Nanotoxicology and nanoparticle safety in biomedical designs
Нанотоксикология и безопасность наночастиц в биомедицинских разработках
2011-05-01
SCID: 54.1/apc8grrj
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biocompatible coatingsbiodegradable nanoparticlesnanoparticle safetynanoparticle toxicitynanotoxicology
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Abstract (AI)
Nanotechnology has wide applications in many fields, especially in the biological sciences and medicine. Nanomaterials are applied as coating materials or in treatment and diagnosis. Nanoparticles such as titania, zirconia, silver, diamonds, iron oxides, carbon nanotubes, and biodegradable polymers have been studied in diagnosis and treatment. Many of these nanoparticles may have toxic effects on cells. Many factors such as size, inherent properties, and surface chemistry may cause nanoparticle toxicity. There are methods for improving the performance and reducing toxicity of nanoparticles in medical design, such as biocompatible coating materials or biodegradable/biocompatible nanoparticles. Most metal oxide nanoparticles show toxic effects, but no toxic effects have been observed with biocompatible coatings. Biodegradable nanoparticles are also used in the efficient design of medical materials, which will be reviewed in this article.
Key Findings
1
Biocompatible coatings and biodegradable or biocompatible nanoparticle formulations are identified as strategies to improve biomedical performance while reducing toxicity.
2
Biodegradable nanoparticles support the design of more efficient and potentially safer medical materials.
3
Most metal oxide nanoparticles exhibit toxic effects, whereas biocompatible coatings have not shown observed toxicity in the reviewed applications.
4
Nanoparticle toxicity to cells is influenced by particle size, intrinsic material properties, and surface chemistry.
5
Nanoparticles are widely investigated for biomedical diagnosis, treatment, and coating applications, including titania, zirconia, silver, diamond, iron oxide, carbon nanotube, and polymer-based materials.
Research Object
Nanoparticles and nanomaterials used in biomedical diagnosis, treatment, and medical-material design
Research Subject
Nanoparticle toxicity and strategies for improving biomedical safety through size, inherent properties, surface chemistry, biocompatible coatings, and biodegradability
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2011-05-01
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