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Photonic Crystal Surfaces as a General Purpose Platform for Label-Free and Fluorescent Assays

机译:光子晶体表面作为无标记和荧光分析的通用平台

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摘要

Photonic crystal (PC) surfaces can be designed to provide a wide range of functions that are used to perform biochemical and cell-based assays. Detection of the optical resonant reflections from PC surfaces enables high sensitivity label-free biosensing, whereas the enhanced electromagnetic (EM) fields that occur at resonant wavelengths can be used to enhance the detection sensitivity of any surface-based fluorescence assay. Fabrication of PCs from inexpensive plastic materials over large surface areas enables them to be incorporated into standard formats that include microplates, microarrays, and microfluidic channels. This report reviews the design of PC biosensors, their associated detection instrumentation, and biological applications. Applications including high-throughput screening of small molecules, cell membrane integrin activation, gene expression analysis, and protein biomarker detection are highlighted. Recent results in which PC surfaces are used for enhancing the detection of surface-enhanced Raman spectroscopy, and the development of high-resolution PC-based laser biosensors are also described.
机译:可以设计光子晶体(PC)表面以提供广泛的功能,这些功能可用于执行生化和基于细胞的测定。检测来自PC表面的光学共振反射可实现高灵敏度的无标记生物传感,而在共振波长处出现的增强的电磁(EM)场可用于增强任何基于表面的荧光测定的检测灵敏度。用廉价的塑料材料在较大的表面积上制造PC,可以将它们纳入包括微孔板,微阵列和微流体通道的标准格式。本报告回顾了PC生物传感器的设计,其相关的检测仪器以及生物学应用。应用领域包括小分子的高通量筛选,细胞膜整联蛋白激活,基因表达分析和蛋白质生物标志物检测。还描述了PC表面用于增强表面增强拉曼光谱检测的最新结果,以及基于PC的高分辨率激光生物传感器的开发。

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