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Recent biomedical applications of gold nanoparticles: A review

Elahi, Narges ; Kamali, Mehdi ; Baghersad, Mohammad Hadi

Talanta (Oxford), 2018-07, Vol.184, p.537-556 [Periódico revisado por pares]

Netherlands: Elsevier B.V

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  • Título:
    Recent biomedical applications of gold nanoparticles: A review
  • Autor: Elahi, Narges ; Kamali, Mehdi ; Baghersad, Mohammad Hadi
  • Assuntos: Biomedical applications ; Biosensor ; Gold nanoparticles ; Gold nanorods ; Properties ; Synthesis
  • É parte de: Talanta (Oxford), 2018-07, Vol.184, p.537-556
  • Notas: ObjectType-Article-2
    SourceType-Scholarly Journals-1
    ObjectType-Feature-3
    content type line 23
    ObjectType-Review-1
  • Descrição: Recent advances in nanotechnology are as a result of the development of engineered nanoparticles. Efficiently, metallic nanoparticles have been widely exploited for biomedical application and among them, gold nanoparticles (AuNPs) are highly remarkable. Consequent upon their significant nature, spherical and gold nanorods (Au NRs) nanoparticles attract extreme attention. Their intrinsic features such as optical, electronic, physicochemical and, surface plasmon resonance (SPR); which can be altered by changing the characterizations of particles such as shape, size, aspect ratio, or environment; ease of synthesis and functionalization properties have resulted to various applications in different fields of biomedicine such as sensing, targeted drug delivery, imaging, photothermal and photodynamic therapy as well as the modulation of two or three applications. This article reviewed the popular AuNPs synthesis methods and mentioned their established applications in various demands, especially in biological sensing. [Display omitted] •Gold nanoparticles exhibit unique intrinsic properties.•Au NRs have attracted many interests because they possess certain specific features.•Different controllable particles shapes and sizes of AuNPs have been synthesized by chemical, physical and biological methods.•Various biomedical applications could be done by applying the physicochemical properties of AuNPs.
  • Editor: Netherlands: Elsevier B.V
  • Idioma: Inglês

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