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Controlled surface functionality of magnetic nanoparticles by layer-by-layer assembled nano-films

Authors
Choi, DaheuiSon, BoramPark, Tai HyunHong, Jinkee
Issue Date
21-Apr-2015
Publisher
ROYAL SOC CHEMISTRY
Citation
NANOSCALE, v.7, no.15, pp 6703 - 6711
Pages
9
Journal Title
NANOSCALE
Volume
7
Number
15
Start Page
6703
End Page
6711
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/64687
DOI
10.1039/c4nr07373h
ISSN
2040-3364
2040-3372
Abstract
Over the past several years, the preparation of functionalized nanoparticles has been aggressively pursued in order to develop desired structures, compositions, and structural order. Among the various nanoparticles, iron oxide magnetic nanoparticles (MNPs) have shown great promise because the material generated using these MNPs can be used in a variety of biomedical applications and possible bioactive functionalities. In this study, we report the development of various functionalized MNPs (F-MNPs) generated using the layer-by-layer (LbL) self-assembly method. To provide broad functional opportunities, we fabricated F-MNP bio-toolbox by using three different materials: synthetic polymers, natural polymers, and carbon materials. Each of these F-MNPs displays distinct properties, such as enhanced thickness or unique morphologies. In an effort to explore their biomedical applications, we generated basic fibroblast growth factor (bFGF)-loaded F-MNPs. The bFGF-loaded F-MNPs exhibited different release mechanisms and loading amounts, depending on the film material and composition order. Moreover, bFGF-loaded F-MNPs displayed higher biocompatibility and possessed superior proliferation properties than the bare MNPs and pure bFGF, respectively. We conclude that by simply optimizing the building materials and the nanoparticle's film composition, MNPs exhibiting various bioactive properties can be generated.
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