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Optimization of gold nanostructers for laser killing of cancer cells

机译:金纳米结构的激光杀死癌细胞的优化。

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Recently, the first applications of gold nanoshells (Halas and co-workers, 2003), nanospheres and nanosphere clusters (Anderson and co-workers, 2003; Zharov and co-workers, 2003) to the cancer cell diagnostics and laser killing of cancer cells (LKCC) have been reported. However, to be clinically relevant, existing technologies must overcome fundamental problems related with limitations of current understanding the relationship between the nanoparticle/cluster parameters (size, shape, particle/cluster structure, etc.) and the efficiency of LKCC therapy, as well as with limitations of the available methods for synthesis and in situ characterization of new advanced nanoparticles and clusters with unique synergistic properties which are crucial for selective LKCC therapy. Here we report on preliminary simulation results aimed at finding the optimal cluster structures for maximal absorption efficiency of laser radiation. We consider also alternative possibilities related with using gold nanorods and nanoshells instead of spherical particles. Two types of nanostructures are studied: (1) bioconjugates of single nanoparticles (spheres, nanoshells, and nanorods); (2); linear chains, 2D lattice arrays, and 3D clusters of gold spheres or conjugates that mimic aggregation of nanoparticles on or within cancer cells. By using the generalized multiparticle Mie solution and different versions of the cluster T-matrix method, we calculated the absorption efficiency of nanostructures under study. The gold nanoshells and nanorods with tunable spectral resonances are shown to be more effective photothermal labels as compared to usual solid gold spheres. In the case of 1D-3D clusters, the interparticle separations and short linear chain fragments are the main structural parameters determining the absorption efficiency.
机译:最近,金纳米壳(Halas和同事,2003年),纳米球和纳米球团簇(Anderson和同事,2003年; Zharov和同事,2003年)首次应用于癌细胞诊断和激光杀死癌细胞(LKCC)的报道。然而,要具有临床相关性,现有技术必须克服与当前了解纳米颗粒/团簇参数(尺寸,形状,颗粒/团簇结构等)与LKCC治疗效率之间的关系的局限性相关的基本问题。受限于可用的合成方法和具有独特协同特性的新型先进纳米粒子和团簇的原位表征,这对于选择性LKCC治疗至关重要。在这里,我们报告了初步的模拟结果,旨在找到最佳的团簇结构,以获得最大的激光辐射吸收效率。我们还考虑了与使用金纳米棒和纳米壳代替球形颗粒有关的替代可能性。研究了两种类型的纳米结构:(1)单个纳米颗粒的生物结合物(球形,纳米壳和纳米棒); (2);线性链,2D晶格阵列和金球或共轭物的3D簇,它们模拟癌细胞上或细胞内纳米粒子的聚集。通过使用广义的多粒子Mie解和簇T矩阵方法的不同版本,我们计算了所研究的纳米结构的吸收效率。与通常的固态金球相比,具有可调光谱共振的金纳米壳和纳米棒被证明是更有效的光热标记。在1D-3D团簇的情况下,颗粒间的分离和短线性链片段是决定吸收效率的主要结构参数。

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