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A laser scanning confocal imaging-surface plasmon resonance system application in real time detection of antibody-antigen interaction

机译:激光扫描共聚焦成像-表面等离子体共振系统在抗体-抗原相互作用实时检测中的应用

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The laser scanning confocal microscope (LSCM) offers several advantages over conventional optical microscopy, but most LSCM work is qualitative analysis and it is very hard to achieve quantitative detection directly with the changing of the fluorescent intensity. A new real time sensor system for the antibody-antigen interaction detection was built integrating with a LSCM and a wavelength-dependent surface plasmon resonance (SPR) sensor. The system was applied to detect the bonding process of human IgG and fluorescent-labeled affinity purified antibody in real time. The fluorescence images changing is well with that of SPR wavelengths in real time, and the trend of the resonance wavelength shift with the concentrations of antibody is similar to that of the fluorescent intensity changing. The results show that SPR makes up the short of quantificational analysis with LSCM with the high spatial resolution. The sensor system shows the merits of the of the LSCM and SPR synergetic application, which are of great importance for practical application in biosensor and life science for interesting local interaction.
机译:激光扫描共聚焦显微镜(LSCM)与传统的光学显微镜相比具有许多优势,但是大多数LSCM的工作是定性分析,并且很难直接通过荧光强度的变化来实现定量检测。构建了用于抗体-抗原相互作用检测的新实时传感器系统,该系统集成了LSCM和依赖于波长的表面等离振子共振(SPR)传感器。该系统用于实时检测人IgG和荧光标记的亲和纯化抗体的结合过程。荧光图像随SPR波长的变化实时变化良好,共振波长随抗体浓度的变化趋势与荧光强度变化相似。结果表明,SPR弥补了LSCM具有较高空间分辨率的定量分析的不足。该传感器系统显示了LSCM和SPR协同应用的优点,这对于生物传感器和生命科学的实际应用中引起有趣的局部交互作用非常重要。

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