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Array of disordered silicon nanowires coated by a gold film for combined NIR photothermal treatment of cancer cells and Raman monitoring of the process evolution

机译:由金膜涂覆的无序硅纳米线阵列,用于组合癌细胞的NIR光热处理和改变过程演进的拉曼监测

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摘要

Photothermal therapy (PTT) assisted by nanomaterials is a promising minimally invasive technique for cancer treatment. Here, we explore the PTT properties of a silicon- and gold-based nanostructured platform suitable for being directly integrated in fibre laser systems rather than injected into the human body, which occurs for the most commonly unreported PTT nanoagents. In particular, the photothermal properties of an array of disordered silicon nanowires coated by a thin gold film (Au/SiNWs) were tested on a monolayer of human colon adenocarcinoma cells (Caco-2) irradiated with a 785 nm laser. Au/SiNWs allowed an efficient photothermal action and simultaneous monitoring of the process evolution through the Raman signal coming from the irradiated cellular zone. Strong near infra-red (NIR) absorption, overlapping three biological windows, cell-friendly properties and effective fabrication technology make Au/SiNWs suitable both to be integrated in surgical laser tools and as an in vitro platform to develop novel PTT protocols using different cancer types and NIR sources.
机译:纳米材料辅助的光热疗(PTT)是癌症治疗的最微创技术。在此,我们探讨适用于直接集成在光纤激光系统中的硅和金的纳米结构平台的PTT性质,而不是注入人体,这是最常见的PTT纳米片。尤其是,由薄的金薄膜(金/硅纳米线)涂覆的无序的硅纳米线的阵列的光热特性对人结肠腺癌细胞的单层测试(的Caco-2)照射785nm的激光。 Au / Sinws允许有效的光热动作,并通过来自辐照细胞区的拉曼信号同时监测过程演变。靠近红外线(NIR)吸收,重叠三种生物窗,细胞友好的特性和有效的制造技术使AU / SINWS适用于使用不同癌症开发新型PTT协议的体外平台。使用不同癌症类型和NIR来源。

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