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Widefield Spectral Monitoring of Nanometer Distance Changes in DNA-Templated Plasmon Rulers

机译:DNA模板等离子标尺的纳米距离变化的广域光谱监测

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The nanometer-scale sensitivity of electromagnetic plasmon coupling allows the translation of minute morphological changes in nanostructures into macroscopic optical signals. We demonstrate here a widefield spectral analysis of 40 nm diameter gold nanoparticle (AuNP) dimers, linked by a short DNA double strand, using a low-cost color CCD camera and allowing a quantitative estimation of interparticle distances in a 3-20 nm range. This analysis can be extended to lower spacings and a parallel monitoring of dimer orientations by performing a simple polarization analysis. Our measurement approach is calibrated against confocal scattering spectroscopy using AuNP dimers that are distorted from a stretched geometry at low ionic strength to touching particles at high salt concentrations. We then apply it to identify dimers featuring two different conformations of the same DNA template and discuss the parallel colorimetric sensing of short sequence-specific DNA single strands using dynamic plasmon rulers.
机译:电磁等离子体耦合的纳米级灵敏度允许将纳米结构中的微小形态变化转化为宏观光学信号。我们在这里展示了使用低成本彩色CCD相机对40 nm直径的金纳米颗粒(AuNP)二聚体进行的宽光谱分析,该二聚体由短的DNA双链连接,并允许定量估计3-20 nm范围内的颗粒间距离。通过执行简单的偏振分析,可以将这种分析扩展到较小的间距,并平行监视二聚体的方向。我们使用AuNP二聚体针对共聚焦散射光谱对测量方法进行了校准,该AuNP二聚体从低离子强度的拉伸几何形状变形为高盐浓度的接触颗粒。然后,我们将其应用于鉴定具有相同DNA模板的两个不同构象的二聚体,并讨论使用动态等离体标尺对短序列特异性DNA单链进行平行比色传感。

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