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Gold Nanoparticle Coated Carbon Nanotube Ring with Enhanced Raman Scattering and Photothermal Conversion Property for Theranostic Applications

机译:金纳米粒子包覆的碳纳米管环具有增强的拉曼散射和光热转换性能可用于治疗学应用

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摘要

We report a new type of carbon nanotube ring (CNTR) coated with gold nanoparticles (CNTR@AuNPs) using CNTR as a template and surface attached redox-active polymer as a reducing agent. This nanostructure of CNTR bundle embedded in the gap of closely attached AuNPs can play multiple roles as a Raman probe to detect cancer cells and a photoacoustic (PA) contrast agent for imaging-guided cancer therapy. The CNTR@AuNP exhibits substantially higher Raman and optical signals than CNTR coated with a complete Au shell (CNTR@ AuNS) and straight CNT@AuNP. The extinction intensity of CNTR@AuNP is about 120-fold higher than that of CNTR at 808 nm, and the surface enhanced Raman scattering (SERS) signal of CNTR@AuNP is about 110 times stronger than that of CNTR, presumably due to the combined effects of enhanced coupling between the embedded CNTR and the plasmon mode of the closely attached AuNPs, and the strong electromagnetic field in the cavity of the AuNP shell originated from the intercoupling of AuNPs. The greatly enhanced PA signal and photothermal conversion property of CNTR@AuNP were successfully employed for imaging and imaging-guided cancer therapy in two tumor xenograft models. Experimental observations were further supported by numerical simulations and perturbation theory analysis.
机译:我们报告了一种新型的碳纳米管环(CNTR),该涂层用金纳米颗粒(CNTR @ AuNPs)涂覆,使用CNTR作为模板,表面附着的氧化还原活性聚合物作为还原剂。嵌入紧密附着的AuNPs间隙中的CNTR束的这种纳米结构可以充当拉曼探针以检测癌细胞和用于成像引导的癌症治疗的光声(PA)造影剂发挥多种作用。 CNTR @ AuNP的拉曼光谱和光信号比涂有完整Au壳(CNTR @ AuNS)和直的CNT @ AuNP的CNTR显着更高。 CNTR @ AuNP的消光强度比CNTR在808 nm处的消光强度高约120倍,CNTR @ AuNP的表面增强拉曼散射(SERS)信号比CNTR强110倍,这可能是由于内嵌CNTR与紧密结合的AuNPs的等离激元模式之间增强的耦合作用,以及AuNP壳互腔中产生的AuNP壳腔中的强电磁场。 CNTR @ AuNP的大大增强的PA信号和光热转换性能已成功用于两种肿瘤异种移植模型的成像和成像指导的癌症治疗。数值模拟和微扰理论分析进一步支持了实验观察。

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