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Chalcones as Anti-Glioblastoma Stem Cell Agent Alone or as Nanoparticle Formulation Using Carbon Dots as Nanocarrier

The current prognosis for glioblastoma is dismal. Treatment-resistant glioblastoma stem cells (GSCs) and the failure of most drugs to reach therapeutic levels within the tumor remain formidable obstacles to successful treatment. Chalcones are aromatic ketones demonstrated to reduce malignant propert...

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Autores principales: Veliz, Eduardo A., Kaplina, Anastasiia, Hettiarachchi, Sajini D., Yoham, Athina L., Matta, Carolina, Safar, Sabrin, Sankaran, Meghana, Abadi, Esther L., Cilingir, Emel Kirbas, Vallejo, Frederic A., Walters, Winston M., Vanni, Steven, Leblanc, Roger M., Graham, Regina M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9316063/
https://www.ncbi.nlm.nih.gov/pubmed/35890360
http://dx.doi.org/10.3390/pharmaceutics14071465
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author Veliz, Eduardo A.
Kaplina, Anastasiia
Hettiarachchi, Sajini D.
Yoham, Athina L.
Matta, Carolina
Safar, Sabrin
Sankaran, Meghana
Abadi, Esther L.
Cilingir, Emel Kirbas
Vallejo, Frederic A.
Walters, Winston M.
Vanni, Steven
Leblanc, Roger M.
Graham, Regina M.
author_facet Veliz, Eduardo A.
Kaplina, Anastasiia
Hettiarachchi, Sajini D.
Yoham, Athina L.
Matta, Carolina
Safar, Sabrin
Sankaran, Meghana
Abadi, Esther L.
Cilingir, Emel Kirbas
Vallejo, Frederic A.
Walters, Winston M.
Vanni, Steven
Leblanc, Roger M.
Graham, Regina M.
author_sort Veliz, Eduardo A.
collection PubMed
description The current prognosis for glioblastoma is dismal. Treatment-resistant glioblastoma stem cells (GSCs) and the failure of most drugs to reach therapeutic levels within the tumor remain formidable obstacles to successful treatment. Chalcones are aromatic ketones demonstrated to reduce malignant properties in cancers including glioblastoma. Nanomedicines can increase drug accumulation and tumor cell death. Carbon-dots are promising nanocarriers that can be easily functionalized with tumor-targeting ligands and anti-cancer drugs. Therefore, we synthesized a series of 4′-amino chalcones with the rationale that the amino group would serve as a “handle” to facilitate covalent attachment to carbon-dots and tested their cytotoxicity toward GSCs. We generated 31 chalcones (22 4′-amino and 9 4′ derivatives) including 5 novel chalcones, and found that 13 had an IC(50) below 10 µM in all GSC lines. After confirming that the 4-amino group was not part of the active pharmacophore, chalcones were attached to transferrin-conjugated carbon-dots. These conjugates were significantly more cytotoxic than the free chalcones, with the C-dot-transferrin-2,5, dimethoxy chalcone conjugate inducing up to 100-fold more GSC death. Several of the tested chalcones represent promising lead compounds for the development of novel anti-GSC drugs. Furthermore, designing amino chalcones for carbon-dot mediated drug delivery is a rational and effective methodology.
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spelling pubmed-93160632022-07-27 Chalcones as Anti-Glioblastoma Stem Cell Agent Alone or as Nanoparticle Formulation Using Carbon Dots as Nanocarrier Veliz, Eduardo A. Kaplina, Anastasiia Hettiarachchi, Sajini D. Yoham, Athina L. Matta, Carolina Safar, Sabrin Sankaran, Meghana Abadi, Esther L. Cilingir, Emel Kirbas Vallejo, Frederic A. Walters, Winston M. Vanni, Steven Leblanc, Roger M. Graham, Regina M. Pharmaceutics Article The current prognosis for glioblastoma is dismal. Treatment-resistant glioblastoma stem cells (GSCs) and the failure of most drugs to reach therapeutic levels within the tumor remain formidable obstacles to successful treatment. Chalcones are aromatic ketones demonstrated to reduce malignant properties in cancers including glioblastoma. Nanomedicines can increase drug accumulation and tumor cell death. Carbon-dots are promising nanocarriers that can be easily functionalized with tumor-targeting ligands and anti-cancer drugs. Therefore, we synthesized a series of 4′-amino chalcones with the rationale that the amino group would serve as a “handle” to facilitate covalent attachment to carbon-dots and tested their cytotoxicity toward GSCs. We generated 31 chalcones (22 4′-amino and 9 4′ derivatives) including 5 novel chalcones, and found that 13 had an IC(50) below 10 µM in all GSC lines. After confirming that the 4-amino group was not part of the active pharmacophore, chalcones were attached to transferrin-conjugated carbon-dots. These conjugates were significantly more cytotoxic than the free chalcones, with the C-dot-transferrin-2,5, dimethoxy chalcone conjugate inducing up to 100-fold more GSC death. Several of the tested chalcones represent promising lead compounds for the development of novel anti-GSC drugs. Furthermore, designing amino chalcones for carbon-dot mediated drug delivery is a rational and effective methodology. MDPI 2022-07-14 /pmc/articles/PMC9316063/ /pubmed/35890360 http://dx.doi.org/10.3390/pharmaceutics14071465 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Veliz, Eduardo A.
Kaplina, Anastasiia
Hettiarachchi, Sajini D.
Yoham, Athina L.
Matta, Carolina
Safar, Sabrin
Sankaran, Meghana
Abadi, Esther L.
Cilingir, Emel Kirbas
Vallejo, Frederic A.
Walters, Winston M.
Vanni, Steven
Leblanc, Roger M.
Graham, Regina M.
Chalcones as Anti-Glioblastoma Stem Cell Agent Alone or as Nanoparticle Formulation Using Carbon Dots as Nanocarrier
title Chalcones as Anti-Glioblastoma Stem Cell Agent Alone or as Nanoparticle Formulation Using Carbon Dots as Nanocarrier
title_full Chalcones as Anti-Glioblastoma Stem Cell Agent Alone or as Nanoparticle Formulation Using Carbon Dots as Nanocarrier
title_fullStr Chalcones as Anti-Glioblastoma Stem Cell Agent Alone or as Nanoparticle Formulation Using Carbon Dots as Nanocarrier
title_full_unstemmed Chalcones as Anti-Glioblastoma Stem Cell Agent Alone or as Nanoparticle Formulation Using Carbon Dots as Nanocarrier
title_short Chalcones as Anti-Glioblastoma Stem Cell Agent Alone or as Nanoparticle Formulation Using Carbon Dots as Nanocarrier
title_sort chalcones as anti-glioblastoma stem cell agent alone or as nanoparticle formulation using carbon dots as nanocarrier
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9316063/
https://www.ncbi.nlm.nih.gov/pubmed/35890360
http://dx.doi.org/10.3390/pharmaceutics14071465
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