Magnetic Nanoparticles: Surface Effects and Properties Related to Biomedicine Applications
Магнитные наночастицы: поверхностные эффекты и свойства, связанные с применением в биомедицине
2013-10-25
SCID: 54.1/ny6x6rgf
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biomedicine applicationsferrite nanoparticlesmagnetic nanoparticlesmagnetic resonance imaging contrast agentssurface effects
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Abstract (AI)
Due to finite size effects, such as the high surface-to-volume ratio and different crystal structures, magnetic nanoparticles are found to exhibit interesting and considerably different magnetic properties than those found in their corresponding bulk materials. These nanoparticles can be synthesized in several ways (e.g., chemical and physical) with controllable sizes enabling their comparison to biological organisms from cells (10-100 μm), viruses, genes, down to proteins (3-50 nm). The optimization of the nanoparticles' size, size distribution, agglomeration, coating, and shapes along with their unique magnetic properties prompted the application of nanoparticles of this type in diverse fields. Biomedicine is one of these fields where intensive research is currently being conducted. In this review, we will discuss the magnetic properties of nanoparticles which are directly related to their applications in biomedicine. We will focus mainly on surface effects and ferrite nanoparticles, and on one diagnostic application of magnetic nanoparticles as magnetic resonance imaging contrast agents.
Key Findings
1
Biomedical performance depends on optimizing nanoparticle size, size distribution, agglomeration, surface coating, and shape alongside magnetic properties.
2
Chemical and physical synthesis methods enable control over nanoparticle sizes spanning dimensions comparable to cells, viruses, genes, and proteins.
3
Magnetic nanoparticles are used as magnetic resonance imaging contrast agents, representing a key diagnostic biomedical application.
4
Magnetic nanoparticles exhibit substantially different magnetic properties from bulk materials because of finite-size effects, high surface-to-volume ratios, and altered crystal structures.
5
Surface effects and ferrite nanoparticle properties are central considerations for understanding biomedical applications.
Research Object
Magnetic nanoparticles (particularly ferrite nanoparticles) used for biomedical applications
Research Subject
surface effects and magnetic properties related to biomedical applications, including use as magnetic resonance imaging contrast agents
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2013-10-25
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