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Limitations of Surface Enhanced Raman Scattering in Sensing DNA Hybridization Demonstrated by Label-Free DNA Oligos as Molecular Rulers of Distance-Dependent Enhancement

机译:无标记DNA寡聚体作为距离依赖性增强分子标尺显示的传感DNA杂交中表面增强拉曼散射的局限性。

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This article presents a critical evaluation of silver nanorod arrays as substrates for assaying nucleic acid hybridization by surface enhanced Raman scattering (SERS). SERS spectra acquired on complementary oligos, alone or in combination, contain the known spectral signatures of the nucleotides that comprise the oligo; however, no signature bands characteristic of the hybrid were observed. Spectra acquired on an oligo with a 5'- or 3'-thiol were distinctly different from that acquired on the identical oligo without a thiol pendant group suggesting a degree of control over the orientation of the oligo on the nanorod surface. A set of oligos consisting of adenine tracts in a polycytosine chain served as molecular rulers to probe the distance dependence of the SERS enhancement. Using these, we have identified the point at which the characteristic bands for the nucleotides that comprise the oligo disappear from the spectrum. These findings suggest that the applicability of SERS for label-free detection of nucleic acid hybridization is limited to short oligos of less than nine nucleotides.
机译:本文对银纳米棒阵列作为通过表面增强拉曼散射(SERS)分析核酸杂交的底物进行了重要评估。在互补寡核苷酸上单独或组合获得的SERS光谱均包含组成寡核苷酸的核苷酸的已知光谱特征。然而,没有观察到杂种的特征带。在具有5'-或3'-硫醇的寡聚体上获得的光谱与在没有硫醇侧基的相同寡聚体上获得的光谱明显不同,这表明对纳米棒表面上的寡聚体的取向有一定程度的控制。一组由多胞嘧啶链中的腺嘌呤束组成的寡核苷酸充当分子标尺,以探测SERS增强的距离依赖性。使用这些,我们已经确定了组成寡核苷酸的核苷酸的特征带从光谱中消失的时间点。这些发现表明,SERS对于核酸杂交的无标记检测的适用性限于少于9个核苷酸的短寡核苷酸。

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