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Resonant Photonic Biosensors with Polarization-Based Multiparametric Discrimination in Each Channel

机译:在每个通道中具有基于偏振的多参数区分的谐振光子生物传感器。

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In this paper, we describe guided-mode resonance biochemical sensor technology. We briefly discuss sensor fabrication and show measured binding dynamics for example biomaterials in use in our laboratories. We then turn our attention to a particularly powerful attribute of this technology not possessed by competing methods. This attribute is the facile generation of multiple resonance peaks at an identical physical location on the sensor surface. These peaks respond uniquely to the biomolecular event, thereby enriching the data set available for event quantification. The peaks result from individual, polarization-dependent resonant leaky modes that are the foundation of this technology. Thus, by modeling the binding event and fitting to a rigorous electromagnetic formalism, we can determine individual attributes of the biolayer and its surroundings and avoid a separate reference site for background monitoring. Examples provide dual-polarization quantification of biotin binding to a silane-coated sensor as well as binding of the cancer biomarker protein calreticulin to its monoclonal IgG capture antibody. Finally, we present dual-polarization resonance response for poly (allylamine hydrochloride) binding to the sensor with corresponding results of backfitting to a simple model; this differentiates the contributions from biolayer adhesion and background changes.
机译:在本文中,我们描述了引导模式共振生化传感器技术。我们简要讨论了传感器的制造,并显示了在我们实验室中使用的测量的结合动力学,例如生物材料。然后,我们将注意力转向竞争技术所没有的这项技术的特别强大的属性。该属性是在传感器表面上相同物理位置处容易生成多个共振峰。这些峰对生物分子事件具有独特的响应,从而丰富了可用于事件定量的数据集。峰值是由独立的,偏振相关的共振泄漏模式产生的,这是该技术的基础。因此,通过对绑定事件进行建模并适合严格的电磁形式,我们可以确定生物层及其周围环境的各个属性,并避免进行背景监测的单独参考站点。实施例提供了生物素与硅烷涂层传感器结合的双极化定量,以及癌症生物标记蛋白钙网蛋白与其单克隆IgG捕获抗体的结合。最后,我们提出了聚(烯丙胺盐酸盐)与传感器结合的双极化共振响应,以及对简单模型进行反拟合的相应结果;这区别于生物层粘附和背景变化的贡献。

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