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Ex Vivo Cardiotoxicity of Antineoplastic Casiopeinas Is Mediated through Energetic Dysfunction and Triggered Mitochondrial-Dependent Apoptosis

Casiopeinas are a group of copper-based antineoplastic molecules designed as a less toxic and more therapeutic alternative to cisplatin or Doxorubicin; however, there is scarce evidence about their toxic effects on the whole heart and cardiomyocytes. Given this, rat hearts were perfused with Casiope...

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Autores principales: Silva-Platas, Christian, Villegas, César A., Oropeza-Almazán, Yuriana, Carrancá, Mariana, Torres-Quintanilla, Alejandro, Lozano, Omar, Valero-Elizondo, Javier, Castillo, Elena C., Bernal-Ramírez, Judith, Fernández-Sada, Evaristo, Vega, Luis F., Treviño-Saldaña, Niria, Chapoy-Villanueva, Héctor, Ruiz-Azuara, Lena, Hernández-Brenes, Carmen, Elizondo-Montemayor, Leticia, Guerrero-Beltrán, Carlos E., Carvajal, Karla, Bravo-Gómez, María E., García-Rivas, Gerardo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5889877/
https://www.ncbi.nlm.nih.gov/pubmed/29765507
http://dx.doi.org/10.1155/2018/8949450
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author Silva-Platas, Christian
Villegas, César A.
Oropeza-Almazán, Yuriana
Carrancá, Mariana
Torres-Quintanilla, Alejandro
Lozano, Omar
Valero-Elizondo, Javier
Castillo, Elena C.
Bernal-Ramírez, Judith
Fernández-Sada, Evaristo
Vega, Luis F.
Treviño-Saldaña, Niria
Chapoy-Villanueva, Héctor
Ruiz-Azuara, Lena
Hernández-Brenes, Carmen
Elizondo-Montemayor, Leticia
Guerrero-Beltrán, Carlos E.
Carvajal, Karla
Bravo-Gómez, María E.
García-Rivas, Gerardo
author_facet Silva-Platas, Christian
Villegas, César A.
Oropeza-Almazán, Yuriana
Carrancá, Mariana
Torres-Quintanilla, Alejandro
Lozano, Omar
Valero-Elizondo, Javier
Castillo, Elena C.
Bernal-Ramírez, Judith
Fernández-Sada, Evaristo
Vega, Luis F.
Treviño-Saldaña, Niria
Chapoy-Villanueva, Héctor
Ruiz-Azuara, Lena
Hernández-Brenes, Carmen
Elizondo-Montemayor, Leticia
Guerrero-Beltrán, Carlos E.
Carvajal, Karla
Bravo-Gómez, María E.
García-Rivas, Gerardo
author_sort Silva-Platas, Christian
collection PubMed
description Casiopeinas are a group of copper-based antineoplastic molecules designed as a less toxic and more therapeutic alternative to cisplatin or Doxorubicin; however, there is scarce evidence about their toxic effects on the whole heart and cardiomyocytes. Given this, rat hearts were perfused with Casiopeinas or Doxorubicin and the effects on mechanical performance, energetics, and mitochondrial function were measured. As well, the effects of Casiopeinas-triggered cell death were explored in isolated cardiomyocytes. Casiopeinas III-Ea, II-gly, and III-ia induced a progressive and sustained inhibition of heart contractile function that was dose- and time-dependent with an IC(50) of 1.3 ± 0.2, 5.5 ± 0.5, and 10 ± 0.7 μM, correspondingly. Myocardial oxygen consumption was not modified at their respective IC(50), although ATP levels were significantly reduced, indicating energy impairment. Isolated mitochondria from Casiopeinas-treated hearts showed a significant loss of membrane potential and reduction of mitochondrial Ca(2+) retention capacity. Interestingly, Cyclosporine A inhibited Casiopeinas-induced mitochondrial Ca(2+) release, which suggests the involvement of the mitochondrial permeability transition pore opening. In addition, Casiopeinas reduced the viability of cardiomyocytes and stimulated the activation of caspases 3, 7, and 9, demonstrating a cell death mitochondrial-dependent mechanism. Finally, the early perfusion of Cyclosporine A in isolated hearts decreased Casiopeinas-induced dysfunction with reduction of their toxic effect. Our results suggest that heart cardiotoxicity of Casiopeinas is similar to that of Doxorubicin, involving heart mitochondrial dysfunction, loss of membrane potential, changes in energetic metabolites, and apoptosis triggered by mitochondrial permeability.
