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Paclitaxel Magnetic Core–Shell Nanoparticles Based on Poly(lactic acid) Semitelechelic Novel Block Copolymers for Combined Hyperthermia and Chemotherapy Treatment of Cancer

Magnetic hybrid inorganic/organic nanocarriers are promising alternatives for targeted cancer treatment. The present study evaluates the preparation of manganese ferrite magnetic nanoparticles (MnFe(2)O(4) MNPs) encapsulated within Paclitaxel (PTX) loaded thioether-containing ω-hydroxyacid-co-poly(d...

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Autores principales: Christodoulou, Evi, Nerantzaki, Maria, Nanaki, Stavroula, Barmpalexis, Panagiotis, Giannousi, Kleoniki, Dendrinou-Samara, Catherine, Angelakeris, Makis, Gounari, Eleni, Anastasiou, Antonis D., Bikiaris, Dimitrios N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6571958/
https://www.ncbi.nlm.nih.gov/pubmed/31058857
http://dx.doi.org/10.3390/pharmaceutics11050213
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author Christodoulou, Evi
Nerantzaki, Maria
Nanaki, Stavroula
Barmpalexis, Panagiotis
Giannousi, Kleoniki
Dendrinou-Samara, Catherine
Angelakeris, Makis
Gounari, Eleni
Anastasiou, Antonis D.
Bikiaris, Dimitrios N.
author_facet Christodoulou, Evi
Nerantzaki, Maria
Nanaki, Stavroula
Barmpalexis, Panagiotis
Giannousi, Kleoniki
Dendrinou-Samara, Catherine
Angelakeris, Makis
Gounari, Eleni
Anastasiou, Antonis D.
Bikiaris, Dimitrios N.
author_sort Christodoulou, Evi
collection PubMed
description Magnetic hybrid inorganic/organic nanocarriers are promising alternatives for targeted cancer treatment. The present study evaluates the preparation of manganese ferrite magnetic nanoparticles (MnFe(2)O(4) MNPs) encapsulated within Paclitaxel (PTX) loaded thioether-containing ω-hydroxyacid-co-poly(d,l-lactic acid) (TEHA-co-PDLLA) polymeric nanoparticles, for the combined hyperthermia and chemotherapy treatment of cancer. Initially, TEHA-co-PDLLA semitelechelic block copolymers were synthesized and characterized by (1)H-NMR, FTIR, DSC, and XRD. FTIR analysis showed the formation of an ester bond between the two compounds, while DSC and XRD analysis showed that the prepared copolymers were amorphous. MnFe(2)O(4) MNPs of relatively small crystallite size (12 nm) and moderate saturation magnetization (64 emu·g(−1)) were solvothermally synthesized in the sole presence of octadecylamine (ODA). PTX was amorphously dispersed within the polymeric matrix using emulsification/solvent evaporation method. Scanning electron microscopy along with energy-dispersive X-ray spectroscopy and transmission electron microscopy showed that the MnFe(2)O(4) nanoparticles were effectively encapsulated within the drug-loaded polymeric nanoparticles. Dynamic light scattering measurements showed that the prepared nanoparticles had an average particle size of less than 160 nm with satisfactory yield and encapsulation efficiency. Diphasic PTX in vitro release over 18 days was observed while PTX dissolution rate was mainly controlled by the TEHA content. Finally, hyperthermia measurements and cytotoxicity studies were performed to evaluate the magnetic response, as well as the anticancer activity and the biocompatibility of the prepared nanocarriers.
