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A self-referencing biosensor based upon a dual-mode external cavity laser

机译:基于双模外腔激光器的自参考生物传感器

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摘要

To improve the ability of an external cavity laser (ECL) biosensor to more easily distinguish true signals caused by biomolecular binding from a variety of sources of background noise, two photonic crystal (PC) resonant reflectors were incorporated into a single flow cell, with one of the PCs performing the detection function and the other one serving as a reference sensor. The ECL-based sensor system simultaneously emits at two distinct wavelengths corresponding to two different longitudinal cavity modes selected by the sensing and reference PC reflectors. The surface of the sensing PC filter was functionalized by a biomolecule recognition layer and exhibited narrowband reflection with the peak reflection wavelength at 856 nm. The reference PC was untreated and had the peak reflection wavelength at 859 nm. The PCs were bond to the upper and lower surfaces of a thin chamber frame, forming a flow cell. Utilizing the reference external cavity mode, the dual-mode ECL sensor system eliminated common-mode noise sources, including thermal drift, refractive index variations of the analyte solution, and nonspecific biomolecule binding.
机译:为了提高外腔激光(ECL)生物传感器从各种背景噪声源中更容易地区分由生物分子结合引起的真实信号的能力,将两个光子晶体(PC)共振反射器集成到单个流通池中,其中一个其中一台PC执行检测功能,另一台PC作为参考传感器。基于ECL的传感器系统同时发出两个不同的波长,分别对应于由传感PC反射器和参考PC反射器选择的两个不同的纵向腔模式。传感PC滤光片的表面被生物分子识别层功能化,并呈现出窄带反射,其峰值反射波长为856nm。未处理的参考PC的峰值反射波长为859nm。将PC粘结到薄腔室框架的上表面和下表面,形成流通​​池。利用参考外腔模式,双模式ECL传感器系统消除了共模噪声源,包括热漂移,分析物溶液的折射率变化和非特异性生物分子结合。

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