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Hierarchic Interfacial Nanocube Assembly for Sensitive, Selective, and Quantitative DNA Detection with Surface-Enhanced Raman Scattering

机译:具有表面增强拉曼散射的敏感,选择性和定量DNA检测的层次界面纳米轴序列组件

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摘要

Surface-enhanced Raman scattering (SERS)-based sensing is promising in that it has potential to allow for highly sensitive, selective, and multiplexed detection and imaging. However, the controlled assembly and gap formation between plasmonic particles for generating strong SERS signals in a quantitative manner is highly challenging, especially on biodetection platforms, and particle-to-particle variation in the signal enhancement can vary by several orders of magnitude in a single batch, largely limiting the reliable use of SERS for practical sensing applications. Here, a hierarchic-nanocube-assembly based SERS (H-Cube-SERS) bioassay to controllably amplify the electromagnetic field between gold nanocubes (AuNCs) is developed. Based on this strategy, H-Cube-SERS assay allows for detecting target DNA with a wide dynamic range from 100 aM to 10 pM concentrations in a stable and reproducible manner. It is also found that the uniformly formed AuNCs with flat surfaces are much more suitable for highly sensitive, reliable, and quantitative biodetection assays due to faster DNA binding kinetics, sharper DNA melting transition, wider hot spot regions, and less dependence on light polarization direction than spherical Au nanoparticles with curved interfaces. This work paves the pathways to the quantitative and sensitive biodetection on a SERS platform and can be extended to other particle assembly systems.
机译:基于表面增强的拉曼散射(SERS)的感测是有希望允许高度敏感,选择性和复用的检测和成像的潜力。然而,以定量方式产生强力颗粒之间的受控组件和间隙形成是高度挑战,特别是在生物竞选平台上,信号增强的粒子变化可以在单个单个中的几个数量级变化。批次,在很大程度上限制了SERS的可靠用途,用于实际传感应用。这里,开发了基于纳米纳米内组件的SERS(H-CUBE-SERS)生物测定,以可控制地放大金纳米(Aunc)之间的电磁场(Auncs)。基于该策略,H-Cube-SERS测定允许以稳定和可重复的方式从100AM到10μM浓度从100AM到10μM浓度检测靶DNA。还发现,由于DNA结合动力学更快,更尖锐的DNA熔化过渡,更宽的热点区域,更依赖于光偏振方向,具有平坦表面的均匀形成的侧凸均适合于高敏感,可靠性和定量的生物竞选测定,更敏捷的DNA熔化过渡,更广泛的热点区域。比具有弯曲界面的球形Au纳米粒子。这项工作铺设了SERS平台上的定量和敏感生物渗透的途径,并且可以扩展到其他粒子组装系统。

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  • 来源
    《Analytical chemistry》 |2019年第16期|共10页
  • 作者单位

    Seoul Natl Univ Dept Chem Seoul 08826 South Korea;

    Seoul Natl Univ Dept Chem Seoul 08826 South Korea;

    Seoul Natl Univ Dept Chem Seoul 08826 South Korea;

    Seoul Natl Univ Dept Chem Seoul 08826 South Korea;

    Seoul Natl Univ Dept Chem Seoul 08826 South Korea;

    Seoul Natl Univ Dept Chem Seoul 08826 South Korea;

    Seoul Natl Univ Dept Chem Seoul 08826 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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