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Irvalec Inserts into the Plasma Membrane Causing Rapid Loss of Integrity and Necrotic Cell Death in Tumor Cells

Irvalec is a marine-derived antitumor agent currently undergoing phase II clinical trials. In vitro, Irvalec induces a rapid loss of membrane integrity in tumor cells, accompanied of a significant Ca(2+) influx, perturbations of membrane conductivity, severe swelling and the formation of giant membr...

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Autores principales: Molina-Guijarro, José M., Macías, Álvaro, García, Carolina, Muñoz, Eva, García-Fernández, Luis F., David, Miren, Núñez, Lucía, Martínez-Leal, Juan F., Moneo, Victoria, Cuevas, Carmen, Lillo, M. Pilar, Villalobos Jorge, Carlos, Valenzuela, Carmen, Galmarini, Carlos M.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3083409/
https://www.ncbi.nlm.nih.gov/pubmed/21556352
http://dx.doi.org/10.1371/journal.pone.0019042
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author Molina-Guijarro, José M.
Macías, Álvaro
García, Carolina
Muñoz, Eva
García-Fernández, Luis F.
David, Miren
Núñez, Lucía
Martínez-Leal, Juan F.
Moneo, Victoria
Cuevas, Carmen
Lillo, M. Pilar
Villalobos Jorge, Carlos
Valenzuela, Carmen
Galmarini, Carlos M.
author_facet Molina-Guijarro, José M.
Macías, Álvaro
García, Carolina
Muñoz, Eva
García-Fernández, Luis F.
David, Miren
Núñez, Lucía
Martínez-Leal, Juan F.
Moneo, Victoria
Cuevas, Carmen
Lillo, M. Pilar
Villalobos Jorge, Carlos
Valenzuela, Carmen
Galmarini, Carlos M.
author_sort Molina-Guijarro, José M.
collection PubMed
description Irvalec is a marine-derived antitumor agent currently undergoing phase II clinical trials. In vitro, Irvalec induces a rapid loss of membrane integrity in tumor cells, accompanied of a significant Ca(2+) influx, perturbations of membrane conductivity, severe swelling and the formation of giant membranous vesicles. All these effects are not observed in Irvalec-resistant cells, or are significantly delayed by pretreating the cells with Zn(2+). Using fluorescent derivatives of Irvalec it was demonstrated that the compound rapidly interacts with the plasma membrane of tumor cells promoting lipid bilayer restructuration. Also, FRET experiments demonstrated that Irvalec molecules localize in the cell membrane close enough to each other as to suggest that the compound could self-organize, forming supramolecular structures that likely trigger cell death by necrosis through the disruption of membrane integrity.
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spelling pubmed-30834092011-05-09 Irvalec Inserts into the Plasma Membrane Causing Rapid Loss of Integrity and Necrotic Cell Death in Tumor Cells Molina-Guijarro, José M. Macías, Álvaro García, Carolina Muñoz, Eva García-Fernández, Luis F. David, Miren Núñez, Lucía Martínez-Leal, Juan F. Moneo, Victoria Cuevas, Carmen Lillo, M. Pilar Villalobos Jorge, Carlos Valenzuela, Carmen Galmarini, Carlos M. PLoS One Research Article Irvalec is a marine-derived antitumor agent currently undergoing phase II clinical trials. In vitro, Irvalec induces a rapid loss of membrane integrity in tumor cells, accompanied of a significant Ca(2+) influx, perturbations of membrane conductivity, severe swelling and the formation of giant membranous vesicles. All these effects are not observed in Irvalec-resistant cells, or are significantly delayed by pretreating the cells with Zn(2+). Using fluorescent derivatives of Irvalec it was demonstrated that the compound rapidly interacts with the plasma membrane of tumor cells promoting lipid bilayer restructuration. Also, FRET experiments demonstrated that Irvalec molecules localize in the cell membrane close enough to each other as to suggest that the compound could self-organize, forming supramolecular structures that likely trigger cell death by necrosis through the disruption of membrane integrity. Public Library of Science 2011-04-27 /pmc/articles/PMC3083409/ /pubmed/21556352 http://dx.doi.org/10.1371/journal.pone.0019042 Text en Molina-Guijarro et al. http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Molina-Guijarro, José M.
Macías, Álvaro
García, Carolina
Muñoz, Eva
García-Fernández, Luis F.
David, Miren
Núñez, Lucía
Martínez-Leal, Juan F.
Moneo, Victoria
Cuevas, Carmen
Lillo, M. Pilar
Villalobos Jorge, Carlos
Valenzuela, Carmen
Galmarini, Carlos M.
Irvalec Inserts into the Plasma Membrane Causing Rapid Loss of Integrity and Necrotic Cell Death in Tumor Cells
title Irvalec Inserts into the Plasma Membrane Causing Rapid Loss of Integrity and Necrotic Cell Death in Tumor Cells
title_full Irvalec Inserts into the Plasma Membrane Causing Rapid Loss of Integrity and Necrotic Cell Death in Tumor Cells
title_fullStr Irvalec Inserts into the Plasma Membrane Causing Rapid Loss of Integrity and Necrotic Cell Death in Tumor Cells
title_full_unstemmed Irvalec Inserts into the Plasma Membrane Causing Rapid Loss of Integrity and Necrotic Cell Death in Tumor Cells
title_short Irvalec Inserts into the Plasma Membrane Causing Rapid Loss of Integrity and Necrotic Cell Death in Tumor Cells
title_sort irvalec inserts into the plasma membrane causing rapid loss of integrity and necrotic cell death in tumor cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3083409/
https://www.ncbi.nlm.nih.gov/pubmed/21556352
http://dx.doi.org/10.1371/journal.pone.0019042
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