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Optical heterodyne surface plasmon resonance biosensor

机译:光学外差表面等离子体共振生物传感器

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摘要

A novel optical heterodyne surface plasmon resonance (SPR) biosensor using Zeeman laser is proposed. There are two surface plasma waves (SPWs) being excited by two correlated P polarized waves in an SPR device of Kretschmann configuration. The two reflected P waves are optically heterodyned so that the magnitude of the heterodyned signal is proportional to the multiplication of two attenuated reflected P waves. Then the detection sensitivity and the dynamical range based on this amplitude sensitive method are enhanced. In the experiment, the kinetics between mouse IgG and anti-mouse IgG is obtained according to the sensograms of different concentrations of anti-mouse IgG. The detection sensitivity corresponding to 0.2 nM is achieved. In addition, a concentration of 5 ng/ml of protein G interacting with mouse IgG is measured successfully.
机译:提出了使用Zeeman激光的新型光学外差表面等离子体共振(SPR)生物传感器。在KROTSchmann配置的SPR装置中,有两个表面等离子体波(SPW)被激发在克雷克曼配置的SPR装置中。两个反射的P波是光学的,使得异累不差信号的大小与两个减毒的反射P波的乘法成比例。然后,增强了基于该幅度敏感方法的检测灵敏度和动态范围。在实验中,根据不同浓度的抗小鼠IgG的敏感图获得小鼠IgG和抗小鼠IgG之间的动力学。实现了对应于0.2nm的检测灵敏度。另外,成功地测量与小鼠IgG相互作用的5 ng / ml蛋白G的浓度。

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