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spelling pubmed-58898772018-05-14 Ex Vivo Cardiotoxicity of Antineoplastic Casiopeinas Is Mediated through Energetic Dysfunction and Triggered Mitochondrial-Dependent Apoptosis Silva-Platas, Christian Villegas, César A. Oropeza-Almazán, Yuriana Carrancá, Mariana Torres-Quintanilla, Alejandro Lozano, Omar Valero-Elizondo, Javier Castillo, Elena C. Bernal-Ramírez, Judith Fernández-Sada, Evaristo Vega, Luis F. Treviño-Saldaña, Niria Chapoy-Villanueva, Héctor Ruiz-Azuara, Lena Hernández-Brenes, Carmen Elizondo-Montemayor, Leticia Guerrero-Beltrán, Carlos E. Carvajal, Karla Bravo-Gómez, María E. García-Rivas, Gerardo Oxid Med Cell Longev Research Article Casiopeinas are a group of copper-based antineoplastic molecules designed as a less toxic and more therapeutic alternative to cisplatin or Doxorubicin; however, there is scarce evidence about their toxic effects on the whole heart and cardiomyocytes. Given this, rat hearts were perfused with Casiopeinas or Doxorubicin and the effects on mechanical performance, energetics, and mitochondrial function were measured. As well, the effects of Casiopeinas-triggered cell death were explored in isolated cardiomyocytes. Casiopeinas III-Ea, II-gly, and III-ia induced a progressive and sustained inhibition of heart contractile function that was dose- and time-dependent with an IC(50) of 1.3 ± 0.2, 5.5 ± 0.5, and 10 ± 0.7 μM, correspondingly. Myocardial oxygen consumption was not modified at their respective IC(50), although ATP levels were significantly reduced, indicating energy impairment. Isolated mitochondria from Casiopeinas-treated hearts showed a significant loss of membrane potential and reduction of mitochondrial Ca(2+) retention capacity. Interestingly, Cyclosporine A inhibited Casiopeinas-induced mitochondrial Ca(2+) release, which suggests the involvement of the mitochondrial permeability transition pore opening. In addition, Casiopeinas reduced the viability of cardiomyocytes and stimulated the activation of caspases 3, 7, and 9, demonstrating a cell death mitochondrial-dependent mechanism. Finally, the early perfusion of Cyclosporine A in isolated hearts decreased Casiopeinas-induced dysfunction with reduction of their toxic effect. Our results suggest that heart cardiotoxicity of Casiopeinas is similar to that of Doxorubicin, involving heart mitochondrial dysfunction, loss of membrane potential, changes in energetic metabolites, and apoptosis triggered by mitochondrial permeability. Hindawi 2018-03-25 /pmc/articles/PMC5889877/ /pubmed/29765507 http://dx.doi.org/10.1155/2018/8949450 Text en Copyright © 2018 Christian Silva-Platas et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Silva-Platas, Christian
Villegas, César A.
Oropeza-Almazán, Yuriana
Carrancá, Mariana
Torres-Quintanilla, Alejandro
Lozano, Omar
Valero-Elizondo, Javier
Castillo, Elena C.
Bernal-Ramírez, Judith
Fernández-Sada, Evaristo
Vega, Luis F.
Treviño-Saldaña, Niria
Chapoy-Villanueva, Héctor
Ruiz-Azuara, Lena
Hernández-Brenes, Carmen
Elizondo-Montemayor, Leticia
Guerrero-Beltrán, Carlos E.
Carvajal, Karla
Bravo-Gómez, María E.
García-Rivas, Gerardo
Ex Vivo Cardiotoxicity of Antineoplastic Casiopeinas Is Mediated through Energetic Dysfunction and Triggered Mitochondrial-Dependent Apoptosis
title Ex Vivo Cardiotoxicity of Antineoplastic Casiopeinas Is Mediated through Energetic Dysfunction and Triggered Mitochondrial-Dependent Apoptosis
title_full Ex Vivo Cardiotoxicity of Antineoplastic Casiopeinas Is Mediated through Energetic Dysfunction and Triggered Mitochondrial-Dependent Apoptosis
title_fullStr Ex Vivo Cardiotoxicity of Antineoplastic Casiopeinas Is Mediated through Energetic Dysfunction and Triggered Mitochondrial-Dependent Apoptosis
title_full_unstemmed Ex Vivo Cardiotoxicity of Antineoplastic Casiopeinas Is Mediated through Energetic Dysfunction and Triggered Mitochondrial-Dependent Apoptosis
title_short Ex Vivo Cardiotoxicity of Antineoplastic Casiopeinas Is Mediated through Energetic Dysfunction and Triggered Mitochondrial-Dependent Apoptosis
title_sort ex vivo cardiotoxicity of antineoplastic casiopeinas is mediated through energetic dysfunction and triggered mitochondrial-dependent apoptosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5889877/
https://www.ncbi.nlm.nih.gov/pubmed/29765507
http://dx.doi.org/10.1155/2018/8949450
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