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基于等离子体纳米光刻的光近场与分子重叠,通过光物质共定位实现超灵敏无标记检测。

Molecular overlap with optical near-fields based on plasmonic nanolithography for ultrasensitive label-free detection by light-matter colocalization.

机构信息

School of Electrical and Electronic Engineering, Yonsei University, Seoul 03722, Republic of Korea.

Department of Chemistry and Nano Science, Ewha Womans University, Seoul 03760, Republic of Korea.

出版信息

Biosens Bioelectron. 2017 Oct 15;96:89-98. doi: 10.1016/j.bios.2017.04.046. Epub 2017 Apr 28.

Abstract

In this work, we investigate the detection sensitivity of surface plasmon resonance (SPR) biosensors by engineering spatial distribution of electromagnetic near-fields for colocalization with molecular distribution. The light-matter colocalization was based on plasmonic nanolithography, the concept of which was confirmed by detecting streptavidin biotin interactions on triangular nanoaperture arrays after the structure of the aperture arrays was optimized for colocalization efficiency. The colocalization was shown to amplify optical signature significantly and thereby to achieve detection on the order of 100 streptavidin molecules with a binding capacity below 1fg/mm, an enhancement by more than three orders of magnitude over conventional SPR detection.

摘要

在这项工作中,我们通过工程化表面等离激元共振(SPR)生物传感器的电磁场近场的空间分布使其与分子分布共定位,从而研究了其检测灵敏度。光与物质的共定位是基于等离子体纳米光刻技术,该技术的概念通过在优化纳米缝隙阵列结构以提高共定位效率后,检测到在三角纳米缝隙阵列上的链霉亲和素-生物素相互作用得到了证实。共定位显著放大了光学信号,从而实现了对低至 1fg/mm 结合容量的 100 个链霉亲和素分子的检测,比传统的 SPR 检测提高了三个数量级以上。

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