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9051468/
https://www.ncbi.nlm.nih.gov/pubmed/35492123
http://dx.doi.org/10.1039/d0ra00166j
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author Guerreiro, Joana F.
Gomes, Marco Antônio G. B.
Pagliari, Francesca
Jansen, Jeannette
Marafioti, Maria G.
Nistico, Clelia
Hanley, Rachel
Costa, Rafael O.
Ferreira, Sarah S.
Mendes, Filipa
Fernandes, Christiane
Horn, Adolfo
Tirinato, Luca
Seco, Joao
author_facet Guerreiro, Joana F.
Gomes, Marco Antônio G. B.
Pagliari, Francesca
Jansen, Jeannette
Marafioti, Maria G.
Nistico, Clelia
Hanley, Rachel
Costa, Rafael O.
Ferreira, Sarah S.
Mendes, Filipa
Fernandes, Christiane
Horn, Adolfo
Tirinato, Luca
Seco, Joao
author_sort Guerreiro, Joana F.
collection PubMed
description Gliomas are the most common type of primary brain tumors, presenting high mortality and recurrence rates that highlight the need for the development of more efficient therapies. In that context, we investigated iron(iii) (FeL) and copper(ii) (CuL) complexes containing the tetradentate ligand 2-{[(3-chloro-2-hydroxy-propyl)-pyridin-2-ylmethyl-amino]-methyl}-phenol (L) as potential antimetastatic compounds in glioma cells. These complexes were designed to act as mimetics of antioxidant metalloenzymes (catalases and superoxide dismutase) and thus interfere with the production of reactive oxygen species (ROS), important signaling molecules that have been linked to the induction of Epithelial–Mesenchymal Transition (EMT) in cancer cells, a process associated with cancer invasion and aggressiveness. The results obtained have revealed that, in vitro, both compounds act as superoxide dismutase or catalase mimetics, and this translated in glioma cells into a decrease in ROS levels in FeL-treated cells. In addition, both complexes were found to inhibit the migration of monolayer-grown H4 cells and lead to decreased expression of EMT markers. More importantly, this behavior was recapitulated in 3D spheroids models, where CuL in particular was found to completely inhibit the invasion ability of glioma cells, with or without cellular irradiation with X-rays, which is suggestive of these compounds' potential to be used in combination with radiotherapy. Overall, the results herein obtained describe the novel use of these complexes as agents that are able to interfere with regulation of EMT and the invasive behavior of glioma cells, an application that deserves to be further explored.
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spelling pubmed-90514682022-04-29 Iron and copper complexes with antioxidant activity as inhibitors of the metastatic potential of glioma cells Guerreiro, Joana F. Gomes, Marco Antônio G. B. Pagliari, Francesca Jansen, Jeannette Marafioti, Maria G. Nistico, Clelia Hanley, Rachel Costa, Rafael O. Ferreira, Sarah S. Mendes, Filipa Fernandes, Christiane Horn, Adolfo Tirinato, Luca Seco, Joao RSC Adv Chemistry Gliomas are the most common type of primary brain tumors, presenting high mortality and recurrence rates that highlight the need for the development of more efficient therapies. In that context, we investigated iron(iii) (FeL) and copper(ii) (CuL) complexes containing the tetradentate ligand 2-{[(3-chloro-2-hydroxy-propyl)-pyridin-2-ylmethyl-amino]-methyl}-phenol (L) as potential antimetastatic compounds in glioma cells. These complexes were designed to act as mimetics of antioxidant metalloenzymes (catalases and superoxide dismutase) and thus interfere with the production of reactive oxygen species (ROS), important signaling molecules that have been linked to the induction of Epithelial–Mesenchymal Transition (EMT) in cancer cells, a process associated with cancer invasion and aggressiveness. The results obtained have revealed that, in vitro, both compounds act as superoxide dismutase or catalase mimetics, and this translated in glioma cells into a decrease in ROS levels in FeL-treated cells. In addition, both complexes were found to inhibit the migration of monolayer-grown H4 cells and lead to decreased expression of EMT markers. More importantly, this behavior was recapitulated in 3D spheroids models, where CuL in particular was found to completely inhibit the invasion ability of glioma cells, with or without cellular irradiation with X-rays, which is suggestive of these compounds' potential to be used in combination with radiotherapy. Overall, the results herein obtained describe the novel use of these complexes as agents that are able to interfere with regulation of EMT and the invasive behavior of glioma cells, an application that deserves to be further explored. The Royal Society of Chemistry 2020-03-30 /pmc/articles/PMC9051468/ /pubmed/35492123 http://dx.doi.org/10.1039/d0ra00166j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Guerreiro, Joana F.
Gomes, Marco Antônio G. B.
Pagliari, Francesca
Jansen, Jeannette
Marafioti, Maria G.
Nistico, Clelia
Hanley, Rachel
Costa, Rafael O.
Ferreira, Sarah S.
Mendes, Filipa
Fernandes, Christiane
Horn, Adolfo
Tirinato, Luca
Seco, Joao
Iron and copper complexes with antioxidant activity as inhibitors of the metastatic potential of glioma cells
title Iron and copper complexes with antioxidant activity as inhibitors of the metastatic potential of glioma cells
title_full Iron and copper complexes with antioxidant activity as inhibitors of the metastatic potential of glioma cells
title_fullStr Iron and copper complexes with antioxidant activity as inhibitors of the metastatic potential of glioma cells
title_full_unstemmed Iron and copper complexes with antioxidant activity as inhibitors of the metastatic potential of glioma cells
title_short Iron and copper complexes with antioxidant activity as inhibitors of the metastatic potential of glioma cells
title_sort iron and copper complexes with antioxidant activity as inhibitors of the metastatic potential of glioma cells
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9051468/
https://www.ncbi.nlm.nih.gov/pubmed/35492123
http://dx.doi.org/10.1039/d0ra00166j
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