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A Smart Nanovector for Cancer Targeted Drug Delivery Based on Graphene Quantum Dots

Graphene quantum dots (GQD), the new generation members of graphene-family, have shown promising applications in anticancer therapy. In this study, we report the synthesis of a fluorescent and biocompatible nanovector, based on GQD, for the targeted delivery of an anticancer drug with benzofuran str...

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Autores principales: Iannazzo, Daniela, Pistone, Alessandro, Celesti, Consuelo, Triolo, Claudia, Patané, Salvatore, Giofré, Salvatore V., Romeo, Roberto, Ziccarelli, Ida, Mancuso, Raffaella, Gabriele, Bartolo, Visalli, Giuseppa, Facciolà, Alessio, Di Pietro, Angela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6409783/
https://www.ncbi.nlm.nih.gov/pubmed/30781623
http://dx.doi.org/10.3390/nano9020282
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author Iannazzo, Daniela
Pistone, Alessandro
Celesti, Consuelo
Triolo, Claudia
Patané, Salvatore
Giofré, Salvatore V.
Romeo, Roberto
Ziccarelli, Ida
Mancuso, Raffaella
Gabriele, Bartolo
Visalli, Giuseppa
Facciolà, Alessio
Di Pietro, Angela
author_facet Iannazzo, Daniela
Pistone, Alessandro
Celesti, Consuelo
Triolo, Claudia
Patané, Salvatore
Giofré, Salvatore V.
Romeo, Roberto
Ziccarelli, Ida
Mancuso, Raffaella
Gabriele, Bartolo
Visalli, Giuseppa
Facciolà, Alessio
Di Pietro, Angela
author_sort Iannazzo, Daniela
collection PubMed
description Graphene quantum dots (GQD), the new generation members of graphene-family, have shown promising applications in anticancer therapy. In this study, we report the synthesis of a fluorescent and biocompatible nanovector, based on GQD, for the targeted delivery of an anticancer drug with benzofuran structure (BFG) and bearing the targeting ligand riboflavin (RF, vitamin B2). The highly water-dispersible nanoparticles, synthesized from multi-walled carbon nanotubes (MWCNT) by prolonged acidic treatment, were linked covalently to the drug by means of a cleavable PEG linker while the targeting ligand RF was conjugated to the GQD by π–π interaction using a pyrene linker. The cytotoxic effect of the synthesized drug delivery system (DDS) GQD-PEG-BFG@Pyr-RF was tested on three cancer cell lines and this effect was compared with that exerted by the same nanovector lacking the RF ligand (GQD-PEG-BFG) or the anticancer drug (GQD@Pyr-RF). The results of biological tests underlined the low cytotoxicity of the GQD sample and the cytotoxic activity of the DDS against the investigated cancer cell lines with a higher or similar potency to that exerted by the BFG alone, thus opening new possibilities for the use of this drug or other anticancer agents endowed of cytotoxicity and serious side effects.
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spelling pubmed-64097832019-03-11 A Smart Nanovector for Cancer Targeted Drug Delivery Based on Graphene Quantum Dots Iannazzo, Daniela Pistone, Alessandro Celesti, Consuelo Triolo, Claudia Patané, Salvatore Giofré, Salvatore V. Romeo, Roberto Ziccarelli, Ida Mancuso, Raffaella Gabriele, Bartolo Visalli, Giuseppa Facciolà, Alessio Di Pietro, Angela Nanomaterials (Basel) Article Graphene quantum dots (GQD), the new generation members of graphene-family, have shown promising applications in anticancer therapy. In this study, we report the synthesis of a fluorescent and biocompatible nanovector, based on GQD, for the targeted delivery of an anticancer drug with benzofuran structure (BFG) and bearing the targeting ligand riboflavin (RF, vitamin B2). The highly water-dispersible nanoparticles, synthesized from multi-walled carbon nanotubes (MWCNT) by prolonged acidic treatment, were linked covalently to the drug by means of a cleavable PEG linker while the targeting ligand RF was conjugated to the GQD by π–π interaction using a pyrene linker. The cytotoxic effect of the synthesized drug delivery system (DDS) GQD-PEG-BFG@Pyr-RF was tested on three cancer cell lines and this effect was compared with that exerted by the same nanovector lacking the RF ligand (GQD-PEG-BFG) or the anticancer drug (GQD@Pyr-RF). The results of biological tests underlined the low cytotoxicity of the GQD sample and the cytotoxic activity of the DDS against the investigated cancer cell lines with a higher or similar potency to that exerted by the BFG alone, thus opening new possibilities for the use of this drug or other anticancer agents endowed of cytotoxicity and serious side effects. MDPI 2019-02-18 /pmc/articles/PMC6409783/ /pubmed/30781623 http://dx.doi.org/10.3390/nano9020282 Text en © 2019 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 Article
Iannazzo, Daniela
Pistone, Alessandro
Celesti, Consuelo
Triolo, Claudia
Patané, Salvatore
Giofré, Salvatore V.
Romeo, Roberto
Ziccarelli, Ida
Mancuso, Raffaella
Gabriele, Bartolo
Visalli, Giuseppa
Facciolà, Alessio
Di Pietro, Angela
A Smart Nanovector for Cancer Targeted Drug Delivery Based on Graphene Quantum Dots
title A Smart Nanovector for Cancer Targeted Drug Delivery Based on Graphene Quantum Dots
title_full A Smart Nanovector for Cancer Targeted Drug Delivery Based on Graphene Quantum Dots
title_fullStr A Smart Nanovector for Cancer Targeted Drug Delivery Based on Graphene Quantum Dots
title_full_unstemmed A Smart Nanovector for Cancer Targeted Drug Delivery Based on Graphene Quantum Dots
title_short A Smart Nanovector for Cancer Targeted Drug Delivery Based on Graphene Quantum Dots
title_sort smart nanovector for cancer targeted drug delivery based on graphene quantum dots
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6409783/
https://www.ncbi.nlm.nih.gov/pubmed/30781623
http://dx.doi.org/10.3390/nano9020282
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