Cerium oxide nanoparticles: properties, biosynthesis and biomedical application
Наночастицы оксида церия: свойства, биосинтез и применение в биомедицине
2020-01-01
SCID: 54.1/9wb2en7t
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anticancer agentsbiocompatibilitybiomedical applicationscerium oxide nanoparticlesnanoparticle biosynthesis
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Abstract (AI)
Synthesis of these nanoparticles can be performed very easily by utilizing chemical or biological methods. But in this review, the focus is laid on the biosynthesis of these nanoparticles; as the biosynthesis method makes the cerium oxide nanoparticle less toxic and compatible with the living tissues, which helps them to find their path as an anticancer, anti-inflammatory and antibacterial agents. The pre-existing reviews have only focused on details relating to properties/applications/synthesis; whereas this review draws attention towards all the aspects in single review covering all the details in depth such as biosynthesis methods and its effect on the living tissues, along with properties, biomedical applications (diagnostic and therapeutic) and future outlook of the cerium oxide nanoparticle.
Key Findings
1
Biosynthesis is presented as reducing nanoparticle toxicity and improving compatibility with living tissues.
2
Cerium oxide nanoparticles can be synthesized through chemical or biological methods, with this review emphasizing biosynthesis.
3
Cerium oxide nanoparticles show potential as anticancer, anti-inflammatory, and antibacterial agents.
4
The article addresses a gap in prior reviews by combining these aspects in a single comprehensive treatment.
5
The review integrates biosynthesis methods, effects on living tissues, nanoparticle properties, diagnostic and therapeutic applications, and future prospects.
Research Object
cerium oxide nanoparticles
Research Subject
their biosynthesis, properties, effects on living tissues, and diagnostic and therapeutic biomedical applications
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2020-01-01
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