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Multispectral imaging of a biochip based on surface plasmon resonance and integration of chromophores

机译:基于表面等离振子共振和生色团整合的生物芯片多光谱成像

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摘要

Surface plasmon resonance (SPR) technique is an optical method that allows the real time detection of small changes in the physical properties (in particular the refractive index) of a dielectric medium near a metallic surface. This technique is today applied to the realization of dynamic optical biochips where multiple interactions can be monitored in parallel and in real time. One of the main advantage compared to other techniques as fluorescence detection is that it does not require the presence of labels, which could influence the kinetics or the equilibrium of the biomolecular interactions. However, as the SPR signal amplitude depends on the refractive index shift of the dielectric medium in the contact with the metallic layer, one way to increase the SPR signal shift is to incorporate a substance possessing a strong dispersive refractive index. We present the influence of organic chromophores incorporated in the DNA target molecules on the spectral SPR response of a SPR sensor. Theoretical and experimental results are presented, showing that the DNA target molecules labeled with chromophores presenting strong spectral refractive index variation in the spectral range of the SPR spectrum induce significant spectral SPR response changes. The use of specific chromophores provides a potential way of SPR response enhancement and initial results suggest that this phenomenon can also be used in realtime SPR imaging detection.
机译:表面等离子体共振(SPR)技术是一种光学方法,可以实时检测金属表面附近的介电介质的物理特性(尤其是折射率)的微小变化。今天,该技术被应用于动态光学生物芯片的实现,在该芯片中可以并行和实时地监测多种相互作用。与其他技术相比,荧光检测的主要优点之一是它不需要标记物的存在,而标记物可能会影响生物分子相互作用的动力学或平衡。但是,由于SPR信号振幅取决于与金属层接触的电介质的折射率偏移,因此,增加SPR信号偏移的一种方法是掺入具有强色散折射率的物质。我们介绍了结合在DNA目标分子上的有机发色团对SPR传感器的光谱SPR反应的影响。给出了理论和实验结果,表明用发色团标记的DNA目标分子在SPR光谱的光谱范围内表现出很强的光谱折射率变化,从而引起显着的光谱SPR响应变化。特定发色团的使用提供了增强SPR响应的潜在方法,初步结果表明该现象也可用于实时SPR成像检测。

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