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Cardiac Glycoside Glucoevatromonoside Induces Cancer Type-Specific Cell Death
Cardiac glycosides (CGs) are natural compounds used traditionally to treat congestive heart diseases. Recent investigations repositioned CGs as potential anticancer agents. To discover novel cytotoxic CG scaffolds, we selected the cardenolide glucoevatromonoside (GEV) out of 46 CGs for its low nanom...
Autores principales: | , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5838923/ https://www.ncbi.nlm.nih.gov/pubmed/29545747 http://dx.doi.org/10.3389/fphar.2018.00070 |
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author | Schneider, Naira F. Z. Cerella, Claudia Lee, Jin-Young Mazumder, Aloran Kim, Kyung Rok de Carvalho, Annelise Munkert, Jennifer Pádua, Rodrigo M. Kreis, Wolfgang Kim, Kyu-Won Christov, Christo Dicato, Mario Kim, Hyun-Jung Han, Byung Woo Braga, Fernão C. Simões, Cláudia M. O. Diederich, Marc |
author_facet | Schneider, Naira F. Z. Cerella, Claudia Lee, Jin-Young Mazumder, Aloran Kim, Kyung Rok de Carvalho, Annelise Munkert, Jennifer Pádua, Rodrigo M. Kreis, Wolfgang Kim, Kyu-Won Christov, Christo Dicato, Mario Kim, Hyun-Jung Han, Byung Woo Braga, Fernão C. Simões, Cláudia M. O. Diederich, Marc |
author_sort | Schneider, Naira F. Z. |
collection | PubMed |
description | Cardiac glycosides (CGs) are natural compounds used traditionally to treat congestive heart diseases. Recent investigations repositioned CGs as potential anticancer agents. To discover novel cytotoxic CG scaffolds, we selected the cardenolide glucoevatromonoside (GEV) out of 46 CGs for its low nanomolar anti-lung cancer activity. GEV presented reduced toxicity toward non-cancerous cell types (lung MRC-5 and PBMC) and high-affinity binding to the Na(+)/K(+)-ATPase α subunit, assessed by computational docking. GEV-induced cell death was caspase-independent, as investigated by a multiparametric approach, and culminates in severe morphological alterations in A549 cells, monitored by transmission electron microscopy, live cell imaging and flow cytometry. This non-canonical cell death was not preceded or accompanied by exacerbation of autophagy. In the presence of GEV, markers of autophagic flux (e.g. LC3I-II conversion) were impacted, even in presence of bafilomycin A1. Cell death induction remained unaffected by calpain, cathepsin, parthanatos, or necroptosis inhibitors. Interestingly, GEV triggered caspase-dependent apoptosis in U937 acute myeloid leukemia cells, witnessing cancer-type specific cell death induction. Differential cell cycle modulation by this CG led to a G2/M arrest, cyclin B1 and p53 downregulation in A549, but not in U937 cells. We further extended the anti-cancer potential of GEV to 3D cell culture using clonogenic and spheroid formation assays and validated our findings in vivo by zebrafish xenografts. Altogether, GEV shows an interesting anticancer profile with the ability to exert cytotoxic effects via induction of different cell death modalities. |
format | Online Article Text |
id | pubmed-5838923 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-58389232018-03-15 Cardiac Glycoside Glucoevatromonoside Induces Cancer Type-Specific Cell Death Schneider, Naira F. Z. Cerella, Claudia Lee, Jin-Young Mazumder, Aloran Kim, Kyung Rok de Carvalho, Annelise Munkert, Jennifer Pádua, Rodrigo M. Kreis, Wolfgang Kim, Kyu-Won Christov, Christo Dicato, Mario Kim, Hyun-Jung Han, Byung Woo Braga, Fernão C. Simões, Cláudia M. O. Diederich, Marc Front Pharmacol Pharmacology Cardiac glycosides (CGs) are natural compounds used traditionally to treat congestive heart diseases. Recent investigations repositioned CGs as potential anticancer agents. To discover novel cytotoxic CG scaffolds, we selected the cardenolide glucoevatromonoside (GEV) out of 46 CGs for its low nanomolar anti-lung cancer activity. GEV presented reduced toxicity toward non-cancerous cell types (lung MRC-5 and PBMC) and high-affinity binding to the Na(+)/K(+)-ATPase α subunit, assessed by computational docking. GEV-induced cell death was caspase-independent, as investigated by a multiparametric approach, and culminates in severe morphological alterations in A549 cells, monitored by transmission electron microscopy, live cell imaging and flow cytometry. This non-canonical cell death was not preceded or accompanied by exacerbation of autophagy. In the presence of GEV, markers of autophagic flux (e.g. LC3I-II conversion) were impacted, even in presence of bafilomycin A1. Cell death induction remained unaffected by calpain, cathepsin, parthanatos, or necroptosis inhibitors. Interestingly, GEV triggered caspase-dependent apoptosis in U937 acute myeloid leukemia cells, witnessing cancer-type specific cell death induction. Differential cell cycle modulation by this CG led to a G2/M arrest, cyclin B1 and p53 downregulation in A549, but not in U937 cells. We further extended the anti-cancer potential of GEV to 3D cell culture using clonogenic and spheroid formation assays and validated our findings in vivo by zebrafish xenografts. Altogether, GEV shows an interesting anticancer profile with the ability to exert cytotoxic effects via induction of different cell death modalities. Frontiers Media S.A. 2018-03-01 /pmc/articles/PMC5838923/ /pubmed/29545747 http://dx.doi.org/10.3389/fphar.2018.00070 Text en Copyright © 2018 Schneider, Cerella, Lee, Mazumder, Kim, de Carvalho, Munkert, Pádua, Kreis, Kim, Christov, Dicato, Kim, Han, Braga, Simões and Diederich. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Pharmacology Schneider, Naira F. Z. Cerella, Claudia Lee, Jin-Young Mazumder, Aloran Kim, Kyung Rok de Carvalho, Annelise Munkert, Jennifer Pádua, Rodrigo M. Kreis, Wolfgang Kim, Kyu-Won Christov, Christo Dicato, Mario Kim, Hyun-Jung Han, Byung Woo Braga, Fernão C. Simões, Cláudia M. O. Diederich, Marc Cardiac Glycoside Glucoevatromonoside Induces Cancer Type-Specific Cell Death |
title | Cardiac Glycoside Glucoevatromonoside Induces Cancer Type-Specific Cell Death |
title_full | Cardiac Glycoside Glucoevatromonoside Induces Cancer Type-Specific Cell Death |
title_fullStr | Cardiac Glycoside Glucoevatromonoside Induces Cancer Type-Specific Cell Death |
title_full_unstemmed | Cardiac Glycoside Glucoevatromonoside Induces Cancer Type-Specific Cell Death |
title_short | Cardiac Glycoside Glucoevatromonoside Induces Cancer Type-Specific Cell Death |
title_sort | cardiac glycoside glucoevatromonoside induces cancer type-specific cell death |
topic | Pharmacology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5838923/ https://www.ncbi.nlm.nih.gov/pubmed/29545747 http://dx.doi.org/10.3389/fphar.2018.00070 |
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