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α‐Fe(2)O(3)@Ag and Fe(3)O(4)@Ag Core‐Shell Nanoparticles: Green Synthesis, Magnetic Properties and Cytotoxic Performance

This work provides the synthetic route for the arrangement of Fe(3)O(4)@Ag and α‐Fe(2)O(3)@Ag core‐shell nanoparticles (NPs) with cytotoxic capabilities. The production of Fe(3)O(4)@Ag and α‐Fe(2)O(3)@Ag core‐shell NPs was facilitated utilizing S. persica bark extracts. The results of Powder X‐ray D...

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Autores principales: Sarani, Mina, Hamidian, Khadijeh, Barani, Mahmood, Adeli‐Sardou, Mahboubeh, Khonakdar, Hossein Ali
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10235882/
https://www.ncbi.nlm.nih.gov/pubmed/37260410
http://dx.doi.org/10.1002/open.202200250
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author Sarani, Mina
Hamidian, Khadijeh
Barani, Mahmood
Adeli‐Sardou, Mahboubeh
Khonakdar, Hossein Ali
author_facet Sarani, Mina
Hamidian, Khadijeh
Barani, Mahmood
Adeli‐Sardou, Mahboubeh
Khonakdar, Hossein Ali
author_sort Sarani, Mina
collection PubMed
description This work provides the synthetic route for the arrangement of Fe(3)O(4)@Ag and α‐Fe(2)O(3)@Ag core‐shell nanoparticles (NPs) with cytotoxic capabilities. The production of Fe(3)O(4)@Ag and α‐Fe(2)O(3)@Ag core‐shell NPs was facilitated utilizing S. persica bark extracts. The results of Powder X‐ray Diffraction (PXRD), Ultraviolet‐visible (UV‐Vis) spectroscopy, Vibrating Sample Magnetometry (VSM), Energy Dispersive X‐ray (EDX) analysis, Field Emission Scanning Electron Microscopy (FESEM), and Transmission Electron Microscopy (TEM) supported the green synthesis and characterization of Fe(3)O(4)@Ag and α‐Fe(2)O(3)@Ag NPs. The particle size was measured by the TEM analysis to be about 30 and 50 nm, respectively; while the results of FESEM showed that α‐Fe(2)O(3)@Ag and Fe(3)O(4)@Ag particles contained multifaceted particles with a size of 50–60 nm and 20–25 nm, respectively. The outcomes of VSM were indicative of a saturation magnetization of 37 and 0.18 emu/g at room temperature, respectively. The potential cytotoxicity of the synthesized core‐shell nanoparticles towards breast cancer (MCF‐7) and human umbilical vein endothelial (HUVEC) cells was evaluated by an MTT assay. α‐Fe(2)O(3)@Ag NPs were able to destroy 100 % of MCF‐7 cell at doses above 80 μg/mL, and it was confirmed that Fe(3)O(4)@Ag NPs at a volume of 160 μg/mL can destroy 90 % of MCF‐7 cells. Thus, the applicability of the prepared nanoparticles of these nanoparticles in biological and medical fields has been demonstrated.
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spelling pubmed-102358822023-06-03 α‐Fe(2)O(3)@Ag and Fe(3)O(4)@Ag Core‐Shell Nanoparticles: Green Synthesis, Magnetic Properties and Cytotoxic Performance Sarani, Mina Hamidian, Khadijeh Barani, Mahmood Adeli‐Sardou, Mahboubeh Khonakdar, Hossein Ali ChemistryOpen Research Articles This work provides the synthetic route for the arrangement of Fe(3)O(4)@Ag and α‐Fe(2)O(3)@Ag core‐shell nanoparticles (NPs) with cytotoxic capabilities. The production of Fe(3)O(4)@Ag and α‐Fe(2)O(3)@Ag core‐shell NPs was facilitated utilizing S. persica bark extracts. The results of Powder X‐ray Diffraction (PXRD), Ultraviolet‐visible (UV‐Vis) spectroscopy, Vibrating Sample Magnetometry (VSM), Energy Dispersive X‐ray (EDX) analysis, Field Emission Scanning Electron Microscopy (FESEM), and Transmission Electron Microscopy (TEM) supported the green synthesis and characterization of Fe(3)O(4)@Ag and α‐Fe(2)O(3)@Ag NPs. The particle size was measured by the TEM analysis to be about 30 and 50 nm, respectively; while the results of FESEM showed that α‐Fe(2)O(3)@Ag and Fe(3)O(4)@Ag particles contained multifaceted particles with a size of 50–60 nm and 20–25 nm, respectively. The outcomes of VSM were indicative of a saturation magnetization of 37 and 0.18 emu/g at room temperature, respectively. The potential cytotoxicity of the synthesized core‐shell nanoparticles towards breast cancer (MCF‐7) and human umbilical vein endothelial (HUVEC) cells was evaluated by an MTT assay. α‐Fe(2)O(3)@Ag NPs were able to destroy 100 % of MCF‐7 cell at doses above 80 μg/mL, and it was confirmed that Fe(3)O(4)@Ag NPs at a volume of 160 μg/mL can destroy 90 % of MCF‐7 cells. Thus, the applicability of the prepared nanoparticles of these nanoparticles in biological and medical fields has been demonstrated. John Wiley and Sons Inc. 2023-06-01 /pmc/articles/PMC10235882/ /pubmed/37260410 http://dx.doi.org/10.1002/open.202200250 Text en © 2023 The Authors. Published by Wiley-VCH GmbH https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Sarani, Mina
Hamidian, Khadijeh
Barani, Mahmood
Adeli‐Sardou, Mahboubeh
Khonakdar, Hossein Ali
α‐Fe(2)O(3)@Ag and Fe(3)O(4)@Ag Core‐Shell Nanoparticles: Green Synthesis, Magnetic Properties and Cytotoxic Performance
title α‐Fe(2)O(3)@Ag and Fe(3)O(4)@Ag Core‐Shell Nanoparticles: Green Synthesis, Magnetic Properties and Cytotoxic Performance
title_full α‐Fe(2)O(3)@Ag and Fe(3)O(4)@Ag Core‐Shell Nanoparticles: Green Synthesis, Magnetic Properties and Cytotoxic Performance
title_fullStr α‐Fe(2)O(3)@Ag and Fe(3)O(4)@Ag Core‐Shell Nanoparticles: Green Synthesis, Magnetic Properties and Cytotoxic Performance
title_full_unstemmed α‐Fe(2)O(3)@Ag and Fe(3)O(4)@Ag Core‐Shell Nanoparticles: Green Synthesis, Magnetic Properties and Cytotoxic Performance
title_short α‐Fe(2)O(3)@Ag and Fe(3)O(4)@Ag Core‐Shell Nanoparticles: Green Synthesis, Magnetic Properties and Cytotoxic Performance
title_sort α‐fe(2)o(3)@ag and fe(3)o(4)@ag core‐shell nanoparticles: green synthesis, magnetic properties and cytotoxic performance
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10235882/
https://www.ncbi.nlm.nih.gov/pubmed/37260410
http://dx.doi.org/10.1002/open.202200250
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