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Label-free DNA detection on nanostructured Ag surfaces

机译:纳米结构Ag表面上的无标记DNA检测

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摘要

The dramatic local electric-field enhancement property of Ag nanoparticles was used as the basis to significantly increase the signal output of a novel label-free (or "self-labeled") fluorescence-based DNA detection system. In response to identical amounts of analyte, nanostructured Ag substrates provided a posthybridization fluorescent sensor response over 10-fold larger than the response from planar Au substrates. Detection performance strongly depended upon the Ag substrate roughness. Consistent with work by others on metalenhanced fluorescence, fluorescence intensity also depended strongly on the distance between the fluorophore and the Ag substrate surface. Adjusting the surface roughness, amount of the Ag deposited on the surface, and the DNA probe length allowed for production of an optimized response. In addition to constituting a novel label-free DNA sensor, we anticipate that these structures will provide a unique platform for testing concepts in plasmonics.
机译:Ag纳米颗粒的显着的局部电场增强特性被用作显着提高新型无标记(或“自标记”)基于荧光的DNA检测系统的信号输出的基础。响应于相同量的分析物,纳米结构的Ag衬底提供的杂交后荧光传感器响应比平面Au衬底的响应大10倍以上。检测性能在很大程度上取决于Ag衬底的粗糙度。与其他人对金属增强荧光的研究一致,荧光强度也强烈依赖于荧光团与Ag基质表面之间的距离。调节表面粗糙度,沉积在表面上的Ag量和DNA探针长度可产生最佳响应。除了构成新颖的无标记DNA传感器外,我们预计这些结构将为测试等离激元概念提供独特的平台。

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