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The Natural Fungal Metabolite Beauvericin Exerts Anticancer Activity In Vivo: A Pre-Clinical Pilot Study

Recently, in vitro anti-cancer properties of beauvericin, a fungal metabolite were shown in various cancer cell lines. In this study, we assessed the specificity of this effect by comparing beauvericin cytotoxicity in malignant versus non-malignant cells. Moreover, we tested in vivo anticancer effec...

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Autores principales: Heilos, Daniela, Rodríguez-Carrasco, Yelko, Englinger, Bernhard, Timelthaler, Gerald, van Schoonhoven, Sushilla, Sulyok, Michael, Boecker, Simon, Süssmuth, Roderich D., Heffeter, Petra, Lemmens-Gruber, Rosa, Dornetshuber-Fleiss, Rita, Berger, Walter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5618191/
https://www.ncbi.nlm.nih.gov/pubmed/28837057
http://dx.doi.org/10.3390/toxins9090258
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author Heilos, Daniela
Rodríguez-Carrasco, Yelko
Englinger, Bernhard
Timelthaler, Gerald
van Schoonhoven, Sushilla
Sulyok, Michael
Boecker, Simon
Süssmuth, Roderich D.
Heffeter, Petra
Lemmens-Gruber, Rosa
Dornetshuber-Fleiss, Rita
Berger, Walter
author_facet Heilos, Daniela
Rodríguez-Carrasco, Yelko
Englinger, Bernhard
Timelthaler, Gerald
van Schoonhoven, Sushilla
Sulyok, Michael
Boecker, Simon
Süssmuth, Roderich D.
Heffeter, Petra
Lemmens-Gruber, Rosa
Dornetshuber-Fleiss, Rita
Berger, Walter
author_sort Heilos, Daniela
collection PubMed
description Recently, in vitro anti-cancer properties of beauvericin, a fungal metabolite were shown in various cancer cell lines. In this study, we assessed the specificity of this effect by comparing beauvericin cytotoxicity in malignant versus non-malignant cells. Moreover, we tested in vivo anticancer effects of beauvericin by treating BALB/c and CB-17/SCID mice bearing murine CT-26 or human KB-3-1-grafted tumors, respectively. Tumor size and weight were measured and histological sections were evaluated by Ki-67 and H/E staining as well as TdT-mediated-dUTP-nick-end (TUNEL) labeling. Beauvericin levels were determined in various tissues and body fluids by LC-MS/MS. In addition to a more pronounced activity against malignant cells, we detected decreased tumor volumes and weights in beauvericin-treated mice compared to controls in both the allo- and the xenograft model without any adverse effects. No significant differences were detected concerning percentages of proliferating and mitotic cells in tumor sections from treated and untreated mice. However, a significant increase of necrotic areas within whole tumor sections of beauvericin-treated mice was found in both models corresponding to an enhanced number of TUNEL-positive, i.e., apoptotic, cells. Furthermore, moderate beauvericin accumulation was detected in tumor tissues. In conclusion, we suggest beauvericin as a promising novel natural compound for anticancer therapy.
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spelling pubmed-56181912017-09-29 The Natural Fungal Metabolite Beauvericin Exerts Anticancer Activity In Vivo: A Pre-Clinical Pilot Study Heilos, Daniela Rodríguez-Carrasco, Yelko Englinger, Bernhard Timelthaler, Gerald van Schoonhoven, Sushilla Sulyok, Michael Boecker, Simon Süssmuth, Roderich D. Heffeter, Petra Lemmens-Gruber, Rosa Dornetshuber-Fleiss, Rita Berger, Walter Toxins (Basel) Communication Recently, in vitro anti-cancer properties of beauvericin, a fungal metabolite were shown in various cancer cell lines. In this study, we assessed the specificity of this effect by comparing beauvericin cytotoxicity in malignant versus non-malignant cells. Moreover, we tested in vivo anticancer effects of beauvericin by treating BALB/c and CB-17/SCID mice bearing murine CT-26 or human KB-3-1-grafted tumors, respectively. Tumor size and weight were measured and histological sections were evaluated by Ki-67 and H/E staining as well as TdT-mediated-dUTP-nick-end (TUNEL) labeling. Beauvericin levels were determined in various tissues and body fluids by LC-MS/MS. In addition to a more pronounced activity against malignant cells, we detected decreased tumor volumes and weights in beauvericin-treated mice compared to controls in both the allo- and the xenograft model without any adverse effects. No significant differences were detected concerning percentages of proliferating and mitotic cells in tumor sections from treated and untreated mice. However, a significant increase of necrotic areas within whole tumor sections of beauvericin-treated mice was found in both models corresponding to an enhanced number of TUNEL-positive, i.e., apoptotic, cells. Furthermore, moderate beauvericin accumulation was detected in tumor tissues. In conclusion, we suggest beauvericin as a promising novel natural compound for anticancer therapy. MDPI 2017-08-24 /pmc/articles/PMC5618191/ /pubmed/28837057 http://dx.doi.org/10.3390/toxins9090258 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Heilos, Daniela
Rodríguez-Carrasco, Yelko
Englinger, Bernhard
Timelthaler, Gerald
van Schoonhoven, Sushilla
Sulyok, Michael
Boecker, Simon
Süssmuth, Roderich D.
Heffeter, Petra
Lemmens-Gruber, Rosa
Dornetshuber-Fleiss, Rita
Berger, Walter
The Natural Fungal Metabolite Beauvericin Exerts Anticancer Activity In Vivo: A Pre-Clinical Pilot Study
title The Natural Fungal Metabolite Beauvericin Exerts Anticancer Activity In Vivo: A Pre-Clinical Pilot Study
title_full The Natural Fungal Metabolite Beauvericin Exerts Anticancer Activity In Vivo: A Pre-Clinical Pilot Study
title_fullStr The Natural Fungal Metabolite Beauvericin Exerts Anticancer Activity In Vivo: A Pre-Clinical Pilot Study
title_full_unstemmed The Natural Fungal Metabolite Beauvericin Exerts Anticancer Activity In Vivo: A Pre-Clinical Pilot Study
title_short The Natural Fungal Metabolite Beauvericin Exerts Anticancer Activity In Vivo: A Pre-Clinical Pilot Study
title_sort natural fungal metabolite beauvericin exerts anticancer activity in vivo: a pre-clinical pilot study
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5618191/
https://www.ncbi.nlm.nih.gov/pubmed/28837057
http://dx.doi.org/10.3390/toxins9090258
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