DocumentCode :
1529606
Title :
Preparation and Characterization of Iron Oxide–Silica Composite Particles Using Mesoporous SBA-15 Silica as Template and Their Internalization Into Mesenchymal Stem Cell and Human Bone Cell Lines
Author :
Yiu, Humphrey H P ; Maple, Martin J. ; Lees, Martin R. ; Palona, Iryna ; El Haj, Alicia J. ; Dobson, Jon
Author_Institution :
Inst. of Sci. & Technol. in Med., Keele Univ., Stoke-on-Trent, UK
Volume :
9
Issue :
3
fYear :
2010
Firstpage :
165
Lastpage :
170
Abstract :
A new procedure for preparing iron oxide-silica nanocomposite particles using SBA-15 mesoporous silica as a template is described. These composite materials retained the 2-D hexagonal structure of the SBA-15 template. Transmission electron micrograms of the particles depicted the formation of iron oxide nanocrystals inside the mesochannels of SBA-15 silica framework. Powder x-ray diffraction showed that the iron oxide core of the composite particles consists of a mixture of maghemite ( γ-Fe2O3) and heamatite ( α-Fe2O3), which is the predominant component. Superconducting quantum interference device (SQUID) magnetometry studies showed that these iron oxide-silica composite materials exhibit superparamagnetic properties. On increasing the iron oxide content, the composite particles exhibited a stronger response to magnetic fields but a less homogeneous core, with some large iron oxide particles which were thought to be formed outside the mesochannels of the SBA-15 template. Internalization of these particles into human cell lines (mesenchymal stem cells and human bone cells), which indicates their potential in medicine and biotechnology, is also discussed.
Keywords :
SQUID magnetometers; biomedical materials; cellular biophysics; iron compounds; magnetic particles; nanobiotechnology; nanocomposites; nanofabrication; nanoparticles; silicon compounds; superparamagnetism; transmission electron microscopy; 2-D hexagonal structure; Fe2O3-SiO2; SBA-15 mesoporous silica; heamatite; human bone cell lines; iron oxide-silica nanocomposite particles; maghemite; mesenchymal stem cell lines; nanocrystals; powder X-ray diffraction; superconducting quantum interference device magnetometry; superparamagnetic properties; transmission electron micrograms; Internalization; iron oxide; magnetic nanoparticles; mescenchymal stem cells; mesoporous silica; Animals; Cell Line; Cell Survival; Ferric Compounds; Humans; Magnetite Nanoparticles; Mesenchymal Stem Cells; Mice; Microscopy, Electron, Transmission; Nanocomposites; Osteoblasts; Silicon Dioxide; X-Ray Diffraction;
fLanguage :
English
Journal_Title :
NanoBioscience, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1241
Type :
jour
DOI :
10.1109/TNB.2010.2053770
Filename :
5504242
Link To Document :
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