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Controlled Synthesis and Characterization of Micrometric Single Crystalline Magnetite With Superparamagnetic Behavior and Cytocompatibility/Cytotoxicity Assessments

A new class of magnetite (Fe(3)O(4)) particles, coined as “Single Crystalline Micrometric Iron Oxide Particles” (SCMIOPs), were obtained by hydrothermal synthesis. Both the single Fe(3)O(4) phase content and the particle sizes range, from 1 µm to 30 µm, can be controlled by synthesis. The notable fi...

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Autores principales: Farcas, Claudia Geanina, Macasoi, Ioana, Pinzaru, Iulia, Chirita, Marius, Chirita Mihaila, Marius Constantin, Dehelean, Cristina, Avram, Stefana, Loghin, Felicia, Mocanu, Liviu, Rotaru, Virgil, Ieta, Adrian, Ercuta, Aurel, Coricovac, Dorina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7147350/
https://www.ncbi.nlm.nih.gov/pubmed/32317973
http://dx.doi.org/10.3389/fphar.2020.00410
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author Farcas, Claudia Geanina
Macasoi, Ioana
Pinzaru, Iulia
Chirita, Marius
Chirita Mihaila, Marius Constantin
Dehelean, Cristina
Avram, Stefana
Loghin, Felicia
Mocanu, Liviu
Rotaru, Virgil
Ieta, Adrian
Ercuta, Aurel
Coricovac, Dorina
author_facet Farcas, Claudia Geanina
Macasoi, Ioana
Pinzaru, Iulia
Chirita, Marius
Chirita Mihaila, Marius Constantin
Dehelean, Cristina
Avram, Stefana
Loghin, Felicia
Mocanu, Liviu
Rotaru, Virgil
Ieta, Adrian
Ercuta, Aurel
Coricovac, Dorina
author_sort Farcas, Claudia Geanina
collection PubMed
description A new class of magnetite (Fe(3)O(4)) particles, coined as “Single Crystalline Micrometric Iron Oxide Particles” (SCMIOPs), were obtained by hydrothermal synthesis. Both the single Fe(3)O(4) phase content and the particle sizes range, from 1 µm to 30 µm, can be controlled by synthesis. The notable finding states that these particles exhibit vanishing remanent magnetization (σr=0.28 emu/g) and coercive force (Hc=1.5 Oe), which indicate a superparamagnetic-like behavior (unexpected at micrometric particles size), and remarkably high saturation magnetization (σs=95.5 emu/g), what ensures strong magnetic response, and the lack of agglomeration after the magnetic field removal. These qualities make such particles candidates for biomedical applications, to be used instead of magnetic nanoparticles which inevitably involve some drawbacks like aglommeration and insufficient magnetic response. In this sense, cytocompatibility/cytotoxicity tests were performed on human cells, and the results have clearly indicated that SCMIOPs are cytocompatible for healthy cell lines HaCaT (human keratinocytes) and HEMa (primary epidermal melanocytes) and cytotoxic for neoplastic cell lines A375 (human melanoma) and B164A5 (murine melanoma) in a dose-dependent manner.
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spelling pubmed-71473502020-04-21 Controlled Synthesis and Characterization of Micrometric Single Crystalline Magnetite With Superparamagnetic Behavior and Cytocompatibility/Cytotoxicity Assessments Farcas, Claudia Geanina Macasoi, Ioana Pinzaru, Iulia Chirita, Marius Chirita Mihaila, Marius Constantin Dehelean, Cristina Avram, Stefana Loghin, Felicia Mocanu, Liviu Rotaru, Virgil Ieta, Adrian Ercuta, Aurel Coricovac, Dorina Front Pharmacol Pharmacology A new class of magnetite (Fe(3)O(4)) particles, coined as “Single Crystalline Micrometric Iron Oxide Particles” (SCMIOPs), were obtained by hydrothermal synthesis. Both the single Fe(3)O(4) phase content and the particle sizes range, from 1 µm to 30 µm, can be controlled by synthesis. The notable finding states that these particles exhibit vanishing remanent magnetization (σr=0.28 emu/g) and coercive force (Hc=1.5 Oe), which indicate a superparamagnetic-like behavior (unexpected at micrometric particles size), and remarkably high saturation magnetization (σs=95.5 emu/g), what ensures strong magnetic response, and the lack of agglomeration after the magnetic field removal. These qualities make such particles candidates for biomedical applications, to be used instead of magnetic nanoparticles which inevitably involve some drawbacks like aglommeration and insufficient magnetic response. In this sense, cytocompatibility/cytotoxicity tests were performed on human cells, and the results have clearly indicated that SCMIOPs are cytocompatible for healthy cell lines HaCaT (human keratinocytes) and HEMa (primary epidermal melanocytes) and cytotoxic for neoplastic cell lines A375 (human melanoma) and B164A5 (murine melanoma) in a dose-dependent manner. Frontiers Media S.A. 2020-04-03 /pmc/articles/PMC7147350/ /pubmed/32317973 http://dx.doi.org/10.3389/fphar.2020.00410 Text en Copyright © 2020 Farcas, Macasoi, Pinzaru, Chirita, Chirita Mihaila, Dehelean, Avram, Loghin, Mocanu, Rotaru, Ieta, Ercuta and Coricovac http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Farcas, Claudia Geanina
Macasoi, Ioana
Pinzaru, Iulia
Chirita, Marius
Chirita Mihaila, Marius Constantin
Dehelean, Cristina
Avram, Stefana
Loghin, Felicia
Mocanu, Liviu
Rotaru, Virgil
Ieta, Adrian
Ercuta, Aurel
Coricovac, Dorina
Controlled Synthesis and Characterization of Micrometric Single Crystalline Magnetite With Superparamagnetic Behavior and Cytocompatibility/Cytotoxicity Assessments
title Controlled Synthesis and Characterization of Micrometric Single Crystalline Magnetite With Superparamagnetic Behavior and Cytocompatibility/Cytotoxicity Assessments
title_full Controlled Synthesis and Characterization of Micrometric Single Crystalline Magnetite With Superparamagnetic Behavior and Cytocompatibility/Cytotoxicity Assessments
title_fullStr Controlled Synthesis and Characterization of Micrometric Single Crystalline Magnetite With Superparamagnetic Behavior and Cytocompatibility/Cytotoxicity Assessments
title_full_unstemmed Controlled Synthesis and Characterization of Micrometric Single Crystalline Magnetite With Superparamagnetic Behavior and Cytocompatibility/Cytotoxicity Assessments
title_short Controlled Synthesis and Characterization of Micrometric Single Crystalline Magnetite With Superparamagnetic Behavior and Cytocompatibility/Cytotoxicity Assessments
title_sort controlled synthesis and characterization of micrometric single crystalline magnetite with superparamagnetic behavior and cytocompatibility/cytotoxicity assessments
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7147350/
https://www.ncbi.nlm.nih.gov/pubmed/32317973
http://dx.doi.org/10.3389/fphar.2020.00410
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