首页> 外文期刊>Journal of Immunological Methods >Label-free monitoring of antibody-antigen interactions using optical microchip biosensors.
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Label-free monitoring of antibody-antigen interactions using optical microchip biosensors.

机译:使用光学微芯片生物传感器的抗体-抗原相互作用的无标记监测。

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摘要

A rapid, label-free optical biosensor system for sensitive monitoring of bio-molecular interactions in real-time is presented. SpectroSens sensor chips are based on integrated planar Bragg gratings sensitive to localised changes in refractive index. Bio-molecule recognition is imparted by functionalisation of the sensing surface with antibodies against targets of interest. In this study, antibodies against selected proteins were oriented with recombinant Protein A/G, which was covalently immobilised to the sensor chip via amine coupling to a glutaraldehyde-activated silane layer. Immunoassays for the detection of rabbit IgG and ovalbumin proteins as model antibody-antigen interaction systems were performed. Binding of complementary antigens to respective antibody-functionalised sensors manifested as changes in wavelength of light reflected from the optical sensors. Quantitative binding kinetics with detection sensitivities in the mid ng/ml range were obtained for both antigens using this planar, two-dimensional surface coating. Data presented demonstrate the suitability of SpectroSens sensors as a valuable tool in life science research and development for monitoring bio-specific interactions, protein concentration determination and antibody selection; the optical integration and analytical characteristics of these sensors suggest that they may find numerous applications in bio-pharmaceutical development and clinical diagnostics.
机译:提出了一种快速,无标签的光学生物传感器系统,用于实时灵敏地监测生物分子相互作用。 SpectroSens传感器芯片基于对折射率局部变化敏感的集成平面布拉格光栅。生物分子识别是通过用针对目标靶标的抗体对传感表面进行功能化来实现的。在这项研究中,针对选定蛋白的抗体以重组蛋白A / G进行定位,该蛋白通过与戊二醛活化的硅烷层偶联的胺共价固定在传感器芯片上。进行了用于检测兔IgG和卵清蛋白蛋白作为模型抗体-抗原相互作用系统的免疫分析。互补抗原与各自的抗体功能化传感器的结合表现为从光学传感器反射的光的波长变化。使用这种平面的二维表面涂层,获得了两种抗原的定量结合动力学,检测灵敏度在ng / ml左右。所提供的数据表明,SpectroSens传感器适合作为生命科学研究中用于监测生物特异性相互作用,蛋白质浓度测定和抗体选择的有价值的工具;这些传感器的光学集成和分析特性表明,它们可能在生物药物开发和临床诊断中找到许多应用。

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