Cargando…

Iron Oxide Mesoporous Magnetic Nanostructures with High Surface Area for Enhanced and Selective Drug Delivery to Metastatic Cancer Cells

This work reports the fabrication of iron oxide mesoporous magnetic nanostructures (IO-MMNs) via the nano-replication method using acid-prepared mesoporous spheres (APMS) as the rigid silica host and iron (III) nitrate as the iron precursor. The obtained nanosized mesostructures were fully character...

Descripción completa

Detalles Bibliográficos
Autores principales: El-Boubbou, Kheireddine, Ali, Rizwan, Al-Humaid, Sulaiman, Alhallaj, Alshaimaa, Lemine, O. M., Boudjelal, Mohamed, AlKushi, Abdulmohsen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8071045/
https://www.ncbi.nlm.nih.gov/pubmed/33920033
http://dx.doi.org/10.3390/pharmaceutics13040553
_version_ 1783683609332285440
author El-Boubbou, Kheireddine
Ali, Rizwan
Al-Humaid, Sulaiman
Alhallaj, Alshaimaa
Lemine, O. M.
Boudjelal, Mohamed
AlKushi, Abdulmohsen
author_facet El-Boubbou, Kheireddine
Ali, Rizwan
Al-Humaid, Sulaiman
Alhallaj, Alshaimaa
Lemine, O. M.
Boudjelal, Mohamed
AlKushi, Abdulmohsen
author_sort El-Boubbou, Kheireddine
collection PubMed
description This work reports the fabrication of iron oxide mesoporous magnetic nanostructures (IO-MMNs) via the nano-replication method using acid-prepared mesoporous spheres (APMS) as the rigid silica host and iron (III) nitrate as the iron precursor. The obtained nanosized mesostructures were fully characterized by SEM, TEM, DLS, FTIR, XRD, VSM, and nitrogen physisorption. IO-MMNs exhibited relatively high surface areas and large pore volumes (S(BET) = 70–120 m(2)/g and V(pore) = 0.25–0.45 cm(3)/g), small sizes (~300 nm), good crystallinity and magnetization, and excellent biocompatibility. With their intrinsic porosities, high drug loading efficiencies (up to 70%) were achieved and the drug release rates were found to be pH-dependent. Cytotoxicity, confocal microscopy, and flow cytometry experiments against different types of cancerous cells indicated that Dox-loaded IO-MMNs reduced the viability of metastatic MCF-7 and KAIMRC-1 breast as well as HT-29 colon cancer cells, with the least uptake and toxicity towards normal primary cells (up to 4-fold enhancement). These results strongly suggest the potential use of IO-MMNs as promising agents for enhanced and effective drug delivery in cancer theranostics.
format Online
Article
Text
id pubmed-8071045
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-80710452021-04-26 Iron Oxide Mesoporous Magnetic Nanostructures with High Surface Area for Enhanced and Selective Drug Delivery to Metastatic Cancer Cells El-Boubbou, Kheireddine Ali, Rizwan Al-Humaid, Sulaiman Alhallaj, Alshaimaa Lemine, O. M. Boudjelal, Mohamed AlKushi, Abdulmohsen Pharmaceutics Article This work reports the fabrication of iron oxide mesoporous magnetic nanostructures (IO-MMNs) via the nano-replication method using acid-prepared mesoporous spheres (APMS) as the rigid silica host and iron (III) nitrate as the iron precursor. The obtained nanosized mesostructures were fully characterized by SEM, TEM, DLS, FTIR, XRD, VSM, and nitrogen physisorption. IO-MMNs exhibited relatively high surface areas and large pore volumes (S(BET) = 70–120 m(2)/g and V(pore) = 0.25–0.45 cm(3)/g), small sizes (~300 nm), good crystallinity and magnetization, and excellent biocompatibility. With their intrinsic porosities, high drug loading efficiencies (up to 70%) were achieved and the drug release rates were found to be pH-dependent. Cytotoxicity, confocal microscopy, and flow cytometry experiments against different types of cancerous cells indicated that Dox-loaded IO-MMNs reduced the viability of metastatic MCF-7 and KAIMRC-1 breast as well as HT-29 colon cancer cells, with the least uptake and toxicity towards normal primary cells (up to 4-fold enhancement). These results strongly suggest the potential use of IO-MMNs as promising agents for enhanced and effective drug delivery in cancer theranostics. MDPI 2021-04-14 /pmc/articles/PMC8071045/ /pubmed/33920033 http://dx.doi.org/10.3390/pharmaceutics13040553 Text en © 2021 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 (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
El-Boubbou, Kheireddine
Ali, Rizwan
Al-Humaid, Sulaiman
Alhallaj, Alshaimaa
Lemine, O. M.
Boudjelal, Mohamed
AlKushi, Abdulmohsen
Iron Oxide Mesoporous Magnetic Nanostructures with High Surface Area for Enhanced and Selective Drug Delivery to Metastatic Cancer Cells
title Iron Oxide Mesoporous Magnetic Nanostructures with High Surface Area for Enhanced and Selective Drug Delivery to Metastatic Cancer Cells
title_full Iron Oxide Mesoporous Magnetic Nanostructures with High Surface Area for Enhanced and Selective Drug Delivery to Metastatic Cancer Cells
title_fullStr Iron Oxide Mesoporous Magnetic Nanostructures with High Surface Area for Enhanced and Selective Drug Delivery to Metastatic Cancer Cells
title_full_unstemmed Iron Oxide Mesoporous Magnetic Nanostructures with High Surface Area for Enhanced and Selective Drug Delivery to Metastatic Cancer Cells
title_short Iron Oxide Mesoporous Magnetic Nanostructures with High Surface Area for Enhanced and Selective Drug Delivery to Metastatic Cancer Cells
title_sort iron oxide mesoporous magnetic nanostructures with high surface area for enhanced and selective drug delivery to metastatic cancer cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8071045/
https://www.ncbi.nlm.nih.gov/pubmed/33920033
http://dx.doi.org/10.3390/pharmaceutics13040553
work_keys_str_mv AT elboubboukheireddine ironoxidemesoporousmagneticnanostructureswithhighsurfaceareaforenhancedandselectivedrugdeliverytometastaticcancercells
AT alirizwan ironoxidemesoporousmagneticnanostructureswithhighsurfaceareaforenhancedandselectivedrugdeliverytometastaticcancercells
AT alhumaidsulaiman ironoxidemesoporousmagneticnanostructureswithhighsurfaceareaforenhancedandselectivedrugdeliverytometastaticcancercells
AT alhallajalshaimaa ironoxidemesoporousmagneticnanostructureswithhighsurfaceareaforenhancedandselectivedrugdeliverytometastaticcancercells
AT lemineom ironoxidemesoporousmagneticnanostructureswithhighsurfaceareaforenhancedandselectivedrugdeliverytometastaticcancercells
AT boudjelalmohamed ironoxidemesoporousmagneticnanostructureswithhighsurfaceareaforenhancedandselectivedrugdeliverytometastaticcancercells
AT alkushiabdulmohsen ironoxidemesoporousmagneticnanostructureswithhighsurfaceareaforenhancedandselectivedrugdeliverytometastaticcancercells