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Biosensing based upon molecular confinement in metallic nanocavity arrays

机译:金属纳米腔阵列中基于分子限制的生物传感

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We describe the basis for an affinity biosensor platform in which enhanced fluorescence transduction occurs through the optical excitation of molecules located within metallic nanocavities. These nanocavities are about 200 nm in diameter, are arranged in periodic or random two-dimensional arrays, and are fabricated in 70 nm thick gold films by e-beam lithography using negative e-beam resist. The experimental results show that both periodic and randomly placed metallic nanocavities can be used to enhance the fluorescence output of molecules within the cavities by about a factor of ten. In addition, the platform provides isolation from fluorescence produced by unbound species, making it suitable for real-time detection. Finally, we demonstrate the use of the platform in the real-time detection of 20-base oligonucleotides in solution.
机译:我们描述了亲和性生物传感器平台的基础,在该平台中,通过对位于金属纳米腔内的分子进行光激发,增强了荧光转导。这些纳米腔的直径约为200 nm,以周期性或随机二维阵列排列,并使用负电子束抗蚀剂通过电子束光刻技术在70 nm厚的金膜中制成。实验结果表明,周期性的和随机放置的金属纳米腔都可用于将腔内分子的荧光输出提高大约十倍。此外,该平台可隔离未结合物种产生的荧光,使其适合实时检测。最后,我们演示了该平台在实时检测溶液中20个碱基的寡核苷酸中的用途。

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