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A compact imaging spectroscopic system for biomolecular detections on plasmonic chips

机译:用于等离子体芯片上生物分子检测的紧凑型成像光谱系统

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摘要

In this study, we demonstrate a compact imaging spectroscopic system for high-throughput detection of biomolecular interactions on plasmonic chips, based on a curved grating as the key element of light diffraction and light focusing. Both the curved grating and the plasmonic chips are fabricated on flexible plastic substrates using a gas-assisted thermal-embossing method. A fiber-coupled broadband light source and a camera are included in the system. Spectral resolution within 1 nm is achieved in sensing environmental index solutions and protein bindings. The detected sensitivities of the plasmonic chip are comparable with a commercial spectrometer. An extra one-dimensional scanning stage enables high-throughput detection of protein binding on a designed plasmonic chip consisting of several nanoslit arrays with different periods. The detected resonance wavelengths match well with the grating equation under an air environment. Wavelength shifts between 1 and 9 nm are detected for antigens of various concentrations binding with antibodies. A simple, mass-productive and cost-effective method has been demonstrated on the imaging spectroscopic system for real-time, label-free, highly sensitive and high-throughput screening of biomolecular interactions.
机译:在这项研究中,我们演示了一个紧凑的成像光谱系统,该系统可用于高通量检测等离激元芯片上的生物分子相互作用,该系统基于曲面光栅作为光衍射和聚焦的关键要素。弯曲光栅和等离激元芯片都使用气体辅助热压印方法在柔性塑料基板上制造。系统中包括一个光纤耦合宽带光源和一个摄像头。通过感测环境指数溶液和蛋白质结合,可实现1 nm内的光谱分辨率。等离子体芯片的检测灵敏度与市售光谱仪相当。额外的一维扫描阶段可在设计的等离激元芯片上以高通量检测蛋白质结合,该等离激元芯片由多个具有不同周期的纳米狭缝阵列组成。在空气环境下,检测到的共振波长与光栅方程非常吻合。检测与抗体结合的各种浓度的抗原在1至9 nm之间的波长变化。已经在成像光谱系统上证明了一种简单,可大量生产且具有成本效益的方法,用于实时,无标签,高灵敏度和高通量的生物分子相互作用筛选。

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