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spelling pubmed-65719582019-06-18 Paclitaxel Magnetic Core–Shell Nanoparticles Based on Poly(lactic acid) Semitelechelic Novel Block Copolymers for Combined Hyperthermia and Chemotherapy Treatment of Cancer Christodoulou, Evi Nerantzaki, Maria Nanaki, Stavroula Barmpalexis, Panagiotis Giannousi, Kleoniki Dendrinou-Samara, Catherine Angelakeris, Makis Gounari, Eleni Anastasiou, Antonis D. Bikiaris, Dimitrios N. Pharmaceutics Article Magnetic hybrid inorganic/organic nanocarriers are promising alternatives for targeted cancer treatment. The present study evaluates the preparation of manganese ferrite magnetic nanoparticles (MnFe(2)O(4) MNPs) encapsulated within Paclitaxel (PTX) loaded thioether-containing ω-hydroxyacid-co-poly(d,l-lactic acid) (TEHA-co-PDLLA) polymeric nanoparticles, for the combined hyperthermia and chemotherapy treatment of cancer. Initially, TEHA-co-PDLLA semitelechelic block copolymers were synthesized and characterized by (1)H-NMR, FTIR, DSC, and XRD. FTIR analysis showed the formation of an ester bond between the two compounds, while DSC and XRD analysis showed that the prepared copolymers were amorphous. MnFe(2)O(4) MNPs of relatively small crystallite size (12 nm) and moderate saturation magnetization (64 emu·g(−1)) were solvothermally synthesized in the sole presence of octadecylamine (ODA). PTX was amorphously dispersed within the polymeric matrix using emulsification/solvent evaporation method. Scanning electron microscopy along with energy-dispersive X-ray spectroscopy and transmission electron microscopy showed that the MnFe(2)O(4) nanoparticles were effectively encapsulated within the drug-loaded polymeric nanoparticles. Dynamic light scattering measurements showed that the prepared nanoparticles had an average particle size of less than 160 nm with satisfactory yield and encapsulation efficiency. Diphasic PTX in vitro release over 18 days was observed while PTX dissolution rate was mainly controlled by the TEHA content. Finally, hyperthermia measurements and cytotoxicity studies were performed to evaluate the magnetic response, as well as the anticancer activity and the biocompatibility of the prepared nanocarriers. MDPI 2019-05-03 /pmc/articles/PMC6571958/ /pubmed/31058857 http://dx.doi.org/10.3390/pharmaceutics11050213 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
Christodoulou, Evi
Nerantzaki, Maria
Nanaki, Stavroula
Barmpalexis, Panagiotis
Giannousi, Kleoniki
Dendrinou-Samara, Catherine
Angelakeris, Makis
Gounari, Eleni
Anastasiou, Antonis D.
Bikiaris, Dimitrios N.
Paclitaxel Magnetic Core–Shell Nanoparticles Based on Poly(lactic acid) Semitelechelic Novel Block Copolymers for Combined Hyperthermia and Chemotherapy Treatment of Cancer
title Paclitaxel Magnetic Core–Shell Nanoparticles Based on Poly(lactic acid) Semitelechelic Novel Block Copolymers for Combined Hyperthermia and Chemotherapy Treatment of Cancer
title_full Paclitaxel Magnetic Core–Shell Nanoparticles Based on Poly(lactic acid) Semitelechelic Novel Block Copolymers for Combined Hyperthermia and Chemotherapy Treatment of Cancer
title_fullStr Paclitaxel Magnetic Core–Shell Nanoparticles Based on Poly(lactic acid) Semitelechelic Novel Block Copolymers for Combined Hyperthermia and Chemotherapy Treatment of Cancer
title_full_unstemmed Paclitaxel Magnetic Core–Shell Nanoparticles Based on Poly(lactic acid) Semitelechelic Novel Block Copolymers for Combined Hyperthermia and Chemotherapy Treatment of Cancer
title_short Paclitaxel Magnetic Core–Shell Nanoparticles Based on Poly(lactic acid) Semitelechelic Novel Block Copolymers for Combined Hyperthermia and Chemotherapy Treatment of Cancer
title_sort paclitaxel magnetic core–shell nanoparticles based on poly(lactic acid) semitelechelic novel block copolymers for combined hyperthermia and chemotherapy treatment of cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6571958/
https://www.ncbi.nlm.nih.gov/pubmed/31058857
http://dx.doi.org/10.3390/pharmaceutics11050213
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