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Analysis of biosensors by chemically specific optical techniques. Chemiluminescence-imaging and infrared spectroscopic mapping ellipsometry

机译:通过化学特有的光学技术分析生物传感器。化学发光成像和红外光谱椭偏仪

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摘要

The standard methods currently used to read out microarrays are fluorescent and chemiluminesent imaging techniques. These methods require labeling of a component with a marker and, usually, only the concentration of the marker molecule is detected. A label-free imaging method that also enables quantitative spectroscopic analysis of the composition and component interaction would be of great advantage. In this article it is shown for the first time that IR mapping ellipsometry enables label-free imaging of a biochip before and after incubation with peptide solution. The measurements prove that IR ellipsometry is a sensitive tool for laterally resolved identification of the different materials and determination of the composition of a biochip. The lateral resolution required was achieved by using radiation from an infrared synchrotron beamline.
机译:当前用于读出微阵列的标准方法是荧光和化学发光成像技术。这些方法需要用标记物标记组分,并且通常仅检测标记物分子的浓度。一种无标记的成像方法也将具有极大的优势,该方法还可以对组成和成分之间的相互作用进行定量光谱分析。在本文中,首次显示了红外测绘椭偏仪可在与肽溶液孵育之前和之后对生物芯片进行无标记成像。测量结果证明,红外椭圆偏振法是用于横向分辨不同材料并确定生物芯片成分的灵敏工具。通过使用来自红外同步加速器光束线的辐射来实现所需的横向分辨率。

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