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A Complete Optical Sensor System Based on a POF-SPR Platform and a Thermo-Stabilized Flow Cell for Biochemical Applications

机译:基于POF-SPR平台和热稳定流通池的完整光学传感器系统用于生化应用

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摘要

An optical sensor platform based on surface plasmon resonance (SPR) in a plastic optical fiber (POF) integrated into a thermo-stabilized flow cell for biochemical sensing applications is proposed. This device has been realized and experimentally tested by using a classic receptor-analyte assay. For this purpose, the gold surface of the POF was chemically modified through the formation of a self-assembling monolayer. The surface robustness of the POF-SPR platform has been tested for the first time thanks to the flow cell. The experimental results show that the proposed device can be successfully used for label-free biochemical sensing. The final goal of this work is to achieve a complete, small-size, simple to use and low cost optical sensor system. The whole system with the flow cell and the optical sensor are extensively described, together with the experimental results obtained with an immunoglobulin G (IgG)/anti-IgG assay.
机译:提出了一种基于表面等离子体激元共振(SPR)的光学传感器平台,该表面在塑料光纤(POF)中集成到用于热化学传感应用的热稳定流通池中。通过使用经典的受体分析物测定,已经实现了该装置并进行了实验测试。为此,通过形成自组装单层对POF的金表面进行了化学修饰。借助流通池,首次对POF-SPR平台的表面坚固性进行了测试。实验结果表明,该装置可成功用于无标记生化传感。这项工作的最终目标是实现一个完整,小型,易于使用和低成本的光学传感器系统。详细介绍了带有流通池和光学传感器的整个系统,以及通过免疫球蛋白G(IgG)/抗IgG分析获得的实验结果。

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