Multifunctional Magnetic-fluorescent Nanocomposites for Biomedical Applications
Многофункциональные магнитно-флуоресцентные нанокомпозиты для биомедицинских применений
2008-03-01
SCID: 54.1/qtd9uu3p
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biological imagingmagnetic bioseparationmagnetic nanoparticlesmagnetic-fluorescent nanocompositesquantum dots
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Abstract (AI)
Abstract Nanotechnology is a fast-growing area, involving the fabrication and use of nano-sized materials and devices. Various nanocomposite materials play a number of important roles in modern science and technology. Magnetic and fluorescent inorganic nanoparticles are of particular importance due to their broad range of potential applications. It is expected that the combination of magnetic and fluorescent properties in one nanocomposite would enable the engineering of unique multifunctional nanoscale devices, which could be manipulated using external magnetic fields. The aim of this review is to present an overview of bimodal “two-in-one” magnetic-fluorescent nanocomposite materials which combine both magnetic and fluorescent properties in one entity, in particular those with potential applications in biotechnology and nanomedicine. There is a great necessity for the development of these multifunctional nanocomposites, but there are some difficulties and challenges to overcome in their fabrication such as quenching of the fluorescent entity by the magnetic core. Fluorescent-magnetic nanocomposites include a variety of materials including silica-based, dye-functionalised magnetic nanoparticles and quantum dots-magnetic nanoparticle composites. The classification and main synthesis strategies, along with approaches for the fabrication of fluorescent-magnetic nanocomposites, are considered. The current and potential biomedical uses, including biological imaging, cell tracking, magnetic bioseparation, nanomedicine and bio- and chemo-sensoring, of magnetic-fluorescent nanocomposites are also discussed.
Key Findings
1
A major fabrication challenge is fluorescence quenching caused by interactions with the magnetic core.
2
Combining magnetic and fluorescent properties enables potential applications in biological imaging, cell tracking, magnetic bioseparation, nanomedicine, and biosensing or chemosensing.
3
It summarizes major synthesis strategies and fabrication approaches for bimodal magnetic-fluorescent nanocomposites.
4
Magnetic-fluorescent nanocomposites integrate magnetic manipulation and fluorescence within single multifunctional nanoscale entities.
5
The review classifies silica-based, dye-functionalized magnetic nanoparticles and quantum-dot–magnetic nanoparticle composites.
Research Object
Bimodal magnetic-fluorescent nanocomposite materials combining magnetic and fluorescent properties
Research Subject
Their classification, fabrication and synthesis strategies, challenges, and potential biomedical applications
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2008-03-01
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