Publication | Closed Access
Facile Synthesis and Intraparticle Self-Catalytic Oxidation of Dextran-Coated Hollow Au–Ag Nanoshell and Its Application for Chemo-Thermotherapy
84
Citations
32
References
2014
Year
Materials ScienceNanomedicineChemical EngineeringNanoparticlesIntraparticle Self-catalytic OxidationEngineeringMetal NanoparticlesNanomaterialsTherapeutic NanomaterialsFacile SynthesisGalvanic Replacement ReactionNano-drug DeliveryCatalysisNanostructure SynthesisChemistrySurface Dextran AlcoholsDextran-coated Ag Nanoparticles
Galvanic replacement reaction is a useful method to prepare various hollow nanostructures. We developed fast and facile preparation of biocompatible and structurally robust hollow Au-Ag nanostructures by using dextran-coated Ag nanoparticles. Oxidation of the surface dextran alcohols was enabled by catalytic activity of the core Au-Ag nanostructure, introducing carbonyl groups that are useful for further bioconjugation. Subsequent doxorubicin (Dox) conjugation via Schiff base formation was achieved, giving high payload of approximately 35 000 Dox per particle. Near-infrared-mediated photothermal conversion showed high efficacy of the Dox-loaded Au-Ag nanoshell as a combinational chemo-thermotherapy to treat cancer cells.
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