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Comparative study of Ag and Au nanoparticles biosensors based on surface plasmon resonance phenomenon

机译:基于表面等离子体共振现象的Ag和Au纳米颗粒生物传感器的比较研究

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The specific sensitivity of surface plasmon resonance to changes in the local environment of nanoparticles allows their use as platforms to probe chemical and biochemical binding events on their surfaces without any labeling [1-4]. In this paper, we perform a comparative study of gold and silver nanoparticle based biosensors, prepared within the same conditions, in order to determine which metal seems the best for biological sensing. The prototypical biocytin-avidin interaction is used to study gradual changes over time and with avidin concentration in the absorption spectra bands of biocytinylated 10 nm silver and gold nanospheres. First, the Ag nanoparticles plasmon resonance absorbance signal is about 10 times larger than the Au one. Secondly, for an equivalent concentration of avidin, the optical property modifications are more pronounced for silver nanoparticles than for gold ones of the same geometry. These observations attest the superiority of Ag on Au nanoparticles when optical considerations are only taken into account. Finally, with both biosensors, the specificity of the interaction, checked by replacing avidin with bovine serum albumin, is relatively poor and needs to be improved.
机译:表面等离振子共振对纳米颗粒局部环境变化的特定敏感性允许其用作平台来探测其表面上的化学和生化结合事件而没有任何标记[1-4]。在本文中,我们对在相同条件下制备的基于金和银纳米粒子的生物传感器进行了比较研究,以确定哪种金属似乎最适合生物传感。典型的生物素-亲和素相互作用用于研究生物素化的10 nm银和金纳米球在吸收光谱带中随着时间的推移以及亲和素浓度的逐渐变化。首先,Ag纳米粒子的等离子体共振吸收信号大约是Au的10倍。其次,对于相同浓度的抗生物素蛋白,与具有相同几何形状的金纳米颗粒相比,银纳米颗粒的光学性质修饰更为明显。当仅考虑光学因素时,这些观察证明了Ag在Au纳米颗粒上的优越性。最后,对于这两种生物传感器,通过用牛血清白蛋白替代抗生物素蛋白检查的相互作用的特异性相对较差,需要改进。

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