Graduate School of Life Science, Hokkaido University, Sapporo 060-0810, Japan.
Research Institute for Electronic Science, Hokkaido University, Sapporo 001-0021, Japan.
ACS Nano. 2024 Aug 13;18(32):21593-21606. doi: 10.1021/acsnano.4c09578. Epub 2024 Aug 2.
Surface-enhanced Raman scattering (SERS) is an attractive technique in molecular detection with high sensitivity and label-free characteristics. However, its use in protein detection is limited by the large volume of proteins, hindering its approach to the narrow spaces of hotspots. In this study, we fabricated a Au nanoTriangle plate Array on Gel (AuTAG) as an SERS substrate by attaching a Au nanoTriangle plate (AuNT) arrangement on a thermoresponsive hydrogel surface. The AuTAG acts as an actively tunable plasmonic device, on which the interparticle distance is altered by controlling temperature via changes in hydrogel volume. Further, we designed a Gel Filter Trapping (GFT) method as an active protein delivery strategy based on the characteristics of hydrogels, which can absorb water and separate biopolymers through their three-dimensional (3D) polymer networks. On the AuTAGs, fabricated with AuNTs modified with charged surface ligands to prevent the nonspecific adsorption of analytes to particles, the GFT method helped the delivery of proteins to hotspot areas on the AuNT arrangement. This combination of a AuTAG substrate and the GFT method enables ultrahigh sensitivity for protein detection by SERS up to a single-molecule level as well as a wide quantification concentration range of 6 orders due to their geometric advantages.
表面增强拉曼散射(SERS)是一种具有高灵敏度和无标记特性的分子检测技术。然而,其在蛋白质检测中的应用受到蛋白质体积大的限制,阻碍了其进入热点狭窄空间的方法。在这项研究中,我们通过在热敏水凝胶表面附着 Au 纳米三角板(AuNT)排列,制造了 Au 纳米三角板阵列在凝胶(AuTAG)上作为 SERS 基底。AuTAG 作为一种主动可调谐的等离子体器件,通过控制温度来改变水凝胶体积,从而改变颗粒间的距离。此外,我们设计了一种基于水凝胶特性的凝胶过滤捕获(GFT)方法作为主动蛋白质输送策略,该方法可以通过其三维(3D)聚合物网络吸收水并分离生物聚合物。在 AuTAG 上,AuNTs 用带电荷的表面配体修饰,以防止分析物非特异性吸附到颗粒上,GFT 方法有助于将蛋白质输送到 AuNT 排列上的热点区域。AuTAG 基底和 GFT 方法的结合使 SERS 对蛋白质检测的灵敏度达到单分子水平,同时由于其几何优势,定量浓度范围高达 6 个数量级。