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Influence of Polymer Shell Molecular Weight on Functionalized Iron Oxide Nanoparticles Morphology and In Vivo Biodistribution

Iron oxide nanoparticles (IONPs) have been extensively used in different biomedical applications due to their biocompatibility and magnetic properties. However, different functionalization approaches have been developed to improve their time-life in the systemic circulation. Here, we have synthesize...

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Autores principales: Popescu, Roxana Cristina, Vasile, Bogdan Ştefan, Savu, Diana Iulia, Mogoşanu, George Dan, Bejenaru, Ludovic Everard, Andronescu, Ecaterina, Grumezescu, Alexandru Mihai, Mogoantă, Laurenţiu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9501806/
https://www.ncbi.nlm.nih.gov/pubmed/36145625
http://dx.doi.org/10.3390/pharmaceutics14091877
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author Popescu, Roxana Cristina
Vasile, Bogdan Ştefan
Savu, Diana Iulia
Mogoşanu, George Dan
Bejenaru, Ludovic Everard
Andronescu, Ecaterina
Grumezescu, Alexandru Mihai
Mogoantă, Laurenţiu
author_facet Popescu, Roxana Cristina
Vasile, Bogdan Ştefan
Savu, Diana Iulia
Mogoşanu, George Dan
Bejenaru, Ludovic Everard
Andronescu, Ecaterina
Grumezescu, Alexandru Mihai
Mogoantă, Laurenţiu
author_sort Popescu, Roxana Cristina
collection PubMed
description Iron oxide nanoparticles (IONPs) have been extensively used in different biomedical applications due to their biocompatibility and magnetic properties. However, different functionalization approaches have been developed to improve their time-life in the systemic circulation. Here, we have synthesized IONPs using a modified Massart method and functionalized them in situ with polyethylene glycol with different molecular weights (20 K and 35 K). The resulting nanoparticles were characterized in terms of morphology, structure, and composition using transmission electron microscopy (TEM) and selected area electron diffraction (SAED). In vivo biodistribution was evaluated in Balb/c mice, the presence of IONP being evidenced through histopathological investigations. IONP morphological characterization showed a change in shape (from spherical to rhombic) and size with molecular weight, while structural characterization proved the obtaining of highly crystalline samples of spinel structured cubic face-centered magnetite. In vivo biodistribution in a mice model proved the biocompatibility of all of the IONP samples. All NPs were cleared through the liver, spleen, and lungs, while bare IONPs were also evidenced in kidneys.
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spelling pubmed-95018062022-09-24 Influence of Polymer Shell Molecular Weight on Functionalized Iron Oxide Nanoparticles Morphology and In Vivo Biodistribution Popescu, Roxana Cristina Vasile, Bogdan Ştefan Savu, Diana Iulia Mogoşanu, George Dan Bejenaru, Ludovic Everard Andronescu, Ecaterina Grumezescu, Alexandru Mihai Mogoantă, Laurenţiu Pharmaceutics Article Iron oxide nanoparticles (IONPs) have been extensively used in different biomedical applications due to their biocompatibility and magnetic properties. However, different functionalization approaches have been developed to improve their time-life in the systemic circulation. Here, we have synthesized IONPs using a modified Massart method and functionalized them in situ with polyethylene glycol with different molecular weights (20 K and 35 K). The resulting nanoparticles were characterized in terms of morphology, structure, and composition using transmission electron microscopy (TEM) and selected area electron diffraction (SAED). In vivo biodistribution was evaluated in Balb/c mice, the presence of IONP being evidenced through histopathological investigations. IONP morphological characterization showed a change in shape (from spherical to rhombic) and size with molecular weight, while structural characterization proved the obtaining of highly crystalline samples of spinel structured cubic face-centered magnetite. In vivo biodistribution in a mice model proved the biocompatibility of all of the IONP samples. All NPs were cleared through the liver, spleen, and lungs, while bare IONPs were also evidenced in kidneys. MDPI 2022-09-05 /pmc/articles/PMC9501806/ /pubmed/36145625 http://dx.doi.org/10.3390/pharmaceutics14091877 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
Popescu, Roxana Cristina
Vasile, Bogdan Ştefan
Savu, Diana Iulia
Mogoşanu, George Dan
Bejenaru, Ludovic Everard
Andronescu, Ecaterina
Grumezescu, Alexandru Mihai
Mogoantă, Laurenţiu
Influence of Polymer Shell Molecular Weight on Functionalized Iron Oxide Nanoparticles Morphology and In Vivo Biodistribution
title Influence of Polymer Shell Molecular Weight on Functionalized Iron Oxide Nanoparticles Morphology and In Vivo Biodistribution
title_full Influence of Polymer Shell Molecular Weight on Functionalized Iron Oxide Nanoparticles Morphology and In Vivo Biodistribution
title_fullStr Influence of Polymer Shell Molecular Weight on Functionalized Iron Oxide Nanoparticles Morphology and In Vivo Biodistribution
title_full_unstemmed Influence of Polymer Shell Molecular Weight on Functionalized Iron Oxide Nanoparticles Morphology and In Vivo Biodistribution
title_short Influence of Polymer Shell Molecular Weight on Functionalized Iron Oxide Nanoparticles Morphology and In Vivo Biodistribution
title_sort influence of polymer shell molecular weight on functionalized iron oxide nanoparticles morphology and in vivo biodistribution
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9501806/
https://www.ncbi.nlm.nih.gov/pubmed/36145625
http://dx.doi.org/10.3390/pharmaceutics14091877
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