纳米壳
光热治疗
材料科学
表面等离子共振
纳米颗粒
纳米技术
等离子体子
纳米结构
赫拉
光热效应
化学工程
光电子学
化学
体外
生物化学
工程类
作者
Kosuke Sugawa,Akito Suzuki,Jotaro Honda,Tomohide Yabuki,Hironobu Tahara,Yutaro Hayakawa,Masato Furuya,Hiroki Ikake,Tsuyoshi Kimura,Yasuhiro Kosuge,Satoshi Kurumi,Tsuyoshi Akiyama,Kouichi Takase,Joe Otsuki
摘要
In this study, a photothermal therapy agent that works efficiently in the second biological transparency window was developed based on the localized surface plasmon (LSP) resonance of symmetry-broken open-shell nanostructures of low-cost Cu (CuOSNs). The strong LSP resonance and superior photothermal conversion ability in the second biological transparency window were achieved by generating the dipolar bonding mode due to the plasmon hybridization between the nanoshell dipole and the nanohole dipole at the opening edge in CuOSNs derived from the symmetry breaking of a Cu nanoshell. Oxidative dissolution of CuOSNs in water was significantly suppressed by successive coating with the self-assembled monolayer of 16-mercaptohexadecanoic acid and a thin silica layer. Furthermore, the stability in phosphate buffered saline, which models the biological environment, was attained by further coating the nanoparticles with polyethylene glycol. It was demonstrated from in vitro cell tests using HeLa cells that the cytotoxicity of CuOSNs was effectively suppressed by the surface protection. The viability of HeLa cells incubated with CuOSNs was decreased under the irradiation of low intensity 1060 nm laser with increasing number of CuOSNs. These results demonstrate that low-cost symmetry-broken Cu-based nanostructures can act as an excellent photothermal therapy agent in the second biological transparency window.
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