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Label-free detection of proteins using a terahertz chemical microscopy

机译:使用Terahertz化学显微镜无标记检测蛋白质

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A terahertz chemical microscopy (TCM) has been proposed and developed to visualize the distribution of chemical reactions such as antigen-antibody reaction on the sensing plate without any labels on the analyte. The TCM utilize the semiconductor-based device named a sensing plate. The sensing plate can convert the shift of the chemical potential in the magnitude on the surface of sensing plate into the amplitude of generated terahertz (THz) in the sensing plate. Thus, it enables to get images of the potential distribution on the surface of the sensing plate as the distribution of THz amplitude. Here, we demonstrate the detection of the immune reactions between the mouse immunoglobulin G (IgG) and the anti-mouse immunoglobulin G (anti-IgG). IgG was immobilized on the sensing plate and reacted with anti-IgG in the solutions with various concentrations. We also fabricated the sample wells on the sensing plate and quantitative evaluation of immune reactions were demonstrated with the anti-IgG concentration of between 5 nM and 100 nM. As a result, the change in the THz amplitude during the reaction showed the proportional relation with the concentration of reacted anti-IgG.
机译:已经提出并开发了一种Terahertz化学显微镜(TCM),以使化学反应的分布在感测板上的抗原 - 抗体反应中的分布,而没有分析物上的任何标记。 TCM利用基于半导体的装置命名为传感板。感测板可以将化学电位的偏移转换为感测板的表面上的大小进入传感板中产生的太赫兹(THz)的幅度。因此,它使得能够将传感板表面上的电位分布的图像作为THz幅度的分布获取。在这里,我们证明了小鼠免疫球蛋白G(IgG)和抗小鼠免疫球蛋白G(抗IgG)之间的免疫反应的检测。将IgG固定在传感板上,并在具有各种浓度的溶液中与抗IgG反应。我们还在传感板上制造了样品孔,并在5nm和100nm之间的抗IgG浓度证明了免疫反应的定量评估。结果,反应期间的THz振幅的变化显示与反应的抗IgG的浓度的比例关系。

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