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Nanoplasmonic co-localization for highly sensitive surface plasmon resonance detection of molecular interactions

机译:纳米等离子体共定位用于分子相互作用的高灵敏度表面等离子体共振检测

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Surface plasmon resonance (SPR) has been applied to sensing biomolecular and drug interactions because it allows real-time monitoring and label-free detection. Traditional thin film based SPR biosensing suffers from moderate detection sensitivity. In this research, we investigate sensitivity enhancement by target colocalized SPR using various subwavelength nanostructures. The nanostructures were designed by calculating near-field distribution based on rigorous coupled-wave analysis. Experimentally, angled shadow evaporation was performed to fabricate the nanostructures for target colocalization and measured resonance shifts using angle scanning SPR. The feasibility was tested by measuring DNA hybridization. Experimental results confirm significantly enhanced detection sensitivity over traditional SPR techniques to be feasible. The results are expected to open a new approach to biomolecular detection based on SPR.
机译:表面等离振子共振(SPR)已应用于传感生物分子和药物相互作用,因为它可以进行实时监测和无标记检测。传统的基于薄膜的SPR生物传感具有中等的检测灵敏度。在这项研究中,我们研究了使用各种亚波长纳米结构通过目标共定位SPR增强灵敏度的方法。通过基于严格的耦合波分析计算近场分布来设计纳米结构。实验上,进行角度阴影蒸发以制造用于目标共定位的纳米结构,并使用角度扫描SPR测量共振位移。通过测量DNA杂交测试了可行性。实验结果证实,与传统的SPR技术相比,显着提高检测灵敏度是可行的。预期结果将为基于SPR的生物分子检测开辟新方法。

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