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Mie scattering and surface plasmon based spectroscopy for the detection of nanoparticle-protein interactions

机译:基于Mie散射和基于表面等离激元的光谱学,用于检测纳米粒子与蛋白质的相互作用

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摘要

A spectroscopic study of the kinetic interaction between protein and gold nanoparlicles is presented here. Mie scattering in conjunction with excitation of surface plasmons on the surface of the nanoparticles allows access to kinetic information regarding the interactions. The influence of the geometrical shape and size of the nanoparticles regarding the binding of a protein is investigated. Spherical nanoparticles of 60 and 100 nm diameters as well as ellipsoidal (rod-shaped) particles of dimension 20 by 60 nm for the minor and major axes respectively have been used. By fitting the experimental data with theoretical predictions, the size of (he nanoparticle and the distribution in the sample, the shape, the influence of sedimentation and the necessary kinetic parameters have been determined. Simulations were also carried out to predict the Raman spec-Ira of selected molecules for in-depth analysis of the detailed reactions.
机译:此处介绍了蛋白质和金纳米粒子之间动力学相互作用的光谱研究。米氏散射与纳米颗粒表面上的表面等离子体激元的激发相结合,允许访问有关相互作用的动力学信息。研究了纳米颗粒的几何形状和大小对蛋白质结合的影响。分别使用了直径为60和100 nm的球形纳米颗粒以及短轴和长轴尺寸为20 x 60 nm的椭圆形(棒状)颗粒。通过将实验数据与理论预测值进行拟合,确定了纳米粒子的大小和样品中的分布,形状,沉降的影响以及必要的动力学参数,并进行了模拟以预测拉曼光谱分子的详细分析。

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